Suppr超能文献

酰基辅酶 A 合成酶 Aal4 和 Aal7 参与了外源脂肪酸在解脂耶氏酵母中的利用。

Acyl-CoA synthetases, Aal4 and Aal7, are involved in the utilization of exogenous fatty acids in Yarrowia lipolytica.

机构信息

School of Life Science and Technology, Tokyo Institute of Technology.

Department of Biotechnology, The University of Tokyo.

出版信息

J Gen Appl Microbiol. 2021 Apr 16;67(1):9-14. doi: 10.2323/jgam.2020.03.001. Epub 2020 Oct 23.

Abstract

The yeast Yarrowia lipolytica assimilates hydrophobic compounds, such as n-alkanes and fatty acids, as sole carbon and energy sources. It has been shown that the acyl-CoA synthetase (ACS) genes, FAT1 and FAA1, are involved in the activation of fatty acids produced during the metabolism of n-alkanes, but the ACS genes that are involved in the metabolism of fatty acids from the culture medium remains to be identified. In this paper, we have identified the ACS genes involved in the utilization of exogenous fatty acids. RNA-seq analysis and qRT-PCR revealed that the transcript levels of the peroxisomal ACS-like protein-encoding genes AAL4 and AAL7 were increased in the presence of oleic acid. The single deletion mutant of AAL4 or AAL7 and double deletion mutant of AAL4 and AAL7 did not show any defects in the growth on the medium containing glucose, glycerol, n-alkanes, or fatty acids. In contrast, the mutant with deletion of seven genes, FAA1, FAT1-FAT4, AAL4, and AAL7, showed severe growth defects on the medium containing dodecanoic acid or oleic acid. These results suggest that Aal4p and Aal7p play important roles in the metabolism of exogenous fatty acids in collaboration with Faa1p and Fat1p-Fat4p.

摘要

酵母解脂耶氏酵母可以将疏水性化合物(如正烷烃和脂肪酸)作为唯一的碳源和能源进行同化。已经表明酰基辅酶 A 合成酶(ACS)基因 FAT1 和 FAA1 参与了代谢正烷烃过程中产生的脂肪酸的激活,但参与培养基中脂肪酸代谢的 ACS 基因仍有待鉴定。在本文中,我们鉴定了参与利用外源性脂肪酸的 ACS 基因。RNA-seq 分析和 qRT-PCR 显示,在油酸存在的情况下,过氧化物酶体 ACS 样蛋白编码基因 AAL4 和 AAL7 的转录水平增加。AAL4 或 AAL7 的单个缺失突变体以及 AAL4 和 AAL7 的双缺失突变体在含有葡萄糖、甘油、正烷烃或脂肪酸的培养基上的生长没有任何缺陷。相比之下,缺失 FAA1、FAT1-FAT4、AAL4 和 AAL7 这七个基因的突变体在含有十二烷酸或油酸的培养基上表现出严重的生长缺陷。这些结果表明 Aal4p 和 Aal7p 与 Faa1p 和 Fat1p-Fat4p 一起在协同作用中在外源性脂肪酸的代谢中发挥重要作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验