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Chaperone-like effect of the linker on the isolated C-terminal domain of rabbit muscle creatine kinase

机译:连接子的伴侣蛋白样作用对兔肌肌酸激酶的分离的C-末端结构域

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摘要

Intramolecular chaperones (IMCs), which are specific domains/segments encoded in the primary structure of proteins, exhibit chaperone-like activity against the aggregation of the other domains in the same molecule. In this research, we found that the truncation of the linker greatly promoted the thermal aggregation of the isolated C-terminal domain (CTD) of rabbit muscle creatine kinase (RMCK). Either the existence of the linker covalently linked to CTD or the supply of the synthetic linker peptide additionally could successfully protect the CTD of RMCK against aggregation in a concentration-dependent manner. Truncated fragments of the linker also behaved as a chaperone-like effect with lower efficiency, revealing the importance of its C-terminal half in the IMC function of the linker. The aggregation sites in the CTD of RMCK were identified by molecular dynamics simulations. Mutational analysis of the three key hydrophobic residues resulted in opposing effects on the thermal aggregation between the CTD with intact or partial linker, confirming the role of linker as a lid to protect the hydrophobic residues against exposure to solvent. These observations suggested that the linkers in multidomain proteins could act as IMCs to facilitate the correct folding of the aggregation-prone domains. Furthermore, the intactness of the IMC linker after proteolysis modulates the production of off-pathway aggregates, which may be important to the onset of some diseases caused by the toxic effects of aggregated proteolytic fragments.
机译:分子内分子伴侣(IMC)是蛋白质一级结构中编码的特定结构域/片段,对相同分子中其他域的聚集表现出类似分子伴侣的活性。在这项研究中,我们发现接头的截短极大地促进了兔肌肉肌酸激酶(RMCK)的孤立C端结构域(CTD)的热聚集。共价连接CTD的连接子的存在或合成连接子肽的提供另外可以成功地保护RMCK的CTD免受浓度依赖性的聚集作用。连接子的截短片段也表现出类似伴侣的作用,但效率较低,这揭示了其C末端一半在连接子的IMC功能中的重要性。通过分子动力学模拟鉴定了RMCK CTD中的聚集位点。对三个关键疏水残基的突变分析对具有完整或部分连接子的CTD之间的热聚集产生相反的影响,从而确认了连接子作为保护疏水性残基免于暴露于溶剂的盖子的作用。这些观察结果表明,多结构域蛋白中的接头可以充当IMC,以促进易于聚集的结构域的正确折叠。此外,蛋白水解后的IMC接头的完整性调节了非路途聚集体的产生,这对于由聚集的蛋白水解片段的毒性作用引起的某些疾病的发作可能是重要的。

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