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高糖基化人促卵泡激素类似物的合理设计(一种生物信息学方法)。

Rational design of hyper-glycosylated human follicle-stimulating hormone analogs (a bioinformatics approach).

作者信息

Bahadori Zohreh, Shabani Ali Akbar, Minuchehr Zarrin

机构信息

Department of Biotechnology and Biotechnology Research Center, School of Medicine, Semnan University of Medical Sciences, Semnan, Iran.

Students Research Committee, Semnan University of Medical Sciences, Semnan, Iran.

出版信息

J Biomol Struct Dyn. 2022;40(19):9114-9125. doi: 10.1080/07391102.2021.1924268. Epub 2021 May 17.

DOI:10.1080/07391102.2021.1924268
PMID:33998969
Abstract

N-glycosylation is a complex mechanism in which the carbohydrate molecules bind to the Asn amino acid in the N-glycan consensus sequence (AsnXxxThr/Ser sequon, where Xxx is any residue, excluding Pro). Introduction of additional N-linked glycosylation site into proposed location in the protein causes to its hyper-glycosylation and can enhance the protein characteristics to provide promising prospects in treatment. Glycoengineering is a favorably used strategy to design and generate hyper-glycosylated variants. In this research, human follicle-stimulating hormone (HuFSH) was considered to identify appropriate positions for adding novel N-glycan sites. A rational computational strategy was applied to predict functional/structural variations induced through changes in polypeptide chain. We analyzed the amino acid chain of FSH to find out the proper locations to introduce asparagine and/or threonine for creating novel N-glycan positions. This analysis resulted in the recognition of 40 possible N-glycosylation positions, and then the eight adequate ones were chosen for additional investigation. The model validation techniques were used to examine 3-dimensional structures of the chosen mutant proteins. Finally, 2 mutants with a further glycan site were recommended as eligible FSH hyper-glycosylated analogs, which may be regarded for subsequent experimental studies. Our approach may decrease tedious and time-wasting laboratory researches of the mutants.Communicated by Ramaswamy H. Sharma.

摘要

N-糖基化是一种复杂的机制,其中碳水化合物分子与N-聚糖共有序列(AsnXxxThr/Ser序列,其中Xxx是任何残基,不包括Pro)中的Asn氨基酸结合。在蛋白质的建议位置引入额外的N-连接糖基化位点会导致其过度糖基化,并可增强蛋白质特性,为治疗提供有前景的前景。糖工程是一种常用于设计和产生高糖基化变体的策略。在本研究中,人类促卵泡激素(HuFSH)被用于确定添加新N-聚糖位点的合适位置。应用了一种合理的计算策略来预测多肽链变化引起的功能/结构变异。我们分析了FSH的氨基酸链,以找出引入天冬酰胺和/或苏氨酸以创建新N-聚糖位置的合适位置。该分析确定了40个可能的N-糖基化位置,然后选择了8个合适的位置进行进一步研究。使用模型验证技术检查所选突变蛋白的三维结构。最后,推荐了2个具有额外聚糖位点的突变体作为合格的FSH高糖基化类似物,可用于后续实验研究。我们的方法可能会减少对突变体进行繁琐且耗时的实验室研究。由Ramaswamy H. Sharma传达。

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