Marathe Sayali, Chougule Haripriya, Nikam Vandana, Majumdar Amitabha, Bose Tania
Department of Biotechnology, With Jointly Merged Institute of Bioinformatics and Biotechnology (IBB), Savitribai Phule Pune University, Pune, India.
Department of Pharmacology, STES's Smt. Kashibai Navale College of Pharmacy, Pune, India.
Protein J. 2025 Jul 16. doi: 10.1007/s10930-025-10276-7.
The cohesin protein complex plays a very important role in chromosome segregation, transcription, DNA replication and chromosome condensation. Mutations in cohesin proteins give rise to a disease collectively referred to as Cohesinopathies. The major cause of cohesinopathies arise due to defects associated with gene expression, that give rise to developmental disorders. We have used Saccharomyces cerevisiae to mimic the cohesinopathy disorder Roberts syndrome with mutations (eco1W216G) homologous to that of humans (esco2). Our data suggests that polyol sugars like sorbitol, can repair misfolded proteins and reduce ER and proteostatic stress. We have used sorbitol as a chemical chaperone, to check how it can restore chromosome segregation, gene expression, misregulation, protein misfolding, autophagy and translational defects in the cohesin mutant of the Roberts' phenotype. Molecular docking has helped us identify the possible sites on Eco1, which could possibly alter the phenotypic traits.
黏连蛋白复合体在染色体分离、转录、DNA复制和染色体凝聚过程中发挥着非常重要的作用。黏连蛋白的突变会引发一种统称为黏连蛋白病的疾病。黏连蛋白病的主要病因是与基因表达相关的缺陷,这些缺陷会导致发育障碍。我们利用酿酒酵母来模拟黏连蛋白病中的罗伯茨综合征,其携带的突变(eco1W216G)与人类(ESCO2)的突变同源。我们的数据表明,像山梨醇这样的多元醇糖可以修复错误折叠的蛋白质,并减轻内质网和蛋白质稳态应激。我们使用山梨醇作为化学伴侣,来检测它如何恢复罗伯茨表型黏连蛋白突变体中的染色体分离、基因表达、调控异常、蛋白质错误折叠、自噬和翻译缺陷。分子对接帮助我们确定了Eco1上可能改变表型特征的位点。