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首页> 外文期刊>Journal of Molecular Biology >Enzyme specificity under dynamic control: a normal mode analysis of alpha-lytic protease.
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Enzyme specificity under dynamic control: a normal mode analysis of alpha-lytic protease.

机译:动态控制下的酶特异性:α-分解蛋白酶的正常模式分析。

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We have used alpha-lytic protease as a model system for exploring the relationship between the internal dynamics of an enzyme and its substrate specificity. The wild-type enzyme is highly specific for small substrates in its primary specificity pocket, while the M190A mutant has a much broader specificity, efficiently catalyzing cleavage of both large and small substrates. Normal modes have been calculated for both the wild-type and the mutant enzyme to determine how internal vibrations contribute to these contrasting specificity profiles. We find that for the atoms lining the walls of the specificity pocket, the wild-type normal modes have a more symmetric character, with the walls vibrating in phase, and the size of the pocket remaining relatively fixed. This is in agreement with X-ray crystallographic data on conformational substates trapped at 120 K. In contrast, we find that in the mutant, the binding pocket normal modes have a more antisymmetric character, with the walls vibrating out of phase, and the pocket able to expand and contract. These results suggest that the internal vibrations of a molecule may play an important role in determining substrate binding and specificity. A small change in protein structure can have a significant effect on the pattern of molecular vibrations, and thus on enzymatic properties, even if the overall amplitudes of the vibrations, as measured by NMR relaxation or crystallographic B-factors, remain largely unchanged. Copyright 1999 Academic Press.
机译:我们已经使用α-分解蛋白酶作为模型系统来探索酶的内部动力学与其底物特异性之间的关系。野生型酶在其主要特异性口袋中对小底物具有高度特异性,而M190A突变体具有更广泛的特异性,可有效催化大小底物的裂解。已为野生型和突变型酶计算了正常模式,以确定内部振动如何促进这些对比性特异性概况。我们发现,对于衬在特异性袋壁上的原子,野生型正态模式具有更对称的特征,即壁同相振动,并且袋的大小保持相对固定。这与在120 K下捕获的构象亚态的X射线晶体学数据相符。相反,我们发现在突变体中,结合袋的正常模式具有更反对称的特征,壁振动异相,并且袋能够扩张和收缩。这些结果表明,分子的内部振动可能在确定底物结合和特异性中起重要作用。即使通过NMR弛豫或晶体B因子测量的振动的总体幅度在很大程度上保持不变,蛋白质结构的微小变化也可能对分子振动的模式产生重大影响,从而对酶学性质产生重大影响。版权所有1999,学术出版社。

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