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识别及控制β桶结构域组装的相互作用。

Recognition and interactions controlling the assemblies of beta barrel domains.

作者信息

Getzoff E D, Tainer J A, Olson A J

出版信息

Biophys J. 1986 Jan;49(1):191-206. doi: 10.1016/S0006-3495(86)83634-7.

Abstract

We present a qualitative computer graphics approach to the characterization of forces important to the assembly of beta domains that should have general utility for examining protein interactions and assembly. In our approach, the nature of the molecular surface buried by the domain contacts, the specificity of the residue-to-residue interactions, and the identity of electrostatic, hydrophobic, and hydrophilic interactions are elucidated. These techniques are applied to the beta barrel domains of Cu, Zn superoxide dismutase (SOD), immunoglobulin Fab, and tomato bushy stunt virus coat protein (TBSV), a plant viral capsid protein. By looking at a set of proteins having different numbers of interacting beta domains, we have been able to see some of the variety and also some of the patterns common to these assembled domains. Strong beta domain interactions (identified by their biochemical integrity) are apparently due to chemical, electrostatic, and shape complementarity of the molecular surfaces buried from interaction with solvent molecules. Although the amount of hydrophobic buried surface area appears to correlate with the strength of the interaction, electrostatic forces appear to be important in both stabilizing and destabilizing specific contacts. In TBSV, analysis of electrostatic interactions may help explain mechanisms of subunit accommodation to different environments, particle expansion, and pathways of assembly. The possible molecular basis for observed differences in the stability and flexibility of the domain complexes is discussed.

摘要

我们提出了一种定性计算机图形学方法,用于表征对β结构域组装很重要的力,该方法在研究蛋白质相互作用和组装方面应具有普遍适用性。在我们的方法中,阐明了由结构域接触所掩埋的分子表面的性质、残基间相互作用的特异性以及静电、疏水和亲水相互作用的特性。这些技术被应用于铜锌超氧化物歧化酶(SOD)、免疫球蛋白Fab和番茄丛矮病毒外壳蛋白(TBSV,一种植物病毒衣壳蛋白)的β桶结构域。通过研究一组具有不同数量相互作用β结构域的蛋白质,我们得以看到这些组装结构域的一些多样性以及一些共同模式。强烈的β结构域相互作用(通过其生化完整性确定)显然是由于与溶剂分子相互作用所掩埋的分子表面的化学、静电和形状互补性。尽管疏水掩埋表面积的大小似乎与相互作用强度相关,但静电力在稳定和破坏特定接触方面似乎都很重要。在TBSV中,对静电相互作用的分析可能有助于解释亚基适应不同环境、颗粒膨胀和组装途径的机制。讨论了观察到的结构域复合物稳定性和灵活性差异的可能分子基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f20/1329621/727a8d17ddef/biophysj00184-0205-a.jpg

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