Structural role of tropomyosin in muscle regulation: analysis of the x-ray diffraction patterns from relaxed and contracting muscles.

PubWeight™: 4.10‹?› | Rank: Top 1%

🔗 View Article (PMID 4713300)

Published in J Mol Biol on March 25, 1973

Authors

D A Parry, J M Squire

Articles citing this

(truncated to the top 100)

Evidence for cross-bridge attachment in relaxed muscle at low ionic strength. Proc Natl Acad Sci U S A (1982) 5.38

Cooperative binding of myosin subfragment-1 to the actin-troponin-tropomyosin complex. Proc Natl Acad Sci U S A (1980) 4.56

Inhibition of actomyosin ATPase activity by troponin-tropomyosin without blocking the binding of myosin to actin. J Biol Chem (1982) 3.83

Structural relationships of actin, myosin, and tropomyosin revealed by cryo-electron microscopy. J Cell Biol (1987) 2.57

Ca(2+)-regulated structural changes in troponin. Proc Natl Acad Sci U S A (2005) 2.56

Characterization of the myosin adenosine triphosphate (M.ATP) crossbridge in rabbit and frog skeletal muscle fibers. Biophys J (1988) 2.40

Deciphering the design of the tropomyosin molecule. Proc Natl Acad Sci U S A (2001) 2.14

Dynamics of the muscle thin filament regulatory switch: the size of the cooperative unit. Biophys J (1994) 2.08

Tropomyosin position on F-actin revealed by EM reconstruction and computational chemistry. Biophys J (2011) 1.76

Structure of the mid-region of tropomyosin: bending and binding sites for actin. Proc Natl Acad Sci U S A (2005) 1.72

Structural basis for the regulation of muscle contraction by troponin and tropomyosin. J Mol Biol (2008) 1.69

Tropomyosin positions in regulated thin filaments revealed by cryoelectron microscopy. Biophys J (1999) 1.68

Parallel inhibition of active force and relaxed fiber stiffness in skeletal muscle by caldesmon: implications for the pathway to force generation. Proc Natl Acad Sci U S A (1991) 1.62

Muscle force and stiffness during activation and relaxation. Implications for the actomyosin ATPase. J Gen Physiol (1988) 1.49

Cooperative mechanisms in the activation dependence of the rate of force development in rabbit skinned skeletal muscle fibers. J Gen Physiol (2001) 1.45

Calcium alone does not fully activate the thin filament for S1 binding to rigor myofibrils. Biophys J (1996) 1.44

Relaxation of muscle fibers with adenosine 5'-[gamma-thio]triphosphate (ATP[gamma S]) and by laser photolysis of caged ATP[gamma S]: evidence for Ca2+-dependent affinity of rapidly detaching zero-force cross-bridges. Proc Natl Acad Sci U S A (1988) 1.44

Kinetic model for the interaction of myosin subfragment 1 with regulated actin. Biophys J (1983) 1.31

Crosslinked myosin subfragment 1: a stable analogue of the subfragment-1.ATP complex. Proc Natl Acad Sci U S A (1983) 1.31

Diversity of core antigen epitopes of hepatitis B virus. Proc Natl Acad Sci U S A (2003) 1.30

Two-step ligand binding and cooperativity. A model to describe the cooperative binding of myosin subfragment 1 to regulated actin. Biophys J (1987) 1.28

Three novel brain tropomyosin isoforms are expressed from the rat alpha-tropomyosin gene through the use of alternative promoters and alternative RNA processing. Mol Cell Biol (1990) 1.26

X-ray diffraction evidence for myosin-troponin connections and tropomyosin movement during stretch activation of insect flight muscle. Proc Natl Acad Sci U S A (2010) 1.25

The role of three-state docking of myosin S1 with actin in force generation. Biophys J (1995) 1.23

Electron microscopy and persistence length analysis of semi-rigid smooth muscle tropomyosin strands. Biophys J (2010) 1.22

