Hu Jingjin, Yu Lingxiao, Shu Qin, Chen Qihe
Department of Food Science and Nutrition, Zhejiang University, Hangzhou 310058, China.
Microorganisms. 2019 Jul 24;7(8):214. doi: 10.3390/microorganisms7080214.
Vacuolar proteinase A (Pep4p) is required for the post-translational precursor maturation of vacuolar proteinases in , and important for protein turnover after oxidative damage. The presence of proteinase A in brewing yeast leads to the decline of beer foam stability, thus the deletion or inhibition of Pep4p is generally used. However, the influence of Pep4p deletion on cell metabolism in is still unclear. Herein, we report the identification of differentially down-regulated metabolic proteins in the absence of Pep4p by a comparative proteomics approach. 2D-PAGE (two-dimensional polyacrylamide gel electrophoresis) presented that the number of significantly up-regulated spots (the Pep4p-deficient species versus the wild type) was 183, whereas the down-regulated spots numbered 111. Among them, 35 identified proteins were differentially down-regulated more than 10-fold in the Pep4p-deficient compared to the wild-type species. The data revealed that Pep4p was required for the synthesis and maturation of several glycolytic enzymes and stress proteins, including Eno2p, Fba1p, Pdc1p, Tpi1p, Ssa1, Hsp82p, and Trr1p. The transcription and post-translational modifications of glycolytic enzymes like Eno2p and Fba1p were sensitive to the absence of Pep4p; whereas the depletion of the gene had a negative impact on mitochondrial and other physiological functions. The finding of this study provides a systematic understanding that Pep4p may serve as a regulating factor for cell physiology and metabolic processes in under a nitrogen stress environment.
液泡蛋白酶A(Pep4p)是液泡蛋白酶翻译后前体成熟所必需的,并且对氧化损伤后的蛋白质周转很重要。酿酒酵母中蛋白酶A的存在会导致啤酒泡沫稳定性下降,因此通常采用缺失或抑制Pep4p的方法。然而,Pep4p缺失对酿酒酵母细胞代谢的影响仍不清楚。在此,我们通过比较蛋白质组学方法报告了在缺失Pep4p的情况下差异下调的代谢蛋白的鉴定结果。二维聚丙烯酰胺凝胶电泳(2D-PAGE)显示,显著上调的斑点数量(Pep4p缺陷型与野生型相比)为183个,而下调的斑点数量为111个。其中,与野生型相比,在Pep4p缺陷型中有35种已鉴定蛋白质差异下调超过10倍。数据表明,Pep4p是几种糖酵解酶和应激蛋白合成与成熟所必需的,包括Eno2p、Fba1p、Pdc1p、Tpi1p、Ssa1、Hsp82p和Trr1p。像Eno2p和Fba1p这样的糖酵解酶的转录和翻译后修饰对Pep4p的缺失很敏感;而该基因的缺失对线粒体和其他生理功能有负面影响。本研究的发现提供了一个系统的认识,即Pep4p可能作为氮胁迫环境下酿酒酵母细胞生理和代谢过程的调节因子。