Greene L E, Williams D L, Eisenberg E
Proc Natl Acad Sci U S A. 1987 May;84(10):3102-6. doi: 10.1073/pnas.84.10.3102.
In our model of regulation, the observed lack of cooperativity in the binding of myosin subfragment 1 (S-1) with bound ATP to the troponin-tropomyosin-actin complex (regulated actin) is explained by S-1.ATP having about the same affinity for the conformation of the regulated actin that activates the myosin ATPase activity (turned-on form) and the conformation that does not activate the myosin ATPase activity (turned-off form). This predicts that, in the absence of Ca2+, S-1.ATP should not turn on the regulated actin filament. In the present study, we tested this prediction by using either unmodified S-1 or S-1 chemically modified with N,N'-p-phenylenedimaleimide (pPDM X S-1) so that functionally it acts like S-1.ATP, although it does not hydrolyze ATP. We found that, in the absence of Ca2+, neither S-1.ATP nor pPDM X S-1.ATP significantly turns on the ATPase activity of the regulated complex of actin and S-1 (acto X S-1). In contrast, in the presence of Ca2+, pPDM X S-1.ATP binding almost completely turns on the regulated acto.S-1 ATPase activity. These results can be explained by our original cooperativity model, with pPDM X S-1.ATP binding only approximately equal to 2-fold more strongly to the turned-on form than to the turned-off form of regulated actin. However, our results are not consistent with our alternative model, which predicts that if pPDM X S-1.ATP binds to actin in the absence of Ca2+ but does not turn on the ATPase activity, then it should also not turn on the ATPase activity in the presence of Ca2+.
在我们的调节模型中,肌球蛋白亚片段1(S-1)与结合了ATP的肌钙蛋白-原肌球蛋白-肌动蛋白复合物(调节型肌动蛋白)结合时观察到的缺乏协同性现象,是由S-1.ATP对调节型肌动蛋白的两种构象具有大致相同的亲和力所解释的,这两种构象分别是激活肌球蛋白ATP酶活性的构象(开启形式)和不激活肌球蛋白ATP酶活性的构象(关闭形式)。这预测在没有Ca2+的情况下,S-1.ATP不应开启调节型肌动蛋白丝。在本研究中,我们通过使用未修饰的S-1或用N,N'-对苯二马来酰亚胺化学修饰的S-1(pPDM X S-1)来检验这一预测,这样尽管它不水解ATP,但在功能上它的作用类似于S-1.ATP。我们发现,在没有Ca2+的情况下,S-1.ATP和pPDM X S-1.ATP都不会显著开启肌动蛋白和S-1的调节复合物(肌动蛋白X S-1)的ATP酶活性。相反,在有Ca2+的情况下,pPDM X S-1.ATP结合几乎完全开启了调节型肌动蛋白.S-1的ATP酶活性。这些结果可以用我们原来的协同性模型来解释,即pPDM X S-1.ATP与调节型肌动蛋白开启形式的结合强度仅比关闭形式大约强2倍。然而,我们的结果与我们的另一种模型不一致,该模型预测如果pPDM X S-1.ATP在没有Ca2+的情况下与肌动蛋白结合但不开启ATP酶活性,那么在有Ca2+的情况下它也不应开启ATP酶活性。