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化学伴侣在热应激和化学应激下对酶活性的影响:不同化学家族的共同特征与差异

The influence of chemical chaperones on enzymatic activity under thermal and chemical stresses: common features and variation among diverse chemical families.

作者信息

Levy-Sakin Michal, Berger Or, Feibish Nir, Sharon Noa, Schnaider Lee, Shmul Guy, Amir Yaniv, Buzhansky Ludmila, Gazit Ehud

机构信息

Department of Molecular Microbiology and Biotechnology, Tel Aviv University, Tel Aviv, Israel.

出版信息

PLoS One. 2014 Feb 10;9(2):e88541. doi: 10.1371/journal.pone.0088541. eCollection 2014.

Abstract

Molecular and chemical chaperones are key components of the two main mechanisms that ensure structural stability and activity under environmental stresses. Yet, chemical chaperones are often regarded only as osmolytes and their role beyond osmotic regulation is not fully understood. Here, we systematically studied a large group of chemical chaperones, representatives of diverse chemical families, for their protective influence under either thermal or chemical stresses. Consistent with previous studies, we observed that in spite of the structural similarity between sugars and sugar alcohols, they have an apparent difference in their protective potential. Our results support the notion that the protective activity is mediated by the solvent and the presence of water is essential. In the current work we revealed that i) polyols and sugars have a completely different profile of protective activity toward trifluoroethanol and thermal stress; ii) minor changes in solvent composition that do not affect enzyme activity, yet have a great effect on the ability of osmolytes to act as protectants and iii) increasing the number of active groups of carbohydrates makes them better protectants while increasing the number of active groups of methylamines does not, as revealed by attempts to synthesize de novo designed methylamines with multiple functional groups.

摘要

分子伴侣和化学伴侣是确保在环境压力下结构稳定性和活性的两种主要机制的关键组成部分。然而,化学伴侣通常仅被视为渗透剂,其在渗透调节之外的作用尚未得到充分理解。在这里,我们系统地研究了一大类化学伴侣,它们代表了不同的化学家族,以了解它们在热应激或化学应激下的保护作用。与先前的研究一致,我们观察到,尽管糖和糖醇在结构上相似,但它们在保护潜力上存在明显差异。我们的结果支持这样一种观点,即保护活性是由溶剂介导的,水的存在至关重要。在当前的工作中,我们揭示了:i)多元醇和糖对三氟乙醇和热应激具有完全不同的保护活性谱;ii)溶剂组成的微小变化不会影响酶活性,但对渗透剂作为保护剂的能力有很大影响;iii)通过尝试从头合成具有多个官能团的甲胺发现,增加碳水化合物的活性基团数量会使它们成为更好的保护剂,而增加甲胺的活性基团数量则不然。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5f5/3919781/b384003423f9/pone.0088541.g001.jpg

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