Hardwicke P M, Wallimann T, Szent-Györgyi A G
Nature. 1983 Feb 10;301(5900):478-82. doi: 10.1038/301478a0.
Photo-cross-linking techniques show that when scallop myosin or myofibrils are subjected to experimental conditions that cause relaxed muscles to go into rigor, the N-terminal portion of the regulatory light chain of myosin moves towards the essential light chain while the C-terminal portion stays in place. These changes occur on the myosin before combination with actin. Cross-linking of the N-terminal region to the essential light chain in rigor locks the myosin into a conformation such that calcium sensitivity of the actin-activated Mg-ATPase is lost.
光交联技术表明,当扇贝肌球蛋白或肌原纤维处于导致松弛肌肉进入僵直状态的实验条件下时,肌球蛋白调节轻链的N端部分会向必需轻链移动,而C端部分则保持原位。这些变化发生在肌球蛋白与肌动蛋白结合之前。在僵直状态下,N端区域与必需轻链的交联将肌球蛋白锁定在一种构象中,从而使肌动蛋白激活的Mg-ATP酶失去钙敏感性。