Griffiths J T, Phylip L H, Konvalinka J, Strop P, Gustchina A, Wlodawer A, Davenport R J, Briggs R, Dunn B M, Kay J
Department of Biochemistry, University of Wales College of Cardiff, United Kingdom.
Biochemistry. 1992 Jun 9;31(22):5193-200. doi: 10.1021/bi00137a015.
The sequence requirements for HIV-1 proteinase catalyzed cleavage of oligopeptides containing two distinct types of junctions (-hydrophobichydrophobic- or -aromaticPro-) has been investigated. For the first type of junction (-hydrophobichydrophobic-) the optimal residues in the P2 and P2' positions were found to be Val and Glu, respectively, in accord with recent statistical analysis of natural cleavage sites [Poorman, R. A., Tomasselli, A. G., Heinrikson, R. L., & Kézdy, F. J. (1991) J. Biol. Chem. 266, 14554-14561]. For the -aromaticPro- type of junction, in the specific sequence context studied here, the value of Glu in the P2' position was again observed. An explanation for the inefficient cleavage observed for peptides with the sequence -Val-TyrPro- has been provided from molecular modeling of the putative enzyme-substrate complex. A significant effect upon cleavage rates due to the amino acid in the P5 position has also been documented. While lysine in the P5 position in one sequence of the -hydrophobichydrophobic- type produces a peptide cleaved very efficiently (kcat greater than 15 s-1 for Lys-Ala-Arg-Val-Nlep-nitrophenylalanine-P2'-Ala-Nle-NH2, for P2' = Glu, Gln, Ile, Val, or Ala), for substrates of the -aromaticPro- type, the P5 residue can exert either a positive or negative effect on cleavage rates. These results have again been interpreted in light of molecular modeling. We suggest that interaction of the substrate sequence on the periphery of the active site cleft may influence the match of the enzyme-substrate pair and, hence, control the efficiency of catalysis.(ABSTRACT TRUNCATED AT 250 WORDS)
对HIV-1蛋白酶催化切割含有两种不同连接类型(-疏水疏水-或-芳香族脯氨酸-)的寡肽的序列要求进行了研究。对于第一种连接类型(-疏水疏水-),发现P2和P2'位置的最佳残基分别为缬氨酸和谷氨酸,这与最近对天然切割位点的统计分析结果一致[普尔曼,R.A.,托马塞利,A.G.,海因里克森,R.L.,&凯兹迪,F.J.(1991)《生物化学杂志》266,14554 - 14561]。对于-芳香族脯氨酸-类型的连接,在本文研究的特定序列背景下,再次观察到P2'位置谷氨酸的作用。通过对假定的酶-底物复合物的分子建模,对序列为-Val-TyrPro-的肽切割效率低下的现象给出了解释。还记录了P5位置的氨基酸对切割速率有显著影响。虽然在-疏水疏水-类型的一个序列中P5位置的赖氨酸会产生切割效率非常高的肽(对于Lys-Ala-Arg-Val-Nle对硝基苯丙氨酸-P2'-Ala-Nle-NH2,当P2' = 谷氨酸、谷氨酰胺、异亮氨酸、缬氨酸或丙氨酸时,kcat大于15 s-1),但对于-芳香族脯氨酸-类型的底物,P5残基对切割速率可能产生正向或负向影响。这些结果再次根据分子建模进行了解释。我们认为活性位点裂隙周边的底物序列相互作用可能会影响酶-底物对的匹配,从而控制催化效率。(摘要截断于250字)