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首页> 外文期刊>Biophysical Journal >The Closed State of the Thin Filament Is Not Occupied in Fully Activated Skeletal Muscle
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The Closed State of the Thin Filament Is Not Occupied in Fully Activated Skeletal Muscle

机译:薄灯丝的关闭状态未在完全活化的骨骼肌中占用

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Muscle contraction is powered by actin-myosin interaction controlled by Ca2+ via the regulatory proteins troponin (Tn) and tropomyosin (Tpm), which are associated with actin filaments. Tpm forms coiled-coil dimers, which assemble into a helical strand that runs along the whole similar to 1 mu m length of a thin filament. In the absence of Ca2+, Tn that is tightly bound to Tpm binds actin and holds the Tpm strand in the blocked, or B, state, where Tpm shields actin from the binding of myosin heads. Ca2+ binding to Tn releases the Tpm from actin so that it moves azimuthally around the filament axis to a closed, or C, state, where actin is partially available for weak binding of myosin heads. Upon transition of the weak actin-myosin bond into a strong, stereo-specific complex, the myosin heads push Tpm strand to the open, or O, state allowing myosin binding sites on several neighboring actin monomers to become open for myosin binding. We used low-angle x-ray diffraction at the European Synchrotron Radiation Facility to check whether the O- to C-state transition in fully activated fibers of fast skeletal muscle of the rabbit occurs during transition from isometric contraction to shortening under low load. No decrease in the intensity of the second actin layer line at reciprocal radii in the range of 0.15-0.275 nm (1) was observed during shortening suggesting that an azimuthal Tpm movement from the O- to C-state does not occur, although during shortening muscle stiffness is reduced compared to the isometric state, and the intensities of other actin layer lines demonstrate a similar to 2-fold decrease in the fraction of myosin heads strongly bound to actin. The data show that a small fraction of actin-bound myosin heads is sufficient for supporting the O-state and, therefore the C-state is not occupied in fully activated skeletal muscle that produces mechanical work at low load.
机译:肌肉收缩通过Ca2 +通过调节蛋白质肌钙蛋白(TN)和对肌肌苷(TPM)控制的肌动蛋白 - 肌球蛋白相互作用,其与肌动蛋白长丝有关。 TPM形成卷绕式线圈二聚体,其组装成沿着整体运行的螺旋绞线,类似于薄丝的1μm长度。在没有Ca2 +的情况下,TN紧密地与TPM结合结合肌动蛋白并将TPM链保持在封闭的或B,状态,其中TPM屏蔽肌肌瘤头部的结合。 Ca2 +与Tn的结合释放来自肌动蛋白的TPM,使得其围绕灯丝轴围绕丝轴移动到闭合,或C,状态,其中肌动蛋白部分可用于肌球蛋白头的弱结合。在将弱肌动蛋白 - 霉菌粘合剂转变为强,立体特异性络合物中,肌球蛋白头将TPM链推到开放,或O,o,允许肌蛋白结合位点在几个相邻的肌动蛋白单体上进行肌蛋白,以对肌蛋白结合开放。我们在欧洲同步辐射设施中使用了低角度X射线衍射,检查兔子的快速骨骼肌的完全活化纤维中的O-至C-状态过渡在从等距收缩到低负荷缩短的情况下发生。在缩短期间观察到在0.15-0.275nm(1)范围内的倒数半径下的第二肌动蛋白层线的强度降低,表明在缩短期间,不会发生从O-至C状态的方位角TPM运动与等距状态相比,肌肉刚度降低,其他肌动蛋白层线的强度表现出类似于肌动蛋白的肌蛋白头部的霉菌的级分的2倍降低。数据表明,一小部分肌动蛋白结合的肌球蛋白头足以支撑O-状态,因此C状态未被占据在完全活化的骨骼肌中,这些骨骼肌在低负荷下产生机械工作。

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