Goulding D, Bullard B, Gautel M
European Molecular Biology Laboratory, Structural Biology Division, Heidelberg, Germany.
J Muscle Res Cell Motil. 1997 Aug;18(4):465-72. doi: 10.1023/a:1018650915751.
The giant molecule titin/connectin was demonstrated to connect the ends of thick filaments with the Z-disks and thus to provide an elastic connection that seems to be responsible for passive tension in striated muscle. To investigate the physiological limits of I-band titin extension in skeletal muscle, we have measured sarcomere lengths of a number of mouse postural and clonal muscles in situ under the constraints imposed by the skeletal, ligamentous and tendinous components of the motile apparatus. These values now give upper limits for the extension of the I-band and therefore for the maximal degree of titin extension under physiological constraints. We find that I-band extension in all muscles investigated does not exceed a factor of approximately 2.5 in situ, which is well below values obtainable in isolated fibre preparations. Approach to the yield-point is therefore prevented by extramuscular mechanisms. Sarcomere lengths near the tendinous junction and within the muscle are virtually identical in extended muscle, suggesting that a major function of titin in intact muscle is to ensure uniform sarcomere lengths over the entire muscle length and thus to prevent localized myofibril overstretch during isometric contraction.
巨分子肌联蛋白/伴肌动蛋白被证明可将粗肌丝的末端与Z盘相连,从而提供一种弹性连接,这种连接似乎是造成横纹肌被动张力的原因。为了研究骨骼肌中I带肌联蛋白伸展的生理极限,我们在运动器官的骨骼、韧带和肌腱成分所施加的限制条件下,原位测量了多种小鼠姿势肌和克隆肌的肌节长度。这些数值现在给出了I带伸展的上限,因此也给出了生理限制下肌联蛋白最大伸展程度的上限。我们发现,在所研究的所有肌肉中,I带伸展在原位不超过约2.5倍,这远低于在分离纤维制剂中可获得的值。因此,肌肉外机制可防止接近屈服点。在伸展的肌肉中,肌腱连接处附近和肌肉内部的肌节长度实际上是相同的,这表明完整肌肉中肌联蛋白的一个主要功能是确保整个肌肉长度上肌节长度均匀,从而防止等长收缩期间局部肌原纤维过度拉伸。