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Effect of activation by calcium on the x-ray diffraction pattern from insect flight muscle.

作者信息

Armitage P M, Tregear R T, Miller A

出版信息

J Mol Biol. 1975 Feb 15;92(1):39-53. doi: 10.1016/0022-2836(75)90090-x.

DOI:10.1016/0022-2836(75)90090-x
PMID:1152041
Abstract
摘要

相似文献

1
Effect of activation by calcium on the x-ray diffraction pattern from insect flight muscle.
J Mol Biol. 1975 Feb 15;92(1):39-53. doi: 10.1016/0022-2836(75)90090-x.
2
Three-dimensional reconstruction of rigor insect flight muscle from tilted thin sections.基于倾斜薄片的昆虫僵直飞行肌肉的三维重建
Nature. 1984;310(5975):285-91. doi: 10.1038/310285a0.
3
X-ray diffraction indicates that active cross-bridges bind to actin target zones in insect flight muscle.X射线衍射表明,活性横桥与昆虫飞行肌中的肌动蛋白靶区结合。
Biophys J. 1998 Mar;74(3):1439-51. doi: 10.1016/S0006-3495(98)77856-7.
4
Rigor crossbridge structure in tilted single filament layers and flared-X formations from insect flight muscle.来自昆虫飞行肌肉的倾斜单丝层和喇叭形-X 结构中的强直横桥结构。
J Mol Biol. 1985 Sep 5;185(1):145-76. doi: 10.1016/0022-2836(85)90188-3.
5
Arrangement of cross-bridges in insect flight muscle in rigor.处于僵直状态的昆虫飞行肌中横桥的排列
J Mol Biol. 1981 Oct 5;151(4):663-702. doi: 10.1016/0022-2836(81)90429-0.
6
The structure of S1-decorated actin filaments calculated from x-ray diffraction data with phases derived from electron micrographs.
Ultramicroscopy. 1982;9(1-2):37-44. doi: 10.1016/0304-3991(82)90227-3.
7
Calcium binding and the activation of fibrillar insect flight muscle.钙结合与昆虫丝状飞行肌的激活
Biochim Biophys Acta. 1974 May 22;347(2):311-8. doi: 10.1016/0005-2728(74)90054-1.
8
Binding of myosin subfragment 1 to glycerinated insect flight muscle in the rigor state.处于僵直状态的肌球蛋白亚片段1与甘油处理的昆虫飞行肌的结合。
Biophys J. 1985 Feb;47(2 Pt 1):151-69. doi: 10.1016/s0006-3495(85)83889-3.
9
Cross-bridge states in invertebrate muscles.无脊椎动物肌肉中的横桥状态。
Adv Exp Med Biol. 1984;170:185-92. doi: 10.1007/978-1-4684-4703-3_16.
10
X-ray evidence for conformational changes in the myosin filaments of vertebrate striated muscle.脊椎动物横纹肌肌球蛋白丝构象变化的X射线证据。
J Mol Biol. 1975 Feb 15;92(1):113-43. doi: 10.1016/0022-2836(75)90094-7.

引用本文的文献

1
Time-Resolved Structural Studies on Insect Flight Muscle after Photolysis of Caged-ATP.笼式 ATP 光解后昆虫飞行肌的时间分辨结构研究。
Biophys J. 1986 Nov;50(5):993-7. doi: 10.1016/S0006-3495(86)83540-8.
2
Invertebrate muscles: thin and thick filament structure; molecular basis of contraction and its regulation, catch and asynchronous muscle.无脊椎动物肌肉:细肌丝和粗肌丝结构;收缩及其调节的分子基础、牵张肌和异步肌。
Prog Neurobiol. 2008 Oct;86(2):72-127. doi: 10.1016/j.pneurobio.2008.06.004. Epub 2008 Jun 20.
3
X-ray diffraction indicates that active cross-bridges bind to actin target zones in insect flight muscle.
X射线衍射表明,活性横桥与昆虫飞行肌中的肌动蛋白靶区结合。
Biophys J. 1998 Mar;74(3):1439-51. doi: 10.1016/S0006-3495(98)77856-7.
4
Evidence for an altered structure of actin-S1 complexes when Mg-adenylylimidodiphosphate binds.当镁-腺苷酰亚胺二磷酸结合时,肌动蛋白-S1复合物结构改变的证据。
J Muscle Res Cell Motil. 1980 Sep;1(3):305-20. doi: 10.1007/BF00711933.
5
Co-ordinated electron microscopy and X-ray studies of glycerinated insect flight muscle. II. Electron microscopy and image reconstruction of muscle fibres fixed in rigor, in ATP and in AMPPNP.甘油化昆虫飞行肌的电子显微镜与X射线协同研究。II. 处于僵直状态、ATP溶液及AMPPNP溶液中固定的肌纤维的电子显微镜观察与图像重建
J Muscle Res Cell Motil. 1983 Feb;4(1):55-81. doi: 10.1007/BF00711958.
6
Modification of crossbridge states by ethylene glycol in insect flight muscle.乙二醇对昆虫飞行肌中横桥状态的修饰作用。
J Muscle Res Cell Motil. 1984 Feb;5(1):81-96. doi: 10.1007/BF00713153.
7
The elasticity of relaxed insect fibrillar flight muscle.松弛状态下昆虫纤维状飞行肌的弹性
J Physiol. 1983 Oct;343:31-57. doi: 10.1113/jphysiol.1983.sp014880.
8
Time-resolved X-ray diffraction studies on stretch-activated insect flight muscle.对牵张激活昆虫飞行肌肉的时间分辨X射线衍射研究。
J Muscle Res Cell Motil. 1991 Apr;12(2):208-15. doi: 10.1007/BF01774040.