Retracted: This article has been retracted.

Cloning of the cDNA encoding a neuronal myosin heavy chain from mammalian brain and its differential expression within the central nervous system.

PubWeight™: 1.35‹?› | Rank: Top 10%

🔗 View Article (PMID 1569576)

Published in J Mol Biol on April 20, 1992

Authors

W Sun1, P D Chantler

Author Affiliations

1: Department of Anatomy and Neurobiology, Medical College of Pennsylvania, Philadelphia 19129.

Articles by these authors

Regulatory light-chains and scallop myosin. Full dissociation, reversibility and co-operative effects. J Mol Biol (1980) 1.70

Separate but linked functions of conventional myosins modulate adhesion and neurite outgrowth. Nat Cell Biol (2001) 1.37

Myosin II distribution in neurons is consistent with a role in growth cone motility but not synaptic vesicle mobilization. Neuron (1992) 1.25

A conventional myosin motor drives neurite outgrowth. Proc Natl Acad Sci U S A (1998) 1.24

Cooperativity in scallop myosin. Biochemistry (1981) 1.24

Retracted A unique cellular myosin II exhibiting differential expression in the cerebral cortex. Biochem Biophys Res Commun (1991) 1.20

Association of a cellular myosin II with anionic phospholipids and the neuronal plasma membrane. Proc Natl Acad Sci U S A (1994) 1.19

Effects of phosphorylation by myosin light chain kinase on the structure of Limulus thick filaments. J Cell Biol (1991) 1.18

Hybrid formation between scallop myofibrils and foreign regulatory light-chains. J Mol Biol (1980) 1.12

Spectroscopic studies on invertebrate myosins and light chains. Biochemistry (1978) 1.12

Isolation, biochemical characterization and ultrastructural analysis of the limbic system-associated membrane protein (LAMP), a protein expressed by neurons comprising functional neural circuits. J Neurosci (1990) 0.91

Calcium-dependent association of a protein complex with the lymphocyte plasma membrane: probable identity with calmodulin-calcineurin. J Cell Biol (1985) 0.88

Locking regulatory myosin in the off-state with trifluoperazine. J Biol Chem (2000) 0.88

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

Interhead fluorescence energy transfer between probes attached to translationally equivalent sites on the regulatory light chains of scallop myosin. J Mol Biol (1986) 0.85

Evidence for a new member of the myosin I family from mammalian brain. J Neurochem (1992) 0.84

Calcium regulation in the human myocardium affected by dilated cardiomyopathy: a structural basis for impaired Ca2+-sensitivity. Mol Cell Biochem (1999) 0.83

Regulatory light chains and scallop myosin. Form of light chain removal or reuptake is dependent on the presence of divalent cations. J Mol Biol (1985) 0.82

Arrangement of myosin heads on Limulus thick filaments. J Cell Biol (1988) 0.82

The importance of choice of visualization technique in the use of indirect immunodetection methods: specific reference to the detection of light chain movement on a regulatory myosin. Biotech Histochem (1991) 0.80

Congestive heart failure: extent of cardiac functional changes caused by aging and organ dysfunction. Heart (2006) 0.79

Interaction of myosin with monomeric matrix-bound actin. FEBS Lett (1973) 0.79

The interaction of actin monomers with myosin heads and other muscle proteins. Biochemistry (1976) 0.78

Proteolytic susceptibility of both isolated and bound light chains from various myosins to myopathic hamster protease. J Biol Chem (1984) 0.78

Proximity relationships between sites on myosin and actin. Resonance energy transfer determination of the following distances, using a hybrid myosin: those between Cys-55 on the Mercenaria regulatory light chain, SH-1 on the Aequipecten myosin heavy chain, and Cys-374 of actin. Biochemistry (1991) 0.78

Effects of specific chemical modification of actin. Eur J Biochem (1975) 0.77

Human cardiac myosin light chains: sequence comparisons between myosin LC1 and LC2 from normal and idiopathic dilated cardiomyopathic hearts. Mol Cell Biochem (1995) 0.77

A unique cellular myosin II exhibiting differential expression in the cerebral cortex. Biochem Biophys Res Commun (1997) 0.77

Regulatory light-chain Cys-55 sites on the two heads of myosin can come within 2A of each other. FEBS Lett (1992) 0.76

Primary structure of myosin from the striated adductor muscle of the Atlantic scallop, Pecten maximus, and expression of the regulatory domain. J Muscle Res Cell Motil (2000) 0.76

Functional analysis of individual brain myosin II isoforms through hybrid formation. FEBS Lett (1994) 0.76

Lanthanides do not function as calcium analogues in scallop myosin. J Biol Chem (1983) 0.75

Cloning and in vivo expression of the pig MyoD gene. J Muscle Res Cell Motil (1995) 0.75

Stripped for action. Nature (1981) 0.75

Muscle contraction. Through thick and thin. Nature (1986) 0.75

Myofibrillar protein structure and assembly during idiopathic dilated cardiomyopathy. Mol Cell Biochem (1999) 0.75

Diffusible proteins prolong survival of dorsal lateral geniculate neurons following occipital cortex lesions in newborn rats. Brain Res (1987) 0.75

Caged ATP set free in muscle. Nature (1982) 0.75

Cloning of the cDNA encoding a neuronal myosin heavy chain from mammalian brain and its differential expression within the central nervous system. J Mol Biol (1997) 0.75

Report on the 22nd European Muscle Conference held at Gwatt, Switzerland, 3-8 October 1993. J Muscle Res Cell Motil (1994) 0.75