Kinetics of thin filament activation probed by fluorescence of N-((2-(iodoacetoxy)ethyl)-N-methyl)amino-7-nitrobenz-2-oxa-1,3-diazole-labeled troponin I incorporated into skinned fibers of rabbit psoas muscle: implications for regulation of muscle contraction. Biophys J (1999) 1.19

An x-ray diffraction study on early structural changes in skeletal muscle contraction. Biophys J (2003) 1.14

Insights into the kinetics of Ca2+-regulated contraction and relaxation from myofibril studies. Pflugers Arch (2009) 1.14

Calcium regulation of muscle contraction. Biophys J (1975) 1.13

Static and dynamic x-ray diffraction recordings from living mammalian and amphibian skeletal muscles. Biophys J (2003) 1.12

Myosin-binding protein C displaces tropomyosin to activate cardiac thin filaments and governs their speed by an independent mechanism. Proc Natl Acad Sci U S A (2014) 1.10

Strain sensitivity and turnover rate of low force cross-bridges in contracting skeletal muscle fibers in the presence of phosphate. Biophys J (1995) 1.10

Disrupted myosin cross-bridge cycling kinetics triggers muscle weakness in nebulin-related myopathy. FASEB J (2011) 1.10

Troponin C in different insect muscle types: identification of two isoforms in Lethocerus, Drosophila and Anopheles that are specific to asynchronous flight muscle in the adult insect. Biochem J (2003) 1.09

Regulation of binding of subfragment 1 in isolated rigor myofibrils. J Cell Biol (1990) 1.08

Structural changes in troponin in response to Ca2+ and myosin binding to thin filaments during activation of skeletal muscle. Proc Natl Acad Sci U S A (2006) 1.07

Time-resolved x-ray diffraction studies on the intensity changes of the 5.9 and 5.1 nm actin layer lines from frog skeletal muscle during an isometric tetanus using synchrotron radiation. Biophys J (1985) 1.05

A periodic pattern of evolutionarily conserved basic and acidic residues constitutes the binding interface of actin-tropomyosin. J Biol Chem (2013) 1.04

The early history of the biochemistry of muscle contraction. J Gen Physiol (2004) 1.03

The molecular basis of the steep force-calcium relation in heart muscle. J Mol Cell Cardiol (2010) 1.03

Interaction of aldolase with actin-containing filaments. Structural studies. Biochem J (1980) 1.00

Fast x-ray recordings reveal dynamic action of contractile and regulatory proteins in stretch-activated insect flight muscle. Biophys J (2010) 1.00

Structural studies of interactions between cardiac troponin I and actin in regulated thin filament using Förster resonance energy transfer. Biochemistry (2008) 0.98

Ca(2+)-induced movement of tropomyosin in skeletal muscle thin filaments observed by multi-site FRET. Biophys J (2002) 0.97

The effect of troponin-tropomyosin on the binding of heavy meromyosin to actin in the presence of ATP. J Biol Chem (1986) 0.97

Evidence for structurally different attached states of myosin cross-bridges on actin during contraction of fish muscle. Biophys J (1992) 0.97

Drosophila muscle regulation characterized by electron microscopy and three-dimensional reconstruction of thin filament mutants. Biophys J (2004) 0.96

A myopathy-linked tropomyosin mutation severely alters thin filament conformational changes during activation. Proc Natl Acad Sci U S A (2010) 0.95

Three-dimensional organization of troponin on cardiac muscle thin filaments in the relaxed state. Biophys J (2014) 0.94

Structural dynamics of C-domain of cardiac troponin I protein in reconstituted thin filament. J Biol Chem (2011) 0.94

Structural dynamics of troponin during activation of skeletal muscle. Proc Natl Acad Sci U S A (2014) 0.94

Influence of Ca2+ on force redevelopment kinetics in skinned rat myocardium. Biophys J (1996) 0.94

The effect of thin filament activation on the attachment of weak binding cross-bridges: A two-dimensional x-ray diffraction study on single muscle fibers. Biophys J (1999) 0.93

