Directed evolution of diacylglycerol acyltransferases 2 promotes lipids and triglyceride accumulation.

IF 3.9 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Tinghui Feng, Qiang Zhang, Tong Gao, Jiacong Gao, Jiahao Fang, Xiaodan Zhang, Juane Dong, Zongsuo Liang
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Abstract

Triacylglycerol (TAG) is a major component of plant-neutral lipids. Diacylglycerol acyltransferase 2 (DGAT2) plays an important role in plant oil accumulation by catalyzing the final step of the Kennedy pathway. In this study, ten DGAT2 sequences were originating from different oil crops into the TAG-deficient yeast strain H1246, to compare their enzyme activity of oil synthesis and filter out potential amino acid residue sites for directed evolution. Based on the synthesis efficiency of total lipids, TAGs, and the topology models of these DGAT2s, five possible amino acid sites were identified that may affect the synthesis of total lipids and TAGs. In the H1246 yeast expression system, HaDGAT2 significantly increased the total oil and TAG content; however, ClDGAT2 was weak in synthesizing both oil and TAG. Thus, building on HaDGAT2 and ClDGAT2, these amino acid substitutions were created by point-to-point mutating and substantially affected the oil or TAG synthesis ability of DGAT2s. Among the five amino acid substitutions, mutations at residue (3) successfully make HaDGAT2 less capable of synthesizing lipids and TAG, and ClDGAT2 more capable of synthesizing total lipids and TAG. Except mutations at residue (2), all residue mutations contributed to a weaker ability of fatty acid synthesis. In addition, ten mutant DGAT2s and two parental DGAT2s were overexpressed in tobacco leaves to reveal their lipid synthesis function. This approach helped us to authenticate the significance of these loci. In varying degrees, those mutations enhanced the ability of ClDGAT2 to synthesize lipids, attenuated the ability of HaDGAT2 to synthesize lipids, and altered preference for fatty acids in tobacco.

二酰基甘油酰基转移酶2的定向进化促进脂质和甘油三酯的积累。
三酰基甘油(TAG)是植物中性脂质的主要成分。二酰基甘油酰基转移酶2 (DGAT2)通过催化肯尼迪途径的最后一步在植物油脂积累中起重要作用。本研究将来自不同油料作物的10个DGAT2序列导入tag缺陷酵母菌株H1246中,比较它们合成油脂的酶活性,筛选出潜在的氨基酸残基位点进行定向进化。基于总脂质和TAGs的合成效率以及这些DGAT2s的拓扑模型,我们确定了5个可能影响总脂质和TAGs合成的氨基酸位点。在H1246酵母表达体系中,HaDGAT2显著提高了总油和TAG含量;而ClDGAT2在油脂和TAG的合成中均较弱。因此,在HaDGAT2和ClDGAT2的基础上,这些氨基酸取代是通过点对点突变产生的,并极大地影响了DGAT2s的油或TAG合成能力。在5个氨基酸取代中,残基(3)的突变成功地使HaDGAT2合成脂质和TAG的能力降低,使ClDGAT2合成总脂质和TAG的能力提高。除残基(2)突变外,其余残基突变均导致脂肪酸合成能力减弱。此外,10个突变体DGAT2s和2个亲本DGAT2s在烟草叶片中过表达,揭示了它们的脂质合成功能。这种方法帮助我们验证了这些基因座的重要性。这些突变不同程度地增强了ClDGAT2合成脂质的能力,减弱了HaDGAT2合成脂质的能力,改变了烟草对脂肪酸的偏好。
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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来源期刊
Plant Molecular Biology
Plant Molecular Biology 生物-生化与分子生物学
自引率
2.00%
发文量
95
审稿时长
1.4 months
期刊介绍: Plant Molecular Biology is an international journal dedicated to rapid publication of original research articles in all areas of plant biology.The Editorial Board welcomes full-length manuscripts that address important biological problems of broad interest, including research in comparative genomics, functional genomics, proteomics, bioinformatics, computational biology, biochemical and regulatory networks, and biotechnology. Because space in the journal is limited, however, preference is given to publication of results that provide significant new insights into biological problems and that advance the understanding of structure, function, mechanisms, or regulation. Authors must ensure that results are of high quality and that manuscripts are written for a broad plant science audience.
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