Houdusse A, Kalabokis V N, Himmel D, Szent-Györgyi A G, Cohen C
Rosenstiel Basic Medical Sciences Research Center, Brandeis University, Waltham, Massachusetts 02254-9110, USA.
Cell. 1999 May 14;97(4):459-70. doi: 10.1016/s0092-8674(00)80756-4.
The crystal structure of a proteolytic subfragment from scallop striated muscle myosin, complexed with MgADP, has been solved at 2.5 A resolution and reveals an unusual conformation of the myosin head. The converter and the lever arm are in very different positions from those in either the pre-power stroke or near-rigor state structures; moreover, in contrast to these structures, the SH1 helix is seen to be unwound. Here we compare the overall organization of the myosin head in these three states and show how the conformation of three flexible "joints" produces rearrangements of the four major subdomains in the myosin head with different bound nucleotides. We believe that this novel structure represents one of the prehydrolysis ("ATP") states of the contractile cycle in which the myosin heads stay detached from actin.
扇贝横纹肌肌球蛋白蛋白水解亚片段与MgADP复合后的晶体结构已在2.5埃分辨率下解析出来,揭示了肌球蛋白头部的一种异常构象。转换器和杠杆臂的位置与动力冲程前或接近僵直状态结构中的位置非常不同;此外,与这些结构相比,SH1螺旋被发现是展开的。在这里,我们比较了这三种状态下肌球蛋白头部的整体结构,并展示了三个灵活“关节”的构象如何导致肌球蛋白头部中四个主要亚结构域在结合不同核苷酸时发生重排。我们认为,这种新结构代表了收缩循环中的一种预水解(“ATP”)状态,在这种状态下肌球蛋白头部与肌动蛋白保持分离。