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Catabolite Repression of Aox in Pichia pastoris is dependent on hexose transporter PpHxt1 and pexophagy  ( EI收录)  

文献类型:期刊文献

英文题名:Catabolite Repression of Aox in Pichia pastoris is dependent on hexose transporter PpHxt1 and pexophagy

作者:Zhang, Ping[2]; Zhang, Wenwen[2]; Zhou, Xiangshan[2]; Bai, Peng[2]; Cregg, James M.[1]; Zhang, Yuanxing[2]

机构:[1] Keck Graduate Institute of Applied Life Sciences, 535 Watson Drive, Claremont, CA 91711, United States; [2] State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, China

年份:2010

卷号:76

期号:18

起止页码:6108

外文期刊名:Applied and Environmental Microbiology

收录:EI(收录号:20103813251420)

语种:英文

外文关键词:Glucose sensors - Glucose oxidase - Fructose - Gene expression - Yeast

摘要:In this work, the identification and characterization of two hexose transporter homologs in the methylotrophic yeast Pichia pastoris, P. pastoris Hxt1 (PpHxt1) and PpHxt2, are described. When expressed in a Saccharomyces cerevisiae hxt-null mutant strain that is unable to take up monosaccharides, either protein restored growth on glucose or fructose. Both PpHXT genes are transcriptionally regulated by glucose. Transcript levels of PpHXT1 are induced by high levels of glucose, whereas transcript levels of PpHXT2 are relatively lower and are fully induced by low levels of glucose. In addition, PpHxt2 plays an important role in glycolysis-dependent fermentative growth, since PpHxt2 is essential for growth on glucose or fructose when respiration is inhibited. Notably, we firstly found that the deletion of PpHXT1, but not PpHXT2, leads to the induced expression of the alcohol oxidase I gene (AOX1) in response to glucose or fructose. We also elucidated that a sharp dropping of the sugar-induced expression level of Aox at a later growth phase is caused mainly by pexophagy, a degradation pathway in methylotrophic yeast. The sugar-inducible AOX1 promoter in an Δhxt1 strain may be promising as a host for the expression of heterologous proteins. The functional analysis of these two hexose transporters is the first step in elucidating the mechanisms of sugar metabolism and catabolite repression in P. pastoris. Copyright ? 2010, American Society tor Microbiology. AU Rights Reserved.

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