Kinetics of Halophilic Enzymes

L. A. Cira-Chávez, Joseph Guevara-Luna, Marisela YadiraSoto-Padilla, Brenda Román-Ponce, M. Vásquez-Murrieta, M. I. Estrada-Alvarado
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引用次数: 7

Abstract

Hypersaline environments are those with salt concentrations 9–10 times higher (30–35% of NaCl) than sea water (3.5% of NaCl). At high concentrations of soluble salts, cytoplasm—mainly of bacteria and archaea—is exposed to high ionic strength and achieves osmotic equilibrium by maintaining a cytoplasmic salt concentration similar to that of the surrounding media. Halophilic enzymes are extremozymes produced by halophilic microorganisms; they have similar characteristics to regular enzymes but different prop -erties, mainly structural. Among these properties is a high requirement of salt for biologi- cal functions. Furthermore, the discovery of enzymes capable of degrading biopolymers offer a new perspective in the treatment of residues from oil deposits, under typically high conditions of salt and temperature, while giving valuable information on heterotrophic processes in saline environments.
嗜盐酶动力学
高盐环境是指盐浓度比海水(3.5% NaCl)高9-10倍(30-35% NaCl)的环境。在可溶性盐浓度高的情况下,细胞质(主要是细菌和古细菌)暴露在高离子强度下,并通过维持细胞质盐浓度与周围介质相似来达到渗透平衡。嗜盐酶是由嗜盐微生物产生的极端酶;它们具有与常规酶相似的特性,但主要是结构性质不同。在这些特性中,盐对生物功能的要求很高。此外,能够降解生物聚合物的酶的发现为在通常高盐和高温度条件下处理石油沉积物残留物提供了新的视角,同时为盐环境中的异养过程提供了有价值的信息。
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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