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原壳小球藻酰基转移酶的表征及其蛋白质相互作用促进油酸富集的潜力

Characterization of Auxenochlorella protothecoides acyltransferases and potential of their protein interactions to promote the enrichment of oleic acid.

作者信息

Liu Kui, Li Jinyu, Xing Chao, Yuan Hongli, Yang Jinshui

机构信息

State Key Laboratory of Animal Biotech Breeding, College of Biological Sciences, China Agricultural University, Beijing, 100193, China.

出版信息

Biotechnol Biofuels Bioprod. 2023 Apr 21;16(1):69. doi: 10.1186/s13068-023-02318-y.

Abstract

BACKGROUND

After centuries of heavy reliance on fossil fuel energy, the world suffers from an energy crisis and global warming, calling for carbon emission reduction and a transition to clean energy. Microalgae have attracted much attention as a potential feedstock for biofuel production due to their high triacylglycerol content and CO sequestration ability. Many diacylglycerol acyltransferases (DGAT) species have been characterized, which catalyze the final committed step in triacylglycerol biosynthesis. However, the detailed structure-function features of DGATs and the role of the interactions among DGAT proteins in lipid metabolism remained largely unknown.

RESULTS

In this study, the three characterized DGATs of Auxenochlorella protothecoides 2341 showed distinct structural and functional conservation. Functional complementation analyses showed that ApDGAT1 had higher activity than ApDGAT2b in yeast and model microalgae, and ApDGAT2a had no activity in yeast. The N-terminus was not essential to the catalysis function of ApDGAT1 but was crucial to ApDGAT2b as its enzyme activity was sensitive to any N-terminus modifications. Similarly, when acyl-CoA binding proteins (ACBPs) were fused to the N-terminus of ApDGAT1 and ApDGAT2b, zero and significant activity changes were observed, respectively. Interestingly, the ApACBP3 + ApDGAT1 variant contributed to higher oil accumulation than the original DGAT1, and ApACBP1 + ApDGAT1 fusion boosted oleic acid content in yeast. Overexpression of the three DGATs and the variation of ApACBP3 + ApDGAT1 increased the content of C18:1 of Chlamydomonas reinhardtii CC-5235. Significantly, ApDGAT1 interacted with itself, ApDGAT2b, and ApACBP1, which indicated that these three lipid metabolic proteins might have been a part of a dynamic protein interactome that facilitated the enrichment of oleic acid.

CONCLUSIONS

This study provided new insights into the functional and structural characteristics of DGATs and elucidated the importance of these physical interactions in potential lipid channeling.

摘要

背景

在几个世纪严重依赖化石燃料能源之后,世界正遭受能源危机和全球变暖,这就要求减少碳排放并向清洁能源转型。微藻因其高三酰甘油含量和二氧化碳封存能力,作为生物燃料生产的潜在原料备受关注。许多二酰甘油酰基转移酶(DGAT)物种已被表征,它们催化三酰甘油生物合成中的最终关键步骤。然而,DGAT的详细结构 - 功能特征以及DGAT蛋白之间的相互作用在脂质代谢中的作用仍 largely未知。

结果

在本研究中,原壳小球藻2341的三种已表征的DGAT显示出不同的结构和功能保守性。功能互补分析表明,ApDGAT1在酵母和模式微藻中的活性高于ApDGAT2b,而ApDGAT2a在酵母中无活性。N末端对ApDGAT1的催化功能不是必需的,但对ApDGAT2b至关重要,因为其酶活性对任何N末端修饰都敏感。同样,当酰基辅酶A结合蛋白(ACBP)与ApDGAT1和ApDGAT2b的N末端融合时,分别观察到零和显著的活性变化。有趣的是,ApACBP3 + ApDGAT1变体比原始的DGAT1促进了更高的油脂积累,并且ApACBP1 + ApDGAT1融合提高了酵母中的油酸含量。三种DGAT的过表达和ApACBP3 + ApDGAT1的变异增加了莱茵衣藻CC - 5235中C18:1的含量。重要的是,ApDGAT1与自身、ApDGAT2b和ApACBP1相互作用,这表明这三种脂质代谢蛋白可能是促进油酸富集的动态蛋白质相互作用组的一部分。

结论

本研究为DGAT的功能和结构特征提供了新见解,并阐明了这些物理相互作用在潜在脂质通道中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0e0/10120206/a2c0679d8466/13068_2023_2318_Fig1_HTML.jpg

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