Reverse actin sliding triggers strong myosin binding that moves tropomyosin. Proc Natl Acad Sci U S A (2008) 0.93

Gestalt-binding of tropomyosin on actin during thin filament activation. J Muscle Res Cell Motil (2013) 0.93

The structural dynamics of α-tropomyosin on F-actin shape the overlap complex between adjacent tropomyosin molecules. Arch Biochem Biophys (2013) 0.93

Ca2+ and ionic strength dependencies of S1-ADP binding to actin-tropomyosin-troponin: regulatory implications. Biophys J (2004) 0.93

The effect of partial extraction of troponin C on the elementary steps of the cross-bridge cycle in rabbit psoas muscle fibers. Biophys J (1996) 0.93

Structural transients of contractile proteins upon sudden ATP liberation in skeletal muscle fibers. Biophys J (2004) 0.92

Ca2+-dependent muscle dysfunction caused by mutation of the Caenorhabditis elegans troponin T-1 gene. J Cell Biol (1998) 0.92

Molecular dynamics simulations of the cardiac troponin complex performed with FRET distances as restraints. PLoS One (2014) 0.92

Structural features of cross-bridges in isometrically contracting skeletal muscle. Biophys J (2002) 0.91

Structural basis for bending tropomyosin around actin in muscle thin filaments. Proc Natl Acad Sci U S A (2001) 0.90

Regulation of force development studied by photolysis of caged ADP in rabbit skinned psoas fibers. Biophys J (2001) 0.90

Kinetics of regulated actin transitions measured by probes on tropomyosin. Biophys J (2010) 0.88

Effects of cardiac thin filament Ca2+: statistical mechanical analysis of a troponin C site II mutant. Biophys J (1996) 0.88

Dynamics of tropomyosin in muscle fibers as monitored by saturation transfer EPR of bi-functional probe. PLoS One (2011) 0.87

Temperature-dependence of isometric tension and cross-bridge kinetics of cardiac muscle fibers reconstituted with a tropomyosin internal deletion mutant. Biophys J (2006) 0.87

Three-dimensional reconstruction of thin filaments containing mutant tropomyosin. Biophys J (2000) 0.86

Dynamics of thin-filament activation in rabbit skeletal muscle fibers examined by time-resolved x-ray diffraction. Biophys J (2009) 0.86

Tropomyosin diffusion over actin subunits facilitates thin filament assembly. Struct Dyn (2016) 0.86

Tropomyosin dynamics in cardiac thin filaments: a multisite forster resonance energy transfer and anisotropy study. Biophys J (2008) 0.85

Regulation of molluscan actomyosin ATPase activity. J Biol Chem (1984) 0.85

Conserved Asp-137 is important for both structure and regulatory functions of cardiac α-tropomyosin (α-TM) in a novel transgenic mouse model expressing α-TM-D137L. J Biol Chem (2013) 0.84

Myofibrillar troponin exists in three states and there is signal transduction along skeletal myofibrillar thin filaments. J Mol Biol (2006) 0.84

Troponin-tropomyosin: an allosteric switch or a steric blocker? Biophys J (2002) 0.83

Effects of deletion of tropomyosin overlap on regulated actomyosin subfragment 1 ATPase. Biochem J (1989) 0.82

Structural determinants of muscle thin filament cooperativity. Arch Biochem Biophys (2016) 0.81

Structural and kinetic effects of hypertrophic cardiomyopathy related mutations R146G/Q and R163W on the regulatory switching activity of rat cardiac troponin I. Arch Biochem Biophys (2012) 0.80

Steric blocking mechanism explains stretch activation in insect flight muscle. Proc Natl Acad Sci U S A (2010) 0.80

Sarcomere length dependent effects on the interaction between cTnC and cTnI in skinned papillary muscle strips. Arch Biochem Biophys (2016) 0.80

Energy landscapes reveal the myopathic effects of tropomyosin mutations. Arch Biochem Biophys (2014) 0.80

