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首页> 外文期刊>Journal of Muscle Research and Cell Motility >MusLABEL: a program to model striated muscle A-band lattices, to explore crossbridge interaction geometries and to simulate muscle diffraction patterns.
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MusLABEL: a program to model striated muscle A-band lattices, to explore crossbridge interaction geometries and to simulate muscle diffraction patterns.

机译:MusLABEL:一个程序,用于对横纹肌A带晶格进行建模,探索跨桥相互作用的几何形状并模拟肌肉衍射图样。

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The program MusLABEL has been devised as a simple aid both in understanding the origin and appearance of fibre diffraction patterns from helical structures and also to simulate the structure and some features of the diffraction patterns from striated muscles and their filament components. Helices are common as preferred conformations in both natural and synthetic macromolecules (e.g. DNA, alpha -helices, polysaccharides, synthetic polymers), and they also occur frequently in extended macromolecular aggregates (e.g. actin filaments, myosin filaments, microtubules, amyloid filaments etc). For this reason, a simple way of visualising the kinds of diffraction patterns that these filament structures can give, particularly for the actin and myosin filaments in muscle, can have educational value and can also be useful as a quick means of evaluating possible symmetries in structural interpretations of diffraction data before embarking on full helical diffraction analysis. A feature of the MusLABEL program is that, when a particular kind of A-band lattice has been set up, for example for vertebrate striated muscle or insect flight muscle, additional parameters can be defined both to describe the limits to the azimuthal and axial ranges over which a myosin head can search for an actin binding site and also to describe the size and position of an actin `target area' assuming that the azimuthal position of an actin monomer has a large effect in determining whether or not a myosin head can bind to it. By this means the effects of lattice geometry on head attachment can be explored and the diffraction effects of specific labelling patterns on actin can be calculated and simulated. The MusLABEL program, running under Microsoft Windows, is available free on the CCP13 website (www.ccp13.ac.uk) where further documentation is given.
机译:设计了MusLABEL程序,可以帮助您理解螺旋结构中纤维衍射图的起源和外观,还可以模拟横纹肌及其细丝成分的衍射图的结构和某些特征。螺旋在天然和合成大分子(例如,DNA,α-螺旋,多糖,合成聚合物)中都是常见的优选构象,并且它们也经常出现在扩展的大分子聚集体(例如肌动蛋白丝,肌球蛋白丝,微管,淀粉样蛋白丝等)中。因此,一种可视化这些细丝结构可以给出的衍射图样的简单方法,特别是对于肌肉中的肌动蛋白和肌球蛋白细丝,具有教育价值,并且还可以用作评估结构中可能对称性的快速方法在开始全螺旋衍射分析之前对衍射数据的解释。 MusLABEL程序的一个特点是,当已经建立了特定种类的A波段晶格时,例如针对脊椎动物的横纹肌或昆虫飞行肌,可以定义其他参数来描述对方位角和轴向范围的限制假定肌动蛋白单体的方位角位置在确定肌球蛋白头是否可以结合方面起很大作用,则肌球蛋白头可以在其上搜索肌动蛋白结合位点并描述肌动蛋白“靶区域”的大小和位置。对它。通过这种方式,可以探讨晶格几何形状对头部附着的影响,并且可以计算和模拟特定标记图案对肌动蛋白的衍射效应。在Microsoft Windows下运行的MusLABEL程序可在CCP13网站(www.ccp13.ac.uk)上免费获得,该网站提供了进一步的文档。

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