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Functional Characterization of Two Structurally Novel Diacylglycerol Acyltransferase2 Isozymes Responsible for the Enhanced Production of Stearate-Rich Storage Lipid in Candida tropicalis SY005

机译:两种结构新颖的二酰基甘油酰基转移酶2同工酶的功能表征用于增加热带假丝酵母SY005中富含硬脂酸盐的储存脂质的生产

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摘要

Diacylglycerol acyltransferase (DGAT) activity is an essential enzymatic step in the formation of neutral lipid i.e., triacylglycerol in all living cells capable of accumulating storage lipid. Previously, we characterized an oleaginous yeast Candida tropicalis SY005 that yields storage lipid up to 58% under a specific nitrogen-stress condition, when the DGAT-specific transcript is drastically up-regulated. Here we report the identification, differential expression and function of two DGAT2 gene homologues- CtDGAT2a and CtDGAT2b of this C. tropicalis. Two protein isoforms are unique with respect to the presence of five additional stretches of amino acids, besides possessing three highly conserved motifs known in other reported DGAT2 enzymes. Moreover, the CtDGAT2a and CtDGAT2b are characteristically different in amino acid sequences and predicted protein structures. The CtDGAT2b isozyme was found to be catalytically 12.5% more efficient than CtDGAT2a for triacylglycerol production in a heterologous yeast system i.e., Saccharomyces cerevisiae quadruple mutant strain H1246 that is inherently defective in neutral lipid biosynthesis. The CtDGAT2b activity rescued the growth of transformed S. cerevisiae mutant cells, which are usually non-viable in the medium containing free fatty acids by incorporating them into triacylglycerol, and displayed preferential specificity towards saturated acyl species as substrate. Furthermore, we document that the efficiency of triacylglycerol production by CtDGAT2b is differentially affected by deletion, insertion or replacement of amino acids in five regions exclusively present in two CtDGAT2 isozymes. Taken together, our study characterizes two structurally novel DGAT2 isozymes, which are accountable for the enhanced production of storage lipid enriched with saturated fatty acids inherently in C. tropicalis SY005 strain as well as in transformed S. cerevisiae neutral lipid-deficient mutant cells. These two genes certainly will be useful for further investigation on the novel structure-function relationship of DGAT repertoire, and also in metabolic engineering for the enhanced production of lipid feedstock in other organisms.
机译:二酰基甘油酰基转移酶(DGAT)活性是中性脂质即所有能够累积脂质存储的活细胞中三酰基甘油形成中必不可少的酶促步骤。以前,我们对油性酵母热带假丝酵母SY005进行了表征,当DGAT特异性转录物被上调时,在特定的氮胁迫条件下储脂量可高达58%。在这里,我们报告此热带衣原体的两个DGAT2基因同源物CtDGAT2a和CtDGAT2b的鉴定,差异表达和功能。就另外五个氨基酸序列而言,两种蛋白质同工型是独特的,此外还具有其他报道的DGAT2酶中已知的三个高度保守的基序。此外,CtDGAT2a和CtDGAT2b在氨基酸序列和预测的蛋白质结构方面具有特征性差异。发现CtDGAT2b同工酶在异源酵母系统,即酿酒酵母四重突变株H1246中固有地在中性脂质生物合成中缺陷的三酰基甘油生产中,催化效率比CtDGAT2a高12.5%。 CtDGAT2b活性通过将转化的啤酒酵母突变体细胞掺入三酰基甘油中而拯救了转化后的酿酒酵母突变体细胞的生长,这些突变体通常在含游离脂肪酸的培养基中不存活,并显示出对饱和酰基物种的优先特异性。此外,我们记录了CtDGAT2b生产三酰基甘油的效率受两个CtDGAT2同工酶仅存在的五个区域中氨基酸的缺失,插入或置换的影响不同。综上所述,我们的研究表征了两种结构上新颖的DGAT2同工酶,这是由于固有增加了热带假丝酵母SY005菌株以及转化的啤酒酵母中性脂质缺陷型突变细胞中固有的饱和脂肪酸所致的储存脂质产量的增加。这两个基因无疑将有助于进一步研究DGAT组成部分的新的结构-功能关系,以及在代谢工程中提高其他生物中脂质原料的生产。

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