Isolation, electron microscopy and 3D reconstruction of invertebrate muscle myofilaments. Methods (2011) 0.79

Linear dichroism of acrylodan-labeled tropomyosin and myosin subfragment 1 bound to actin in myofibrils. Biophys J (1992) 0.79

Cooperative effects of rigor and cycling cross-bridges on calcium binding to troponin C. Biophys J (2006) 0.78

FRET study of the structural and kinetic effects of PKC phosphomimetic cardiac troponin T mutants on thin filament regulation. Arch Biochem Biophys (2014) 0.78

Large-scale models reveal the two-component mechanics of striated muscle. Int J Mol Sci (2008) 0.77

A novel approach to the structural analysis of partially decorated actin based filaments. J Struct Biol (2009) 0.77

Interaction sites of tropomyosin in muscle thin filament as identified by site-directed spin-labeling. Biophys J (2011) 0.77

Aluminum fluoride interactions with troponin C. Biophys J (1993) 0.76

Calcium-dependent interaction sites of tropomyosin on reconstituted muscle thin filaments with bound Myosin heads as studied by site-directed spin-labeling. Biophys J (2013) 0.76

Cardiac Troponin and Tropomyosin: Structural and Cellular Perspectives to Unveil the Hypertrophic Cardiomyopathy Phenotype. Front Physiol (2016) 0.76

Influence of salt and pyrophosphate on bovine fast and slow myosin S1 dissociation from actin. Meat Sci (2010) 0.76

The earliest molecular response to stretch of insect flight muscle as revealed by fast X-ray diffraction recording. Sci Rep (2017) 0.75

The propensity for tropomyosin twisting in the presence and absence of F-actin. Arch Biochem Biophys (2016) 0.75

Mechanism of the calcium-regulation of muscle contraction--in pursuit of its structural basis. Proc Jpn Acad Ser B Phys Biol Sci (2015) 0.75

Structures reveal details of small molecule binding to cardiac troponin. J Mol Cell Cardiol (2016) 0.75

Myopathy-inducing mutation H40Y in ACTA1 hampers actin filament structure and function. Biochim Biophys Acta (2016) 0.75

Distal arthrogryposis with variable clinical expression caused by TNNI2 mutation. Hum Genome Var (2016) 0.75

Studies of the interaction of troponin I with proteins of the I-filament and calmodulin. Biochem J (1983) 0.75

Articles by these authors

(truncated to the top 100)

Alpha-helical coiled coils and bundles: how to design an alpha-helical protein. Proteins (1990) 4.91

Molecular substructure of a viral receptor-recognition protein. The gp17 tail-fiber of bacteriophage T7. J Mol Biol (1988) 2.59

A comparison of the size distribution of collagen fibrils in connective tissues as a function of age and a possible relation between fibril size distribution and mechanical properties. Proc R Soc Lond B Biol Sci (1978) 2.41

Heptad breaks in alpha-helical coiled coils: stutters and stammers. Proteins (1996) 2.30

Fine structure of the A-band in cryo-sections. The structure of the A-band of human skeletal muscle fibres from ultra-thin cryo-sections negatively stained. J Mol Biol (1977) 2.15

Coiled-coils in alpha-helix-containing proteins: analysis of the residue types within the heptad repeat and the use of these data in the prediction of coiled-coils in other proteins. Biosci Rep (1982) 2.13

Structure of the human desmoplakins. Implications for function in the desmosomal plaque. J Biol Chem (1990) 2.13

Structure of alpha-keratin: structural implication of the amino acid sequences of the type I and type II chain segments. J Mol Biol (1977) 2.09

Myosin content and filament structure in smooth and striated muscle. J Mol Biol (1973) 2.06

Quantitative electron microscope observations of the collagen fibrils in rat-tail tendon. Biopolymers (1977) 1.96

Alpha-helical coiled coils: more facts and better predictions. Science (1994) 1.86

