Thomas A, Field M J, Mouawad L, Perahia D
Laboratoire de Dynamique Moléculaire, Institut de Biologie Structurale-Jean Pierre Ebel, Grenoble, France.
J Mol Biol. 1996 Apr 19;257(5):1070-87. doi: 10.1006/jmbi.1996.0224.
Aspartate transcarbamylase (ATCase) is an important control enzyme in the pyrimidine biosynthetic pathway in Escherichia coli. It is a classic example of an allosteric protein and has been extensively studied biochemically, kinetically and structurally. As yet, however, a detailed model for the cooperative transition between the tensed (T) and relaxed (R) forms of the protein does not exist. In this work we have calculated the low frequency normal modes of the CTP-ligated T-state of ATCase with the aim of identifying some of the motions that could be important in initiating the transition. The calculated modes, of frequencies lower than 5 per cm, produce root-mean-square coordinate deviations for the atoms which are a substantial fraction of those derived from the crystallographic B-factors. Some of the modes result in displacements which change the quaternary structure of the protein (in particular the elongation of the protein and the relative rotation of the subunits) in such a way that the R-state structure is approached. The implication of these mode motions for the overall T-->R transition process is discussed.
天冬氨酸转氨甲酰酶(ATCase)是大肠杆菌嘧啶生物合成途径中的一种重要调控酶。它是变构蛋白的一个经典例子,已经在生物化学、动力学和结构方面得到了广泛研究。然而,迄今为止,尚不存在关于该蛋白紧张态(T态)和松弛态(R态)之间协同转变的详细模型。在这项工作中,我们计算了CTP结合的ATCase T态的低频正常模式,目的是确定一些可能对启动转变很重要的运动。计算得到的频率低于每厘米5次的模式,会使原子的均方根坐标偏差达到晶体学B因子所推导偏差的很大一部分。其中一些模式导致的位移会以接近R态结构的方式改变蛋白质的四级结构(特别是蛋白质的伸长和亚基的相对旋转)。本文讨论了这些模式运动对整体T→R转变过程的意义。