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通过自旋标记核苷酸松弛的昆虫横桥,经X射线衍射和电子显微镜观察显示出有序的90度状态,但电子顺磁共振探针的光谱显示无序。

Insect crossbridges, relaxed by spin-labeled nucleotide, show well-ordered 90 degrees state by X-ray diffraction and electron microscopy, but spectra of electron paramagnetic resonance probes report disorder.

作者信息

Reedy M K, Lucaveche C, Naber N, Cooke R

机构信息

Department of Cell Biology, Duke University, Durham NC, 27710.

出版信息

J Mol Biol. 1992 Oct 5;227(3):678-97. doi: 10.1016/0022-2836(92)90217-8.

Abstract

The structure of glycerinated Lethocerus insect flight muscle fibers, relaxed by spin-labeled ATP and vanadate (Vi), was examined using X-ray diffraction, electron microscopy and electron paramagnetic resonance (e.p.r.) spectra. We obtained excellent relaxation of MgATP quality as determined by mechanical criteria, using vanadate trapping of 2' spin-labeled 3' deoxyATP at 3 degree C. In rigor fibers, when the diphosphate analog is bound in the absence of Vi, the probes on myosin heads are well-ordered, in agreement with electron microscopic and X-ray patterns showing that myosin heads are ordered when attached strongly to actin. In relaxed muscle, however, e.p.r. spectra report orientational disorder of bound (Vi-trapped) spin-labeled nucleotide, while electron microscopic and X-ray patterns both show well-ordered bridges at a uniform 90 degrees angle to the filament axis. The spin-labeled nucleotide orientation is highly disordered, but not completely isotropic; the slight anisotropy observed in probe spectra is consistent with a shift of approximately 10% of probes from angles close to 0 degrees to angles close to 90 degrees. Measurements of probe mobility suggest that the interaction between probe and protein remains as tight in relaxed fibers as in rigor, and thus that the disorder in relaxed fibers arises from disorders of (or within) the protein and not from disorder of the probe relative to the protein. Fixation of the relaxed fibers with glutaraldehyde did not alter any aspect of the spectrum of the Vi-trapped analog, including the slight order observed, showing that the extensive inter- and intra-molecular cross-linking of the first step of sample preparation for electron microscopy had not altered relaxed crossbridge orientations. Two models that may reconcile the apparently disparate results obtained on relaxed fibers are presented: (1) a rigid myosin head could possess considerable disorder in the regular array about the thick filament; or (2) the nucleotide site could be on a disordered, probably distal, domain of myosin, while a more proximal region is well ordered on the thick filament backbone. Our findings suggest that when e.p.r. probes signal disorder of a local site or domain, this is complementary, not contradictory, to signals of general order. The e.p.r. spectra show that a portion of the myosin molecule can be disordered at the same time as the X-ray diffraction and electron microscopy show the bulk of myosin head mass to be uniformly oriented and regularly arrayed.

摘要

利用X射线衍射、电子显微镜和电子顺磁共振(e.p.r.)光谱,研究了经自旋标记的ATP和钒酸盐(Vi)松弛的甘油化田鳖昆虫飞行肌纤维的结构。在3℃下,通过钒酸盐捕获2'自旋标记的3'脱氧ATP,我们根据力学标准获得了质量优异的MgATP松弛效果。在僵直纤维中,当二磷酸类似物在没有Vi的情况下结合时,肌球蛋白头部的探针排列有序,这与电子显微镜和X射线图像一致,表明肌球蛋白头部在与肌动蛋白强烈结合时是有序排列的。然而,在松弛的肌肉中,e.p.r.光谱显示结合的(Vi捕获的)自旋标记核苷酸的取向无序,而电子显微镜和X射线图像均显示与细丝轴成均匀90度角的有序桥。自旋标记核苷酸的取向高度无序,但并非完全各向同性;在探针光谱中观察到的轻微各向异性与约10%的探针从接近0度的角度向接近90度的角度偏移一致。探针迁移率的测量表明,在松弛纤维中,探针与蛋白质之间的相互作用与在僵直状态下一样紧密,因此,松弛纤维中的无序是由蛋白质(或蛋白质内部)的无序引起的,而不是由探针相对于蛋白质的无序引起的。用戊二醛固定松弛纤维不会改变Vi捕获类似物光谱的任何方面,包括观察到的轻微有序性,这表明电子显微镜样品制备第一步中广泛的分子间和分子内交联并未改变松弛的横桥取向。本文提出了两个模型,它们可能调和在松弛纤维上获得的明显不同的结果:(1)刚性的肌球蛋白头部在围绕粗丝的规则阵列中可能存在相当大的无序;或者(2)核苷酸位点可能位于肌球蛋白的无序、可能是远端的结构域上,而更靠近近端的区域在粗丝主链上排列有序。我们的研究结果表明,当e.p.r.探针表明局部位点或结构域无序时,这与整体有序的信号是互补的,而非矛盾的。e.p.r.光谱显示,肌球蛋白分子的一部分可能无序,与此同时,X射线衍射和电子显微镜显示大部分肌球蛋白头部质量均匀取向且规则排列。

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