Keratin intermediate filament structure. Crosslinking studies yield quantitative information on molecular dimensions and mechanism of assembly. J Mol Biol (1993) 1.85

Intermediate filaments: conformity and diversity of expression and structure. Annu Rev Cell Biol (1985) 1.82

Muscle filament structure and muscle contraction. Annu Rev Biophys Bioeng (1975) 1.78

General model of myosin filament structure. 3. Molecular packing arrangements in myosin filaments. J Mol Biol (1973) 1.76

Analysis of the primary sequence of alpha-tropomyosin from rabbit skeletal muscle. J Mol Biol (1975) 1.74

Analysis of the primary structure of collagen for the origins of molecular packing. J Mol Biol (1973) 1.68

Conformational characteristics of the complete sequence of group A streptococcal M6 protein. Proteins (1988) 1.62

Cingulin contains globular and coiled-coil domains and interacts with ZO-1, ZO-2, ZO-3, and myosin. J Cell Biol (1999) 1.59

Structural basis of contraction in vertebrate smooth muscle. J Mol Biol (1972) 1.55

The complete cDNA and deduced amino acid sequence of a type II mouse epidermal keratin of 60,000 Da: analysis of sequence differences between type I and type II keratins. Proc Natl Acad Sci U S A (1984) 1.52

Structural features in the heptad substructure and longer range repeats of two-stranded alpha-fibrous proteins. Int J Biol Macromol (1990) 1.51

Periplakin, a novel component of cornified envelopes and desmosomes that belongs to the plakin family and forms complexes with envoplakin. J Cell Biol (1997) 1.50

Characterization of a cDNA clone encoding human filaggrin and localization of the gene to chromosome region 1q21. Proc Natl Acad Sci U S A (1989) 1.46

The coiled-coil molecules of intermediate filaments consist of two parallel chains in exact axial register. Biochem Biophys Res Commun (1985) 1.45

Structure of rabbit skeletal myosin. Analysis of the amino acid sequences of two fragments from the rod region. J Mol Biol (1981) 1.44

Amino acid sequences of mouse and human epidermal type II keratins of Mr 67,000 provide a systematic basis for the structural and functional diversity of the end domains of keratin intermediate filament subunits. J Biol Chem (1985) 1.43

Comparative structural analysis of desmoplakin, bullous pemphigoid antigen and plectin: members of a new gene family involved in organization of intermediate filaments. Int J Biol Macromol (1992) 1.40

General model of myosin filament structure. II. Myosin filaments and cross-bridge interactions in vertebrate striated and insect flight muscles. J Mol Biol (1972) 1.39

A high molecular weight intermediate filament-associated protein in BHK-21 cells is nestin, a type VI intermediate filament protein. Limited co-assembly in vitro to form heteropolymers with type III vimentin and type IV alpha-internexin. J Biol Chem (1999) 1.38

Comparison of molecularly cloned bullous pemphigoid antigen to desmoplakin I confirms that they define a new family of cell adhesion junction plaque proteins. J Biol Chem (1991) 1.35

Crystalline fibril structure of type II collagen in lamprey notochord sheath. J Mol Biol (1984) 1.31

Molecular structure of the human desmoplakin I and II amino terminus. Proc Natl Acad Sci U S A (1992) 1.31

Developmentally regulated cytokeratin gene in Xenopus laevis. Mol Cell Biol (1985) 1.29

Structural homology between hard alpha-keratin and the intermediate filament proteins desmin and vimentin. Biosci Rep (1983) 1.28

The structure of human trichohyalin. Potential multiple roles as a functional EF-hand-like calcium-binding protein, a cornified cell envelope precursor, and an intermediate filament-associated (cross-linking) protein. J Biol Chem (1993) 1.27

Structural changes in actin-tropomyosin during muscle regulation: computer modelling of low-angle X-ray diffraction data. J Mol Biol (1995) 1.26

Structural analysis and expression of human desmoglein: a cadherin-like component of the desmosome. J Cell Sci (1991) 1.25

