Major Compatible Solutes and Structural Adaptation of Proteins in Extremophiles

Hardik Shah, K. Panchal, Amish Panchal
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Abstract

Extremophiles are the most ancient microbes on the Earth and also a center of attraction for the scientific community for research because of their ability to adapt to extreme habitats. Compatible solutes are among those factors which enable these microorganisms to thrive in such extreme habitats. Under osmotic stress, the majority of extremophiles accumulate specific organic solutes such as amino acids, sugars, polyols, and their derivatives. In addition, proteins in extremophiles are found to be evolved by changing their amino acid composition to alter the hydrophobicity of its core and surface charge to maintain activity. This chapter encompasses a comprehensive study about the role of various compatible solutes in the endurance of microorganisms under extremophilic conditions, synthesis of compatible solutes, nature of extremophilic proteins, and their applications. Furthermore, an attempt has been made to cover various strategies adopted by the scientific community while pursuing research on compatible solutes.
极端微生物中主要相容溶质和蛋白质的结构适应
极端微生物是地球上最古老的微生物,也是科学界研究的焦点,因为它们有适应极端栖息地的能力。相容的溶质是使这些微生物能够在如此极端的生境中茁壮成长的因素之一。在渗透胁迫下,大多数极端微生物积累特定的有机溶质,如氨基酸、糖、多元醇及其衍生物。此外,发现极端微生物中的蛋白质通过改变其氨基酸组成来改变其核心的疏水性和表面电荷来维持活性。这一章包含了关于各种相容溶质在极端条件下微生物耐力中的作用的综合研究,相容溶质的合成,嗜极蛋白质的性质及其应用。此外,还试图涵盖科学界在进行相容溶质研究时采用的各种策略。
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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