Håkansson K, Doherty A J, Shuman S, Wigley D B
Laboratory of Molecular Biophysics, University of Oxford, United Kingdom.
Cell. 1997 May 16;89(4):545-53. doi: 10.1016/s0092-8674(00)80236-6.
We have solved the crystal structure of an mRNA capping enzyme at 2.5 A resolution. The enzyme comprises two domains with a deep, but narrow, cleft between them. The two molecules in the crystallographic asymmetric unit adopt very different conformations; both contain a bound GTP, but one protein molecule is in an open conformation while the other is in a closed conformation. Only in the closed conformation is the enzyme able to bind manganese ions and undergo catalysis within the crystals to yield the covalent guanylated enzyme intermediate. These structures provide direct evidence for a mechanism that involves a significant conformational change in the enzyme during catalysis.
我们已解析了一种mRNA加帽酶的晶体结构,分辨率为2.5埃。该酶由两个结构域组成,它们之间有一个深而窄的裂缝。晶体学不对称单元中的两个分子呈现出非常不同的构象;两者都结合了一个GTP,但一个蛋白质分子处于开放构象,而另一个处于封闭构象。只有在封闭构象中,酶才能结合锰离子并在晶体内进行催化,生成共价鸟苷酸化酶中间体。这些结构为催化过程中酶发生显著构象变化的机制提供了直接证据。