Active cdk6 complexes are predominantly nuclear and represent only a minority of the cdk6 in T cells. Oncogene (1998) 1.24

Ionic interactions in the coiled-coil domain of laminin determine the specificity of chain assembly. J Mol Biol (1993) 1.20

The chitin crystallite in arthropod cuticle. J Cell Sci (1976) 1.19

Diversity of intermediate filament structure. Evidence that the alignment of coiled-coil molecules in vimentin is different from that in keratin intermediate filaments. J Biol Chem (1993) 1.18

The intermediate filament protein consensus motif of helix 2B: its atomic structure and contribution to assembly. J Mol Biol (2000) 1.16

The molecular structure of reptilian keratin. Int J Biol Macromol (1996) 1.16

Collagen fibrils and elastic fibers in rat-tail tendon: an electron microscopic investigation. Biopolymers (1978) 1.14

Three-dimensional structure of the vertebrate muscle A-band. III. M-region structure and myosin filament symmetry. J Mol Biol (1981) 1.12

The three-dimensional structure of the nemaline rod Z-band. J Cell Biol (1990) 1.12

Three-stranded alpha-fibrous proteins: the heptad repeat and its implications for structure. Int J Biol Macromol (1991) 1.12

Control of collagen fibril diameters in tissues. Int J Biol Macromol (1992) 1.11

Preservation of corneal collagen fibril structure using low-temperature procedures for electron microscopy. J Ultrastruct Mol Struct Res (1988) 1.11

Tropomyosin crystal dynamics. Cold Spring Harb Symp Quant Biol (1972) 1.10

Three-dimensional structure of the vertebrate muscle A-band. II. The myosin filament superlattice. J Mol Biol (1980) 1.10

Tendon and ligament from the horse: an ultrastructural study of collagen fibrils and elastic fibres as a function of age. Proc R Soc Lond B Biol Sci (1978) 1.08

Myosin head configuration in relaxed fish muscle: resting state myosin heads must swing axially by up to 150 A or turn upside down to reach rigor. J Mol Biol (1997) 1.08

Collagen fibrils of the vertebrate corneal stroma. J Ultrastruct Res (1981) 1.07

Intermediate filaments in alpha-keratins. Proc Natl Acad Sci U S A (1986) 1.06

Secondary structure of component 8c-1 of alpha-keratin. An analysis of the amino acid sequence. Biochem J (1986) 1.05

Coiled-coil trigger motifs in the 1B and 2B rod domain segments are required for the stability of keratin intermediate filaments. Mol Biol Cell (2000) 1.05

Electron microscope evidence for an 80 A unit in collagen fibrils. Nature (1979) 1.05

Maternal behavior of SHR rats and its relationship to offspring blood pressures. Dev Psychobiol (1989) 1.05

A conserved C-terminal assembly region in paramyosin and myosin rods. J Struct Biol (1998) 1.03

Fine structure of the A-band in cryo-sections. III. Crossbridge distribution and the axial structure of the human C-zone. J Mol Biol (1982) 1.03

Alpha-helical coiled-coil structures of Trypanosoma brucei variable surface glycoproteins. Nature (1984) 1.02

Axially projected collagen structures. Proc R Soc Lond B Biol Sci (1974) 1.01

The conserved H1 domain of the type II keratin 1 chain plays an essential role in the alignment of nearest neighbor molecules in mouse and human keratin 1/keratin 10 intermediate filaments at the two- to four-molecule level of structure. J Biol Chem (1993) 1.00

Identification of novel mutations in basic hair keratins hHb1 and hHb6 in monilethrix: implications for protein structure and clinical phenotype. J Invest Dermatol (1999) 0.99

An estimate of the mean length of collagen fibrils in rat tail-tendon as a function of age. Connect Tissue Res (1989) 0.99

Movement of tropomyosin during regulation of vertebrate skeletal muscle: a simple physical model. Biochem Biophys Res Commun (1976) 0.99

