John Trinick

Author PubWeight™ 37.21‹?›

Top papers

Rank Title Journal Year PubWeight™‹?›
1 Titin: properties and family relationships. Nat Rev Mol Cell Biol 2003 2.18
2 The prepower stroke conformation of myosin V. J Cell Biol 2002 2.12
3 Cryo-electron microscopy of the vacuolar ATPase motor reveals its mechanical and regulatory complexity. J Mol Biol 2009 1.96
4 A monomeric myosin VI with a large working stroke. EMBO J 2004 1.75
5 Use of negative stain and single-particle image processing to explore dynamic properties of flexible macromolecules. J Struct Biol 2004 1.71
6 Structural divergence of the rotary ATPases. Q Rev Biophys 2011 1.48
7 The structure of M.EcoKI Type I DNA methyltransferase with a DNA mimic antirestriction protein. Nucleic Acids Res 2008 1.37
8 The effect of core destabilization on the mechanical resistance of I27. Biophys J 2002 1.36
9 Structure and operation of the DNA-translocating type I DNA restriction enzymes. Genes Dev 2012 1.13
10 Molecular rulers? Curr Biol 2012 1.09
11 Influence of lever structure on myosin 5a walking. Proc Natl Acad Sci U S A 2010 1.05
12 3D reconstruction of mammalian septin filaments. J Mol Biol 2007 1.02
13 Roles of titin in the structure and elasticity of the sarcomere. J Biomed Biotechnol 2010 1.00
14 Properties of titin immunoglobulin and fibronectin-3 domains. J Biol Chem 2004 0.97
15 Myosin VI: cellular functions and motor properties. Philos Trans R Soc Lond B Biol Sci 2004 0.95
16 3D morphology of the human hepatic ferritin mineral core: new evidence for a subunit structure revealed by single particle analysis of HAADF-STEM images. J Struct Biol 2008 0.95
17 Evidence for the oligomeric state of 'elastic' titin in muscle sarcomeres. J Mol Biol 2008 0.90
18 Persistence length of titin from rabbit skeletal muscles measured with scattering and microrheology techniques. Biophys J 2005 0.89
19 Shape and flexibility in the titin 11-domain super-repeat. J Mol Biol 2010 0.88
20 Resting tension characteristics in differentiating intact rat fast- and slow-twitch muscle fibers. J Appl Physiol (1985) 2003 0.83
21 Nucleotide-dependent shape changes in the reverse direction motor, myosin VI. Biophys J 2010 0.83
22 Flexibility within the rotor and stators of the vacuolar H+-ATPase. PLoS One 2013 0.83
23 Mutagenetic and electron microscopy analysis of actin filament severing by Cordon-Bleu, a WH2 domain protein. Cytoskeleton (Hoboken) 2014 0.82
24 Structural studies of arthrin: monoubiquitinated actin. J Mol Biol 2004 0.81
25 Dynamics of semiflexible polymer solutions in the highly entangled regime. Phys Rev Lett 2008 0.80
26 ¹H, ¹⁵N and ¹³C backbone chemical shift assignment of the titin A67-A68 domain tandem. Biomol NMR Assign 2011 0.79
27 Structure and function of the vacuolar H+-ATPase: moving from low-resolution models to high-resolution structures. J Bioenerg Biomembr 2003 0.79
28 Preservation of high resolution protein structure by cryo-electron microscopy of vitreous sections. Ultramicroscopy 2009 0.78
29 Giant proteins: sensing tension with titin kinase. Curr Biol 2008 0.78
30 Measuring the resolution of uncompressed plastic sections cut using an oscillating knife ultramicrotome. J Struct Biol 2007 0.78
31 Can the passive elasticity of muscle be explained directly from the mechanics of individual titin molecules? J Muscle Res Cell Motil 2005 0.78
32 Making muscle elastic: the structural basis of myomesin stretching. PLoS Biol 2012 0.77
33 Muscle disease: a giant feels the strain. Nat Med 2005 0.77
34 An approach to automated acquisition of cryoEM images from lacey carbon grids. J Struct Biol 2010 0.76
35 ¹H, ¹⁵N, and ¹³C backbone chemical shift assignment of titin domains A59-A60 and A60 alone. Biomol NMR Assign 2014 0.75