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一种广泛存在的替代角鲨烯环氧化酶参与真核生物甾体生物合成。

A widespread alternative squalene epoxidase participates in eukaryote steroid biosynthesis.

机构信息

Ghent University, Department of Plant Biotechnology and Bioinformatics, Ghent, Belgium.

VIB Center for Plant Systems Biology, Ghent, Belgium.

出版信息

Nat Microbiol. 2019 Feb;4(2):226-233. doi: 10.1038/s41564-018-0305-5. Epub 2018 Nov 26.

Abstract

Steroids are essential triterpenoid molecules that are present in all eukaryotes and modulate the fluidity and flexibility of cell membranes. Steroids also serve as signalling molecules that are crucial for growth, development and differentiation of multicellular organisms. The steroid biosynthetic pathway is highly conserved and is key in eukaryote evolution. The flavoprotein squalene epoxidase (SQE) catalyses the first oxygenation reaction in this pathway and is rate limiting. However, despite its conservation in animals, plants and fungi, several phylogenetically widely distributed eukaryote genomes lack an SQE-encoding gene. Here, we discovered and characterized an alternative SQE (AltSQE) belonging to the fatty acid hydroxylase superfamily. AltSQE was identified through screening of a gene library of the diatom Phaeodactylum tricornutum in a SQE-deficient yeast. In accordance with its divergent protein structure and need for cofactors, we found that AltSQE is insensitive to the conventional SQE inhibitor terbinafine. AltSQE is present in many eukaryotic lineages but is mutually exclusive with SQE and shows a patchy distribution within monophyletic clades. Our discovery provides an alternative element for the conserved steroid biosynthesis pathway, raises questions about eukaryote metabolic evolution and opens routes to develop selective SQE inhibitors to control hazardous organisms.

摘要

甾体是普遍存在于所有真核生物中的必需三萜类分子,可调节细胞膜的流动性和柔韧性。甾体还作为信号分子,对于多细胞生物的生长、发育和分化至关重要。甾体生物合成途径高度保守,是真核生物进化的关键。黄素蛋白鲨烯环氧化酶(SQE)催化该途径中的第一个加氧反应,是限速酶。然而,尽管它在动物、植物和真菌中保守,但几种系统发育广泛分布的真核生物基因组缺乏 SQE 编码基因。在这里,我们发现并鉴定了一种属于脂肪酸羟化酶超家族的替代 SQE(AltSQE)。通过对缺失 SQE 的酵母中菱形藻(Phaeodactylum tricornutum)的基因文库进行筛选,发现了 AltSQE。根据其不同的蛋白质结构和对辅因子的需求,我们发现 AltSQE 对传统的 SQE 抑制剂特比萘芬不敏感。AltSQE 存在于许多真核生物谱系中,但与 SQE 相互排斥,并且在单系进化枝中呈斑片状分布。我们的发现为保守的甾体生物合成途径提供了一个替代元件,提出了关于真核生物代谢进化的问题,并为开发选择性 SQE 抑制剂来控制有害生物开辟了途径。

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