Regulation of muscular contraction. Distribution of actin control and myosin control in the animal kingdom
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The crystal structure of the C-terminal fragment of striated-muscle alpha-tropomyosin reveals a key troponin T recognition site.Three-Dimensional Reconstruction of Tarantula Myosin Filaments Suggests How Phosphorylation May Regulate Myosin ActivityThe molecular anatomy of caldesmonThree-dimensional structure of vertebrate cardiac muscle myosin filaments.Ca2+ -induced tropomyosin movement in scallop striated muscle thin filamentsStructural basis of the relaxed state of a Ca2+-regulated myosin filament and its evolutionary implications.Analysis of tarantula skeletal muscle protein sequences and identification of transcriptional isoformsMuscle differentiation in a colonial ascidian: organisation, gene expression and evolutionary considerations.The ultrastructure and contractile properties of a fast-acting, obliquely striated, myosin-regulated muscle: the funnel retractor of squids.Purification of native myosin filaments from muscle.Disruption of Caenorhabditis elegans muscle structure and function caused by mutation of troponin IDrosophila muscle regulation characterized by electron microscopy and three-dimensional reconstruction of thin filament mutants.Dynamic light-scattering evidence for the flexibility of native muscle thin filaments.The N-terminal region of twitchin binds thick and thin contractile filaments: redundant mechanisms of catch force maintenance.Transcriptome and gene expression analysis of the rice leaf folder, Cnaphalocrosis medinalisFunctions of the Caenorhabditis elegans regulatory myosin light chain genes mlc-1 and mlc-2.Laser Raman light-scattering observations of conformational changes in myosin induced by inorganic salts.Detection of a troponin I-like protein in non-striated muscle of the tardigrades (water bears).Muscular tissues of the squid Doryteuthis pealeii express identical myosin heavy chain isoforms: an alternative mechanism for tuning contractile speedTarantula myosin free head regulatory light chain phosphorylation stiffens N-terminal extension, releasing it and blocking its docking back.Sequential myosin phosphorylation activates tarantula thick filament via a disorder-order transition.Mechanism of actomyosin ATPase and the problem of muscle contraction.Invertebrate muscles: muscle specific genes and proteins.Brush border motility. Microvillar contraction in triton-treated brush borders isolated from intestinal epitheliumMicrofilaments and tropomyosin of cultured mammalian cells: isolation and characterization.An invertebrate smooth muscle with striated muscle myosin filaments.Structural changes that occur in scallop myosin filaments upon activationStructural changes accompanying phosphorylation of tarantula muscle myosin filaments.Motility-dependence of the heterogenous staining of culture cells by a monoclonal anti-tropomyosin antibodyStructural changes induced in Ca2+-regulated myosin filaments by Ca2+ and ATP.Probing the role of nonmuscle tropomyosin isoforms in intracellular granule movement by microinjection of monoclonal antibodies.Isolation and characterization of the gene for myosin light chain two of Drosophila melanogaster.Ca2+-dependent muscle dysfunction caused by mutation of the Caenorhabditis elegans troponin T-1 geneMuscle calcium transient. Effect of post-stimulus length changes in single fibers.Extra calcium on shortening in barnacle muscle. Is the decrease in calcium binding related to decreased cross-bridge attachment, force, or length?Myosin light chain-2 mutation affects flight, wing beat frequency, and indirect flight muscle contraction kinetics in Drosophila.Head-head and head-tail interaction: a general mechanism for switching off myosin II activity in cellsDistinct troponin T genes are expressed in embryonic/larval tail striated muscle and adult body wall smooth muscle of ascidian.Molecular evolution of troponin I and a role of its N-terminal extension in nematode locomotion.Regulatory myosin light-chain genes of Caenorhabditis elegans.
P2860
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P2860
Regulation of muscular contraction. Distribution of actin control and myosin control in the animal kingdom
description
1975 nî lūn-bûn
@nan
1975年の論文
@ja
1975年学术文章
@wuu
1975年学术文章
@zh-cn
1975年学术文章
@zh-hans
1975年学术文章
@zh-my
1975年学术文章
@zh-sg
1975年學術文章
@yue
1975年學術文章
@zh
1975年學術文章
@zh-hant
name
Regulation of muscular contrac ...... control in the animal kingdom
@ast
Regulation of muscular contrac ...... control in the animal kingdom
@en
type
label
Regulation of muscular contrac ...... control in the animal kingdom
@ast
Regulation of muscular contrac ...... control in the animal kingdom
@en
prefLabel
Regulation of muscular contrac ...... control in the animal kingdom
@ast
Regulation of muscular contrac ...... control in the animal kingdom
@en
P2860
P356
P1476
Regulation of muscular contrac ...... control in the animal kingdom
@en
P2093
Szent-Györgyi AG
P2860
P356
10.1085/JGP.66.1.1
P577
1975-07-01T00:00:00Z