Vitali Jacqueline, Colaneri Michael J, Kantrowitz Evan
Department of Physics, Cleveland State University, Euclid Avenue at East 24th Street, Cleveland, Ohio 44115, USA.
Proteins. 2008 May 15;71(3):1324-34. doi: 10.1002/prot.21667.
The catalytic trimer of Methanococcus jannaschii aspartate transcarbamoylase is extremely heat stable, maintaining 75% of its activity after heat treatment for 60 min at 75 degrees C. We undertook its structural analysis in order to understand the molecular basis of its thermostability and gain insight on how its catalytic function adapts to high temperature. Several structural elements potentially contributing to thermostability were identified. These include: (i) changes in the amino acid composition such as a decrease in the thermolabile residues Gln and Asn, an increase in the charged residues Lys and Glu, an increase in Tyr and a decrease in Ala residues; (ii) a larger number of salt bridges, in particular, the improvement of ion-pair networks; (iii) shortening of the N-terminus and shortening of three loops. An interesting feature of the crystal structure is the association of two crystallographically independent catalytic subunits into a staggered complex with an intertrimer distance of 33.8 A. The active site appears similar to Escherichia coli. Upon substrate binding, smaller changes in the global orientation of domains and larger conformational changes of the active site residues are expected as compared to E. coli.
詹氏甲烷球菌天冬氨酸转氨甲酰酶的催化三聚体具有极高的热稳定性,在75℃热处理60分钟后仍保持其75%的活性。我们对其进行了结构分析,以了解其热稳定性的分子基础,并深入了解其催化功能如何适应高温。确定了几个可能有助于热稳定性的结构元件。这些包括:(i)氨基酸组成的变化,如热不稳定残基Gln和Asn的减少、带电荷残基Lys和Glu的增加、Tyr的增加和Ala残基的减少;(ii)更多的盐桥,特别是离子对网络的改善;(iii)N端的缩短和三个环的缩短。晶体结构的一个有趣特征是两个晶体学上独立的催化亚基缔合成一个交错复合物,三聚体间距离为33.8 Å。活性位点似乎与大肠杆菌的相似。与大肠杆菌相比,预计在底物结合时,结构域的整体取向变化较小,而活性位点残基的构象变化较大。