Ultrastructural analyses of deciduous teeth affected by hypocalcified amelogenesis imperfecta from a family with a novel Y458X FAM83H nonsense mutation. Cells Tissues Organs (2009) 0.98

General model for the structure of all myosin-containing filaments. Nature (1971) 0.98

Relationships between maternal behavior of SHR and WKY dams and adult blood pressures of cross-fostered F1 pups. Dev Psychobiol (1989) 0.98

The plakin family. J Cell Sci (2001) 0.97

Evidence for structurally different attached states of myosin cross-bridges on actin during contraction of fish muscle. Biophys J (1992) 0.97

In vitro assembly and structure of trichocyte keratin intermediate filaments: a novel role for stabilization by disulfide bonding. J Cell Biol (2000) 0.97

A new twist in the collagen story--the type VI segmented supercoil. EMBO J (2001) 0.96

Symmetry and three-dimensional arrangement of filaments in vertebrate striated muscle. J Mol Biol (1974) 0.96

The signal generated by an insect in a spider's web. J Exp Biol (1965) 0.96

Epiplakin, a novel member of the Plakin family originally identified as a 450-kDa human epidermal autoantigen. Structure and tissue localization. J Biol Chem (2001) 0.96

Amino acid sequence and structural repeats in schistosome paramyosin match those of myosin. Biosci Rep (1987) 0.95

M-band structure, M-bridge interactions and contraction speed in vertebrate cardiac muscles. J Muscle Res Cell Motil (1994) 0.95

Secondary structure of bovine alpha s1- and beta-casein in solution. Arch Biochem Biophys (1981) 0.95

Desmoyokin, a 680 kDa keratinocyte plasma membrane-associated protein, is homologous to the protein encoded by human gene AHNAK. J Cell Sci (1993) 0.94

Puzzle of the coiled coils in the alpha-protein paramyosin. Nature (1968) 0.94

Similar endothelial glycocalyx structures in microvessels from a range of mammalian tissues: evidence for a common filtering mechanism? Biophys J (2011) 0.94

Conservation of the structure of keratin intermediate filaments: molecular mechanism by which different keratin molecules integrate into preexisting keratin intermediate filaments during differentiation. Biochemistry (1993) 0.93

An adherens junction protein is a member of the family of lactose-binding lectins. J Biol Chem (1994) 0.92

Structure of desmoplakin and its association with intermediate filaments. J Dermatol (1992) 0.92

Structure and packing of microfibrils in collagen. J Mol Biol (1973) 0.92

How common is the atypical mole syndrome phenotype in apparently sporadic melanoma? J Am Acad Dermatol (1993) 0.92

Cloning and characterization of a novel epidermal cell surface antigen (ESA). J Biol Chem (1994) 0.91

Fatal methemoglobinemia due to inhalation of isobutyl nitrite. J Toxicol Clin Toxicol (1994) 0.91

Structural features of keratin intermediate filaments. J Invest Dermatol (1994) 0.90

Growth and development of collagen fibrils in immature tissues from rat and sheep. Proc R Soc Lond B Biol Sci (1981) 0.90

An investigation into the protonation states of the C1 domain of cardiac myosin-binding protein C. Acta Crystallogr D Biol Crystallogr (2008) 0.90

Stat3-dependent induction of p19INK4D by IL-10 contributes to inhibition of macrophage proliferation. J Immunol (2000) 0.90

Cryo-ultramicrotomy and myofibrillar fine structure: a review. J Microsc (1977) 0.89

Structure and function of desmosomal transmembrane core and plaque molecules. Biophys Chem (1994) 0.89

A role for glycosaminoglycans in the development of collagen fibrils. FEBS Lett (1982) 0.89

Secondary structure of bovine beta-lactoglobulin B. Arch Biochem Biophys (1983) 0.89

A comparison of genomic coding sequences for feather and scale keratins: structural and evolutionary implications. EMBO J (1984) 0.89