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通过斥静电相互作用控制胶原蛋白稳定性和三聚体特异性。

Control of Collagen Stability and Heterotrimer Specificity through Repulsive Electrostatic Interactions.

机构信息

Center for Advanced Biotechnology and Medicine, Department of Biochemistry and Molecular Biology, Robert Wood Johnson Medical School, Rutgers, the State University of New Jersey, 679 Hoes Lane W, Piscataway, NJ 08854, USA.

出版信息

Biomolecules. 2013 Dec 6;3(4):986-96. doi: 10.3390/biom3040986.

Abstract

Charge-pair interactions between acidic and basic residues on the surface of collagen can promote stability as well as control specificity of molecular recognition. Heterotrimeric collagen peptides have been engineered de novo using either rational or computational methods, which in both cases optimize networks of favorable charge-pair interactions in the target structure. Less understood is the role of electrostatic repulsion between groups of like charge in destabilizing structure or directing molecular recognition. To study this, we apply a "charge crowding" approach, where repulsive interactions between multiple aspartate side chains are found to destabilize the homotrimer states in triple helical peptide system and can be utilized to promote the formation of heterotrimers. Neutralizing surface charge by increasing salt concentration or decreasing pH can enhance homotrimer stability, confirming the role of charge crowding on the destabilization of homotrimers via electrostatic repulsion. Charge crowding may be used in conjunction with other approaches to create specific collagen heterotrimers.

摘要

胶原表面酸性和碱性残基之间的电荷对相互作用可以促进稳定性,并控制分子识别的特异性。使用理性或计算方法从头设计了三聚体胶原肽,这两种方法都优化了目标结构中有利的电荷对相互作用网络。不太清楚的是相同电荷基团之间的静电斥力在使结构失稳或指导分子识别中的作用。为了研究这一点,我们应用了“电荷拥挤”方法,发现多个天冬氨酸侧链之间的排斥相互作用会使三聚体状态在三螺旋肽系统中失稳,并且可以用来促进异三聚体的形成。通过增加盐浓度或降低 pH 值来中和表面电荷,可以增强三聚体的稳定性,从而证实了电荷拥挤通过静电排斥对三聚体失稳的作用。电荷拥挤可以与其他方法结合使用,以创建特定的胶原异三聚体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76b4/4030969/5469297d1392/biomolecules-03-00986-g001.jpg

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