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多结构域蛋白中拥挤诱导的刚性:来自溶剂化的见解

Crowder-Induced Rigidity in a Multidomain Protein: Insights from Solvation.

作者信息

Biswas Saikat, Mukherjee Sanjib Kumar, Chowdhury Pramit Kumar

机构信息

Department of Chemistry, Indian Institute of Technology Delhi , Hauz Khas, New Delhi 110016, India.

出版信息

J Phys Chem B. 2016 Dec 15;120(49):12501-12510. doi: 10.1021/acs.jpcb.6b10478. Epub 2016 Dec 2.

Abstract

Global changes in the conformations of proteins in the presence of macromolecular crowding agents have been well documented. Here, we have used solvation dynamics to monitor the changes in a specific domain of the multidomain protein human serum albumin (HSA) in the presence of various crowders. The solvation probe 6-bromoacetyl-2-dimethylaminonaphthalene was site-specifically attached to the cysteine-34 of domain I of HSA. Analyses of the time-resolved Stokes shift of this probe in the presence of crowding agents revealed a significant retardation of the solvent coordinate, particularly in a crowder-dependent manner. We attribute the observed slowing primarily to the increased internal protein friction in the presence of these polymers, implying considerable stiffness of the protein matrix. We have discussed our findings with regard to recent reports on cellular interiors and have also made an attempt to assess the importance of the physiological concentration of macromolecules in protein dynamics and function.

摘要

在存在大分子拥挤剂的情况下蛋白质构象的全局变化已有充分记录。在此,我们利用溶剂化动力学来监测在各种拥挤剂存在下多结构域蛋白人血清白蛋白(HSA)特定结构域的变化。溶剂化探针6-溴乙酰基-2-二甲基氨基萘被位点特异性地连接到HSA结构域I的半胱氨酸-34上。对该探针在拥挤剂存在下的时间分辨斯托克斯位移的分析表明,溶剂坐标有显著延迟,特别是以拥挤剂依赖的方式。我们将观察到的减慢主要归因于在这些聚合物存在下蛋白质内部摩擦力的增加,这意味着蛋白质基质具有相当大的刚性。我们已就近期关于细胞内部的报道讨论了我们的发现,并试图评估大分子生理浓度在蛋白质动力学和功能中的重要性。

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