Kerr W L, Baskin R J, Yeh Y
Graduate Group in Biophysics, University of California, Davis 95616.
Pflugers Arch. 1990 Aug;416(6):679-88. doi: 10.1007/BF00370615.
Microstructural features of relaxed, skinned muscle fibers compressed with polyvinylpyrrolidone were examined by optical diffraction ellipsometry. This technique is sensitive to the optical anisotropy within the muscle, including that due to intrinsic properties of the protein molecules as well as that due to the regular arrangement of proteins in the surrounding medium. The change in polarization state of light after interacting with the muscle is described by the differential field ratio (DFR) and birefringence (delta n). Compression of single fibers (sarcomere length = 2.6 microns) with 0%-21% polyvinylpyrrolidone caused an increase of up to 23% and 31% for DFR and delta n, respectively. The largest increase in both parameters occurred at intermediate sarcomere lengths. Theoretical modelling of the results suggest that the average S-1 tilt angle may be reduced upon compression of the filament lattice. This is supported by experiments in which S-1 was enzymatically cleaved with alpha-chymotrypsin. Separate experiments comparing fibers with intact membranes and skinned fibers compressed to an equivalent lattice spacing showed little difference in DFR or delta n.
采用光学衍射椭圆偏振法研究了用聚乙烯吡咯烷酮压缩的松弛、剥除肌膜的肌纤维的微观结构特征。该技术对肌肉内的光学各向异性敏感,包括由于蛋白质分子的固有特性以及由于蛋白质在周围介质中的规则排列所导致的光学各向异性。光与肌肉相互作用后偏振态的变化用微分场比率(DFR)和双折射(δn)来描述。用0% - 21%的聚乙烯吡咯烷酮压缩单根纤维(肌节长度 = 2.6微米)分别使DFR和δn增加了高达23%和31%。这两个参数的最大增加发生在中等肌节长度时。结果的理论模型表明,细丝晶格压缩时平均S-1倾斜角可能减小。这得到了用α-胰凝乳蛋白酶对S-1进行酶解的实验的支持。比较具有完整膜的纤维和压缩至等效晶格间距的剥除肌膜纤维的单独实验表明,DFR或δn几乎没有差异。