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细胞凋亡调控因子BCL-2促进工程酵母合成橙花叔醇
引用本文:唐学超,魏春,袁围,孙杰.细胞凋亡调控因子BCL-2促进工程酵母合成橙花叔醇[J].食品与发酵工业,2022(4):10-15.
作者姓名:唐学超  魏春  袁围  孙杰
作者单位:浙江工业大学生物工程学院
基金项目:浙江省自然科学基金面上项目(LY19C010005);国家自然科学基金青年基金(31900497)。
摘    要:工程酵母菌发酵过程中因氧化胁迫、蛋白质错误折叠等压力致使生产能力降低.该研究发现,在甲羟戊酸途径增强的酵母工程菌中,过表达人源细胞凋亡调控因子B细胞淋巴瘤/白血病-2(B-cell lymphoma-2,BCL-2)和还原型谷胱甘肽合成酶(glutathione synthase,GSH1)编码基因可以促进橙花叔醇的合...

关 键 词:工程酵母  BCL-2蛋白  蛋白质定位  代谢组分析  橙花叔醇

Apoptosis regulator BCL-2 promotes the synthesis of nerolidol in engineered yeast
TANG Xuechao,WEI Chun,YUAN Wei,SUN Jie.Apoptosis regulator BCL-2 promotes the synthesis of nerolidol in engineered yeast[J].Food and Fermentation Industries,2022(4):10-15.
Authors:TANG Xuechao  WEI Chun  YUAN Wei  SUN Jie
Affiliation:(College of Biotechnology and Bioengineering,Zhejiang University of Technology,Hangzhou 310014,China)
Abstract:Production capacity of engineered yeast decreases due to some pressures,such as oxidative stress and protein misfolding.Results of this study showed that,the engineered yeast with enhanced mevalonate pathway,overexpression of human apoptosis regulator BCL-2 and reduced glutathione synthase GSH1 promoted the production of nerolidol by 77.7%and 32.7%in shake flasks,reached 594.1 and 446.9 mg/L,respectively.Metabolome analysis between strains with and without BCL-2 overexpression showed that there were 182 differential metabolites between these two strains.It mainly involved the metabolic pathways of fatty acids and amino acids,and biosynthetic pathways of coenzyme A and pantothenic acid.In addition,BCL-2 protein linked with endoplasmic reticulum localization signal peptide had a stronger promoting effect on nerolidol production,which was further increased by 29.2%,reaching 767.6 mg/L.This study provides an effective strategy for increasing the yield of exogenous terpenoids in engineered Saccharomyces cerevisiae.
Keywords:engineered yeast  BCL-2 protein  location of proteins  metabolome analysis  nerolidol
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