Jayasekera M M, Shi W, Farber G K, Viola R E
Department of Chemistry, University of Akron, Ohio 44325, USA.
Biochemistry. 1997 Jul 29;36(30):9145-50. doi: 10.1021/bi970452x.
The high-resolution structure of l-aspartate ammonia-lyase from Escherichia coli has recently been determined [Shi, W., Dunbar, J., Jayasekera, M. M. K., Viola, R. E., & Farber, G. K. (1997) Biochemistry 36, 9136-9144]. An examination of the putative active site has been carried out, with the active site located in a cleft that contains the functionally significant lysine 327. A list of potential active site residues has been generated based on their proximity to this active site lysine, sequence homology comparisons with other members of the aspartase-fumarase enzyme family, and the necessity for chemically reasonable functionalities for the proposed roles. The five most likely candidates in the putative active site cleft have been examined by site-directed mutagenesis to test their feasibility for either substrate binding or acid-base catalytic roles. Arginine and lysine residues have been identified that appear to function in the orientation and binding of aspartic acid at the enzyme active site. Some tentative assignments have also been made of the acid and base catalytic groups that are proposed to be involved in the deamination reaction.
最近已确定了来自大肠杆菌的L-天冬氨酸氨裂合酶的高分辨率结构[Shi, W., Dunbar, J., Jayasekera, M. M. K., Viola, R. E., & Farber, G. K. (1997) Biochemistry 36, 9136 - 9144]。已对推定的活性位点进行了研究,活性位点位于一个裂隙中,该裂隙包含功能上重要的赖氨酸327。基于它们与该活性位点赖氨酸的接近程度、与天冬氨酸酶-延胡索酸酶家族其他成员的序列同源性比较以及所提议作用的化学合理功能的必要性,生成了一份潜在活性位点残基列表。通过定点诱变研究了推定活性位点裂隙中五个最有可能的候选残基,以测试它们在底物结合或酸碱催化作用方面的可行性。已鉴定出精氨酸和赖氨酸残基,它们似乎在酶活性位点处天冬氨酸的定向和结合中起作用。还对提议参与脱氨反应的酸碱催化基团进行了一些初步归属。