Evolutionarily conserved functional mechanics across pepsin-like and retroviral aspartic proteases

被引:71
作者
Cascella, M
Micheletti, C
Rothlisberger, U
Carloni, P
机构
[1] SISSA, ISAS, I-34104 Trieste, Italy
[2] DEMOCRITOS Modeling Ctr Res Atomist Simulat, I-34104 Trieste, Italy
[3] Ecole Polytech Fed Lausanne, CH-1015 Lausanne, Switzerland
关键词
D O I
10.1021/ja044608+
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The biological function of the aspartic protease from HIV-1 has recently been related to the conformational flexibility of its structural scaffold. Here, we use a multistep strategy to investigate whether the same mechanism affects the functionality in the pepsin-like fold. (i) We identify the set of conserved residues by using sequence-alignment techniques. These residues cluster in three distinct regions: near the cleavage-site cavity, in the four beta-sheets cross-linking the two lobes, and in a solvent-exposed region below the long beta-hairpin in the N-terminal lobe. (ii) We elucidate the role played by the conserved residues for the enzymatic functionality of one representative member of the fold family, the human beta-secretase, by means of classical molecular dynamics (MD). The conserved regions exhibit little overall mobility and yet are involved into the most important modes of structural fluctuations. These modes influence the substrate-catalytic aspartates distance through a relative rotation of the N- and C-terminal lobes. (iii) We investigate the effects of this modulation by estimating the reaction free energy at different representative substrate/ enzyme conformations. The activation free energy is strongly affected by large-scale protein motions, similarly to what has been observed in the HIV-1 enzyme. (iv) We extend our findings to all other members of the two eukaryotic and retroviral fold families by recurring to a simple, topology-based, energy functional. This analysis reveals a sophisticated mechanism of enzymatic activity modulation common to all aspartic proteases. We suggest that aspartic proteases have been evolutionarily selected to possess similar functional motions despite the observed fold variations.
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页码:3734 / 3742
页数:9
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