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负向机械应力对肌纤维中肌球蛋白横桥取向的影响。

Effect of negative mechanical stress on the orientation of myosin cross-bridges in muscle fibers.

作者信息

Burghardt T P, Ajtai K

机构信息

Department of Biochemistry and Molecular Biology, Mayo Foundation, Rochester, MN 55905.

出版信息

Proc Natl Acad Sci U S A. 1989 Jul;86(14):5366-70. doi: 10.1073/pnas.86.14.5366.

Abstract

The effect of positive and negative stress on myosin cross-bridge orientation in glycerinated muscle fibers was investigated by using fluorescence polarization spectroscopy of the emission from the covalent label tetramethyl-rhodamine-5-(and -6)-iodoacetamide (IATR) specifically modifying sulfhydryl one (SH1) on the myosin heavy chain. Positive tension was applied by stretching the fiber in rigor. Negative tension was applied in two steps by using a protocol introduced by Goldman et al. [Goldman, Y. E., McCray, J. A. & Vallette, D. P. (1988) J. Physiol. (London) 398, 75P]: relaxing a fiber at resting length and stretching it until the relaxed tension is appreciable and then placing the fiber in rigor and releasing the tension onto the rigor cross-bridges. We found, as have others, that positive tension has no effect on the fluorescence polarization spectrum from the SH1-bound probe, indicating that the cross-bridge does not rotate under these conditions. Negative tension, however, causes a change in the fluorescence polarization spectrum that indicates a probe rotation. The changes in the polarization spectrum from negative stress are partially reversed by the subsequent application of positive stress. It appears that negative tension strains the cross-bridge, or the cross-bridge domain containing SH1, and causes it to rotate.

摘要

通过使用对肌球蛋白重链上的巯基一(SH1)进行特异性修饰的共价标记四甲基罗丹明-5-(和-6)-碘乙酰胺(IATR)发射的荧光偏振光谱,研究了正负应力对甘油化肌纤维中肌球蛋白横桥取向的影响。通过在僵直状态下拉伸纤维施加正张力。按照Goldman等人[Goldman, Y. E., McCray, J. A. & Vallette, D. P. (1988) J. Physiol. (London) 398, 75P]介绍的方案分两步施加负张力:在静息长度下使纤维松弛,然后拉伸直至松弛张力明显,接着将纤维置于僵直状态并将张力释放到僵直横桥上。我们和其他人一样发现,正张力对与SH1结合的探针的荧光偏振光谱没有影响,这表明在这些条件下横桥不旋转。然而,负张力会导致荧光偏振光谱发生变化,这表明探针发生了旋转。后续施加正应力会部分逆转负应力引起的偏振光谱变化。似乎负张力使横桥或含有SH1的横桥结构域发生应变并导致其旋转。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/210d/297623/45b94d80d933/pnas00281-0160-a.jpg

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