Popp D, Maéda Y
Department of Biophysics, Max Planck Institute for Medical Research, Heidelberg, Germany.
J Mol Biol. 1993 Jan 20;229(2):279-85. doi: 10.1006/jmbi.1993.1032.
In order to investigate the effects of Ca(2+)-binding to troponin on the conformation of the muscle thin filament (consisting of actin, tropomyosin and troponin) in the absence of actomyosin interaction, two series of X-ray diffraction experiments were undertaken. Firstly, the small angle X-ray scattering from filaments in solution indicate the tropomyosin strands are centred at about 3.5 nm from the filament axis and this distance is calcium independent. Secondly, X-ray fibre diffraction patterns from the filaments orientated in glass capillaries were studied. The X-ray intensity of the 2nd actin layer-line increased in a highly co-operative manner at a concentration of free calcium ions [Ca2+] of 10(-6.8) M, which is the range in which muscle contraction is physiologically regulated. However, this intensity increase accounted for some 30% of the total increase observed in diffraction patterns from muscle on activation, suggesting that the Ca(2+)-binding alters the state of the thin filament, which then undergoes further changes upon interaction with myosin.
为了研究在不存在肌动球蛋白相互作用的情况下,钙离子与肌钙蛋白结合对肌肉细肌丝(由肌动蛋白、原肌球蛋白和肌钙蛋白组成)构象的影响,进行了两个系列的X射线衍射实验。首先,溶液中细丝的小角X射线散射表明,原肌球蛋白链的中心距离细丝轴约3.5 nm,且该距离与钙无关。其次,研究了在玻璃毛细管中取向的细丝的X射线纤维衍射图。在游离钙离子[Ca2+]浓度为10^(-6.8) M时,肌动蛋白第二层线的X射线强度以高度协同的方式增加,这是肌肉收缩在生理上受到调节的范围。然而,这种强度增加约占激活后肌肉衍射图中观察到的总增加量的30%,这表明Ca(2+)结合改变了细肌丝的状态,然后在与肌球蛋白相互作用时进一步发生变化。