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分子内相互作用对植物丝氨酸蛋白酶抑制剂结构功能稳定性的互补作用。

Complementation of intramolecular interactions for structural-functional stability of plant serine proteinase inhibitors.

作者信息

Joshi Rakesh S, Mishra Manasi, Suresh C G, Gupta Vidya S, Giri Ashok P

机构信息

Plant Molecular Biology Unit, Division of Biochemical Sciences, CSIR-National Chemical Laboratory, Dr. Homi Bhabha Road, Pune 411 008 (MS), India.

出版信息

Biochim Biophys Acta. 2013 Nov;1830(11):5087-94. doi: 10.1016/j.bbagen.2013.07.019. Epub 2013 Jul 24.

Abstract

BACKGROUND

Plant protease inhibitors (PIs) constitute a diverse group of proteins capable of inhibiting proteases. Among PIs, serine PIs (SPIs) display stability and conformational restrictions of the reactive site loop by virtue of their compact size, and by the presence of disulfide bonds, hydrogen bonds, and other weak interactions.

SCOPE OF REVIEW

The significance of various intramolecular interactions contributing to protein folding mechanism and their role in overall stability and activity of SPIs is discussed here. Furthermore, we have reviewed the effect of variation or manipulation of these interactions on the activity/stability of SPIs.

MAJOR CONCLUSIONS

The selective gain or loss of disulfide bond(s) in SPIs can be associated with their functional differentiation, which is likely to be compensated by non-covalent interactions (hydrogen bonding or electrostatic interactions). Thus, these intramolecular interactions are collectively responsible for the functional activity of SPIs, through the maintenance of scaffold framework, conformational rigidity and shape complementarities of reactive site loop.

GENERAL SIGNIFICANCE

Structural insight of these interactions will provide an in-depth understanding of kinetic and thermodynamic parameters involved in the folding and stability mechanisms of SPIs. These features can be explored for engineering canonical SPIs for optimizing their overall stability and functionality for various applications.

摘要

背景

植物蛋白酶抑制剂(PIs)是一类能够抑制蛋白酶的多种蛋白质。在PIs中,丝氨酸蛋白酶抑制剂(SPIs)由于其紧凑的结构尺寸以及二硫键、氢键和其他弱相互作用的存在,表现出反应位点环的稳定性和构象限制。

综述范围

本文讨论了各种分子内相互作用对蛋白质折叠机制的重要性及其在SPIs整体稳定性和活性中的作用。此外,我们还综述了这些相互作用的变化或操纵对SPIs活性/稳定性的影响。

主要结论

SPIs中二硫键的选择性增减可能与其功能分化有关,这可能由非共价相互作用(氢键或静电相互作用)来补偿。因此,这些分子内相互作用通过维持支架框架、反应位点环的构象刚性和形状互补性,共同负责SPIs的功能活性。

普遍意义

对这些相互作用的结构洞察将深入理解SPIs折叠和稳定性机制中涉及的动力学和热力学参数。这些特性可用于设计标准的SPIs,以优化其在各种应用中的整体稳定性和功能。

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