Osmolytes as structure-function regulators of intrinsically disordered casein proteins.

3区 生物学 Q2 Biochemistry, Genetics and Molecular Biology
Mohd Younus Bhat
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引用次数: 0

Abstract

Intrinsically disordered proteins (IDPs), despite lacking a stable structure, play crucial role in majority of the cellular processes. Casein, a key milk protein, represents this category of proteins, due to its dynamic and flexible structure which contributes towards the nutritional and functional properties of milk. The present chapter summarizes the role of osmolytes (small molecular weight organic molecules generally accumulated by cells to protect against denaturing stresses) in regulating the structure-function integrity of intrinsically disordered casein proteins. Osmolyte - casein interplay is of particular interest as these osmolytes have been found to affect the conformational flexibility and functional properties of casein proteins and thus can affect their overall behavior in the cellular environment. The present chapter delves into this by discussing the unique structural and functional properties of casein IDPs and the influence of osmolytes on their structure, stability, and chaperone activity. Elucidation of the osmolyte effects on the structural-functional integrity of caseins should advance our understanding of the dynamics of protein structure and function in complex biological environments and also offer practical perceptions for their future applications.

渗透酶作为内在无序酪蛋白的结构功能调节剂。
内在无序蛋白(IDPs)尽管缺乏稳定的结构,但在大多数细胞过程中起着至关重要的作用。酪蛋白是牛奶中的一种关键蛋白,它具有动态和灵活的结构,有助于牛奶的营养和功能特性。本章总结了渗透物(小分子量有机分子,通常由细胞积累,以防止变性应力)在调节内在无序酪蛋白结构-功能完整性中的作用。渗透物-酪蛋白的相互作用是特别有趣的,因为这些渗透物已经被发现影响酪蛋白的构象灵活性和功能特性,从而可以影响它们在细胞环境中的整体行为。本章通过讨论酪蛋白IDPs的独特结构和功能特性以及渗透物对其结构、稳定性和伴侣活性的影响来深入研究这一点。阐明渗透物对酪蛋白结构-功能完整性的影响,将促进我们对复杂生物环境中蛋白质结构和功能动力学的理解,并为其未来的应用提供实际的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.00
自引率
0.00%
发文量
110
审稿时长
4-8 weeks
期刊介绍: Progress in Molecular Biology and Translational Science (PMBTS) provides in-depth reviews on topics of exceptional scientific importance. If today you read an Article or Letter in Nature or a Research Article or Report in Science reporting findings of exceptional importance, you likely will find comprehensive coverage of that research area in a future PMBTS volume.
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