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开发一组强大的内含子启动子,用于在产油红酵母(红冬孢酵母)物种中进行强大的代谢工程。

Developing a set of strong intronic promoters for robust metabolic engineering in oleaginous Rhodotorula (Rhodosporidium) yeast species.

作者信息

Liu Yanbin, Yap Sihui Amy, Koh Chong Mei John, Ji Lianghui

机构信息

Biomaterials and Biocatalysts Group, Temasek Life Sciences Laboratory, National University of Singapore, 1 Research Link, Singapore, 117604, Singapore.

School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore, 637551, Singapore.

出版信息

Microb Cell Fact. 2016 Nov 25;15(1):200. doi: 10.1186/s12934-016-0600-x.

Abstract

BACKGROUND

Red yeast species in the Rhodotorula/Rhodosporidium genus are outstanding producers of triacylglyceride and cell biomass. Metabolic engineering is expected to further enhance the productivity and versatility of these hosts for the production of biobased chemicals and fuels. Promoters with strong activity during oil-accumulation stage are critical tools for metabolic engineering of these oleaginous yeasts.

RESULTS

The upstream DNA sequences of 6 genes involved in lipid biosynthesis or accumulation in Rhodotorula toruloides were studied by luciferase reporter assay. The promoter of perilipin/lipid droplet protein 1 gene (LDP1) displayed much stronger activity (4-11 folds) than that of glyceraldehyde-3-phosphate dehydrogenase gene (GPD1), one of the strongest promoters known in yeasts. Depending on the stage of cultivation, promoter of acetyl-CoA carboxylase gene (ACC1) and fatty acid synthase β subunit gene (FAS1) exhibited intermediate strength, displaying 50-160 and 20-90% levels of GPD1 promoter, respectively. Interestingly, introns significantly modulated promoter strength at high frequency. The incorporation of intron 1 and 2 of LDP1 (LDP1in promoter) enhanced its promoter activity by 1.6-3.0 folds. Similarly, the strength of ACC1 promoter was enhanced by 1.5-3.2 folds if containing intron 1. The intron 1 sequences of ACL1 and FAS1 also played significant regulatory roles. When driven by the intronic promoters of ACC1 and LDP1 (ACC1in and LDP1in promoter, respectively), the reporter gene expression were up-regulated by nitrogen starvation, independent of de novo oil biosynthesis and accumulation. As a proof of principle, overexpression of the endogenous acyl-CoA-dependent diacylglycerol acyltransferase 1 gene (DGA1) by LDP1in promoter was significantly more efficient than GPD1 promoter in enhancing lipid accumulation.

CONCLUSION

Intronic sequences play an important role in regulating gene expression in R. toruloides. Three intronic promoters, LDP1in, ACC1in and FAS1in, are excellent promoters for metabolic engineering in the oleaginous and carotenogenic yeast, R. toruloides.

摘要

背景

红酵母属/红冬孢酵母属中的红酵母物种是三酰甘油和细胞生物质的杰出生产者。代谢工程有望进一步提高这些宿主生产生物基化学品和燃料的生产力和多功能性。在油脂积累阶段具有强活性的启动子是这些产油酵母代谢工程的关键工具。

结果

通过荧光素酶报告基因测定法研究了参与球拟红酵母脂质生物合成或积累的6个基因的上游DNA序列。周脂素/脂滴蛋白1基因(LDP1)的启动子活性比甘油醛-3-磷酸脱氢酶基因(GPD1)强得多(4-11倍),GPD1是酵母中已知最强的启动子之一。根据培养阶段,乙酰辅酶A羧化酶基因(ACC1)和脂肪酸合酶β亚基基因(FAS1)的启动子表现出中等强度,分别显示出GPD1启动子活性水平的50-160%和20-90%。有趣的是,内含子在高频下显著调节启动子强度。LDP1的内含子1和2(LDP1in启动子)的掺入使其启动子活性提高了1.6-3.0倍。同样,如果包含内含子1,ACC1启动子的强度可提高1.5-3.2倍。ACL1和FAS1的内含子1序列也发挥了重要的调节作用。当由ACC1和LDP1的内含子启动子(分别为ACC1in和LDP1in启动子)驱动时,报告基因的表达受氮饥饿上调,与从头合成油脂和积累无关。作为原理验证,在增强脂质积累方面,由LDP1in启动子过表达内源性酰基辅酶A依赖性二酰甘油酰基转移酶1基因(DGA1)比GPD1启动子显著更有效。

结论

内含子序列在调节球拟红酵母基因表达中起重要作用。三个内含子启动子,LDP1in、ACC1in和FAS1in,是产油和产类胡萝卜素酵母球拟红酵母代谢工程的优良启动子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cd7/5124236/8028857893a7/12934_2016_600_Fig1_HTML.jpg

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