Effect Of Structural Changes Induced By Deletion Of (54)Flrapswf(61) Sequence In Alpha B-Crystallin On Chaperone Function And Anti-Apoptotic Activity

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES(2021)

引用 1|浏览4
暂无评分
摘要
Previously, we showed that the removal of the 54-61 residues from alpha B-crystallin (alpha B & UDelta;54-61) results in a fifty percent reduction in the oligomeric mass and a ten-fold increase in chaperone-like activity. In this study, we investigated the oligomeric organization changes in the deletion mutant contributing to the increased chaperone activity and evaluated the cytoprotection properties of the mutant protein using ARPE-19 cells. Trypsin digestion studies revealed that additional tryptic cleavage sites become susceptible in the deletion mutant than in the wild-type protein, suggesting a different subunit organization in the oligomer of the mutant protein. Static and dynamic light scattering analyses of chaperone-substrate complexes showed that the deletion mutant has more significant interaction with the substrates than wild-type protein, resulting in increased binding of the unfolding proteins. Cytotoxicity studies carried out with ARPE-19 cells showed an enhancement in anti-apoptotic activity in alpha B & UDelta;54-61 as compared with the wild-type protein. The improved anti-apoptotic activity of the mutant is also supported by reduced caspase activation and normalization of the apoptotic cascade components level in cells treated with the deletion mutant. Our study suggests that altered oligomeric assembly with increased substrate affinity could be the basis for the enhanced chaperone function of the alpha B & UDelta;54-61 protein.

更多
查看译文
关键词
alpha B-crystallin, chaperone, oligomerization, apoptosis, mutant, aggregation, cataract, interactions
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要