Caillé J P, Pigeon-Gosselin M, Pézolet M
Biochim Biophys Acta. 1983 Jul 29;758(2):121-7.
Raman spectra of an intact muscle fiber and of internally perfused fibers in capillary tubes have been obtained. The use of internal perfusion has insured a good control of the concentration of Ca2+, Mg2+ and ATP. The comparison of the spectra obtained with the two types of fibers shows that the muscle structure is well preserved in capillary tubes. In addition, it appears that the sarcomere length has no significant effect on the Raman spectrum of muscle fibers. Our results on perfused fibers demonstrate that a fiber can be kept in the relaxed state for several hours, then displaying an intact fiber spectrum, when the concentration of ATP, Mg2+ and Ca2+ is maintained at 5, 2 and 0 mM, respectively. Therefore ATP and Mg2+ do not affect the Raman spectrum of muscle fibers. When one of these components is removed, or when Ca2+ is added, contraction occurs and causes major spectral changes. These results are interpreted as being due to strong electrostatic interactions between basic and acidic residues during contraction, and to a change of the alpha-helical content, or of the orientation, of some of the contractile proteins.
已获得完整肌纤维和毛细管内内部灌注纤维的拉曼光谱。内部灌注的使用确保了对Ca2+、Mg2+和ATP浓度的良好控制。对两种类型纤维获得的光谱进行比较表明,肌结构在毛细管中保存良好。此外,肌节长度似乎对肌纤维的拉曼光谱没有显著影响。我们对灌注纤维的研究结果表明,当ATP、Mg2+和Ca2+的浓度分别维持在5 mM、2 mM和0 mM时,纤维可以保持松弛状态数小时,然后呈现完整的纤维光谱。因此,ATP和Mg2+不会影响肌纤维的拉曼光谱。当去除其中一种成分,或添加Ca2+时,就会发生收缩并引起主要的光谱变化。这些结果被解释为是由于收缩过程中碱性和酸性残基之间强烈的静电相互作用,以及一些收缩蛋白的α-螺旋含量或取向的变化。