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米黑根毛霉脂肪酶活性位点盖子动力学的理论研究

Theoretical investigation of the dynamics of the active site lid in Rhizomucor miehei lipase.

作者信息

Peters G H, Olsen O H, Svendsen A, Wade R C

机构信息

Chemistry Department III, H. C. Orsted Institutet, University of Copenhagen, Denmark.

出版信息

Biophys J. 1996 Jul;71(1):119-29. doi: 10.1016/S0006-3495(96)79207-X.

Abstract

Interfacial activation of Rhizomucor miehei lipase is accompanied by a hinge-type motion of a single helix (residues 83-94) that acts as a lid over the active site. Activation of the enzyme involves the displacement of the lid to expose the active site, suggesting that the dynamics of the lid could be of mechanistic and kinetic importance. To investigate possible activation pathways and to elucidate the effect of a hydrophobic environment (as would be provided by a lipid membrane) on the lid opening, we have applied molecular dynamics and Brownian dynamics techniques. Our results indicate that the lipase activation is enhanced in a hydrophobic environment. In nonpolar low-dielectric surroundings, the lid opens in approximately 100 ns in the BD simulations. In polar high-dielectric (aqueous) surroundings, the lid does not always open up in simulations of up to 900 ns duration, but it does exhibit some gating motion, suggesting that the enzyme molecule may exist in a partially active form before the catalytic reaction. The activation is controlled by the charged residues ARG86 and ASP91. In the inactive conformation, ASP91 experiences repulsive forces and pushes the lid toward the open conformation. Upon activation ARG86 approaches ASP61, and in the active conformation, these residues form a salt bridge that stabilizes the open conformation.

摘要

米黑根毛霉脂肪酶的界面激活伴随着一个单螺旋(83 - 94位残基)的铰链式运动,该螺旋充当活性位点的盖子。酶的激活涉及盖子的移位以暴露活性位点,这表明盖子的动力学可能在机制和动力学方面具有重要意义。为了研究可能的激活途径并阐明疏水环境(如脂质膜所提供的)对盖子打开的影响,我们应用了分子动力学和布朗动力学技术。我们的结果表明,在疏水环境中脂肪酶的激活增强。在非极性低介电环境中,在布朗动力学模拟中盖子在大约100纳秒内打开。在极性高介电(水性)环境中,在长达900纳秒的模拟中盖子并不总是打开,但它确实表现出一些门控运动,这表明酶分子在催化反应之前可能以部分活性形式存在。激活由带电荷的残基ARG86和ASP91控制。在无活性构象中,ASP91受到排斥力并将盖子推向开放构象。激活后,ARG86接近ASP61,并且在活性构象中,这些残基形成盐桥以稳定开放构象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bb5/1233463/6e61ed75dbde/biophysj00045-0120-a.jpg

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