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新型嗜冷菌 B14-6 中的 Δ-9 脂肪酸去饱和酶和环丙烷脂肪酸合酶对细菌膜性质的影响。

Effects of a Δ-9-fatty acid desaturase and a cyclopropane-fatty acid synthase from the novel psychrophile Pseudomonas sp. B14-6 on bacterial membrane properties.

机构信息

Department of Biological Engineering, College of Engineering, Konkuk University, 1 Hwayang-dong, Gwangjin-gu, Seoul, 05029, Republic of Korea.

Institute for Ubiquitous Information Technology and Applications, Konkuk University, Seoul, 05029, Republic of Korea.

出版信息

J Ind Microbiol Biotechnol. 2020 Dec;47(12):1045-1057. doi: 10.1007/s10295-020-02333-0. Epub 2020 Dec 1.

Abstract

Psychrophilic bacteria, living at low and mild temperatures, can contribute significantly to our understanding of microbial responses to temperature, markedly occurring in the bacterial membrane. Here, a newly isolated strain, Pseudomonas sp. B14-6, was found to dynamically change its unsaturated fatty acid and cyclic fatty acid content depending on temperature which was revealed by phospholipid fatty acid (PLFA) analysis. Genome sequencing yielded the sequences of the genes Δ-9-fatty acid desaturase (desA) and cyclopropane-fatty acid-acyl-phospholipid synthase (cfa). Overexpression of desA in Escherichia coli led to an increase in the levels of unsaturated fatty acids, resulting in decreased membrane hydrophobicity and increased fluidity. Cfa proteins from different species were all found to promote bacterial growth, despite their sequence diversity. In conclusion, PLFA analysis and genome sequencing unraveled the temperature-related behavior of Pseudomonas sp. B14-6 and the functions of two membrane-related enzymes. Our results shed new light on temperature-dependent microbial behaviors and might allow to predict the consequences of global warming on microbial communities.

摘要

嗜冷菌生活在低温和温和的温度下,可以极大地帮助我们理解微生物对温度的反应,这种反应主要发生在细菌膜上。在这里,通过磷脂脂肪酸(PLFA)分析发现,新分离的菌株 Pseudomonas sp. B14-6 会根据温度动态地改变其不饱和脂肪酸和环状脂肪酸的含量。基因组测序得到了 Δ-9-脂肪酸去饱和酶(desA)和环丙烷脂肪酸酰基-磷脂合成酶(cfa)基因的序列。在大肠杆菌中过表达 desA 会导致不饱和脂肪酸水平增加,从而降低膜疏水性并增加流动性。尽管来自不同物种的 Cfa 蛋白的序列存在多样性,但它们都被发现能促进细菌生长。总之,PLFA 分析和基因组测序揭示了 Pseudomonas sp. B14-6 的温度相关行为以及两种与膜相关的酶的功能。我们的研究结果为温度依赖性微生物行为提供了新的认识,并可能有助于预测全球变暖对微生物群落的影响。

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