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本文引用的文献

1
Temperature and ligand dependence of conformation and helical order in myosin filaments.肌球蛋白丝中构象和螺旋顺序的温度及配体依赖性
Biochemistry. 2003 Jan 21;42(2):390-401. doi: 10.1021/bi026085t.
2
Structural characterization of weakly attached cross-bridges in the A*M*ATP state in permeabilized rabbit psoas muscle.通透化兔腰大肌中处于A*M*ATP状态的弱附着横桥的结构表征
Biophys J. 2002 Apr;82(4):2111-22. doi: 10.1016/S0006-3495(02)75558-6.
3
Myofilament calcium sensitivity in skinned rat cardiac trabeculae: role of interfilament spacing.去皮肤大鼠心脏小梁肌丝的钙敏感性:肌丝间距的作用
Circ Res. 2002 Jan 11;90(1):59-65. doi: 10.1161/hh0102.102269.
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Frank-Starling relationship: long on importance, short on mechanism.弗兰克-斯塔林关系:重要性显著,机制尚不明晰。
Circ Res. 2002 Jan 11;90(1):11-3.
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Calcium, cross-bridges, and the Frank-Starling relationship.钙、横桥与Frank-Starling关系
News Physiol Sci. 2001 Feb;16:5-10. doi: 10.1152/physiologyonline.2001.16.1.5.
6
Myofilament lattice spacing as a function of sarcomere length in isolated rat myocardium.离体大鼠心肌中肌丝晶格间距与肌节长度的函数关系。
Am J Physiol Heart Circ Physiol. 2000 Nov;279(5):H2568-73. doi: 10.1152/ajpheart.2000.279.5.H2568.
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Regulation of contraction in striated muscle.横纹肌收缩的调节。
Physiol Rev. 2000 Apr;80(2):853-924. doi: 10.1152/physrev.2000.80.2.853.
8
Effect of ionic strength on length-dependent Ca(2+) activation in skinned cardiac muscle.
J Mol Cell Cardiol. 1999 Dec;31(12):2115-25. doi: 10.1006/jmcc.1999.1043.
9
The M.ADP.Pi state is required for helical order in the thick filaments of skeletal muscle.M.ADP.Pi 态是骨骼肌粗丝中螺旋有序所必需的。
Biophys J. 1999 Nov;77(5):2665-76. doi: 10.1016/s0006-3495(99)77101-8.
10
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.细肌丝激活对弱结合横桥附着的影响:对单根肌纤维的二维X射线衍射研究
Biophys J. 1999 Mar;76(3):1494-513. doi: 10.1016/S0006-3495(99)77309-1.

松弛的去皮肤心肌中赤道X射线反射和刚度对肌节长度和肌丝晶格间距改变的反应。

Response of equatorial x-ray reflections and stiffness to altered sarcomere length and myofilament lattice spacing in relaxed skinned cardiac muscle.

作者信息

Martyn Donald A, Adhikari Bishow B, Regnier Michael, Gu Jin, Xu Sengen, Yu Leepo C

机构信息

Department of Bioengineering, University of Washington, Seattle, Washington 98195, USA.

出版信息

Biophys J. 2004 Feb;86(2):1002-11. doi: 10.1016/S0006-3495(04)74175-2.

DOI:10.1016/S0006-3495(04)74175-2
PMID:14747335
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1303893/
Abstract

Low angle x-ray diffraction measurements of myofilament lattice spacing (D(1,0)) and equatorial reflection intensity ratio (I(1,1)/I(1,0)) were made in relaxed skinned cardiac trabeculae from rats. We tested the hypothesis that the degree of weak cross-bridge (Xbr) binding, which has been shown to be obligatory for force generation in skeletal muscle, is modulated by changes in lattice spacing in skinned cardiac muscle. Altered weak Xbr binding was detected both by changes in I(1,1)/I(1,0) and by measurements of chord stiffness (chord K). Both measurements showed that, similar to skeletal muscle, the probability of weak Xbr binding at 170-mM ionic strength was significantly enhanced by lowering temperature to 5 degrees C. The effects of lattice spacing on weak Xbr binding were therefore determined under these conditions. Changes in D(1,0), I(1,1)/I(1,0), and chord K by osmotic compression with dextran T500 were determined at sarcomere lengths (SL) of 2.0 and 2.35 micro m. At each SL increasing [dextran] caused D(1,0) to decrease and both I(1,1)/I(1,0) and chord K to increase, indicating increased weak Xbr binding. The results suggest that in intact cardiac muscle increasing SL and decreasing lattice spacing could lead to increased force by increasing the probability of initial weak Xbr binding.

摘要

对来自大鼠的松弛的去表皮心肌小梁进行肌丝晶格间距(D(1,0))和赤道反射强度比(I(1,1)/I(1,0))的低角度X射线衍射测量。我们检验了这样一个假设,即在骨骼肌中已证明对力的产生必不可少的弱横桥(Xbr)结合程度,会受到去表皮心肌晶格间距变化的调节。通过I(1,1)/I(1,0)的变化和弦刚度(弦K)的测量都检测到了弱Xbr结合的改变。这两种测量都表明,与骨骼肌类似,在170 mM离子强度下,将温度降至5℃会显著提高弱Xbr结合的概率。因此,在这些条件下确定了晶格间距对弱Xbr结合的影响。在2.0和2.35μm的肌节长度(SL)下,通过用葡聚糖T500进行渗透压压缩来确定D(1,0)、I(1,1)/I(1,0)和弦K的变化。在每个SL下,增加[葡聚糖]会导致D(1,0)减小,I(1,1)/I(1,0)和弦K增加,表明弱Xbr结合增加。结果表明,在完整的心肌中,增加SL和减小晶格间距可能通过增加初始弱Xbr结合的概率来导致力增加。