首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Methanol Expression Regulator 1 (Mxr1p) Is Essential for the Utilization of Amino Acids as the Sole Source of Carbon by the Methylotrophic Yeast Pichia pastoris
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Methanol Expression Regulator 1 (Mxr1p) Is Essential for the Utilization of Amino Acids as the Sole Source of Carbon by the Methylotrophic Yeast Pichia pastoris

机译:甲醇表达调节剂1(Mxr1p)对于利用甲基营养酵母Pichia pastoris作为氨基酸的唯一碳源来说至关重要。

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摘要

Unlike Saccharomyces cerevisiae, the methylotrophic yeast Pichia pastoris can assimilate amino acids as the sole source of carbon and nitrogen. It can grow in media containing yeast extract and peptone (YP), yeast nitrogen base (YNB) + glutamate (YNB + Glu), or YNB + aspartate (YNB + Asp). Methanol expression regulator 1 (Mxr1p), a zinc finger transcription factor, is essential for growth in these media. Mxr1p regulates the expression of several genes involved in the utilization of amino acids as the sole source of carbon and nitrogen. These include the following: (i) GDH2 encoding NAD-dependent glutamate dehydrogenase; (ii) AAT1 and AAT2 encoding mitochondrial and cytosolic aspartate aminotransferases, respectively; (iii) MDH1 and MDH2 encoding mitochondrial and cytosolic malate dehydrogenases, respectively; and (iv) GLN1 encoding glutamine synthetase. Synthesis of all these enzymes is regulated by Mxr1p at the level of transcription except GDH2, whose synthesis is regulated at the level of translation. Mxr1p activates the transcription of AAT1, AAT2, and GLN1 in cells cultured in YP as well as in YNB + Glu media, whereas transcription of MDH1 and MDH2 is activated in cells cultured in YNB + Glu but not in YP. A truncated Mxr1p composed of 400 N-terminal amino acids activates transcription of target genes in cells cultured in YP but not in YNB + Glu. Mxr1p binds to Mxr1p response elements present in the promoters of AAT2, MDH2, and GLN1. We conclude that Mxr1p is essential for utilization of amino acids as the sole source of carbon and nitrogen, and it is a global regulator of multiple metabolic pathways in P. pastoris.
机译:与酿酒酵母不同,甲基营养酵母巴斯德毕赤酵母可以吸收氨基酸,将其作为碳和氮的唯一来源。它可以在含有酵母提取物和蛋白ept(YP),酵母氮碱基(YNB)+谷氨酸(YNB + Glu)或YNB +天冬氨酸(YNB + Asp)的培养基中生长。甲醇表达调节剂1(Mxr1p)是锌指转录因子,对于这些培养基中的生长至关重要。 Mxr1p调节涉及利用氨基酸作为碳和氮的唯一来源的几个基因的表达。这些包括:(i)编码NAD依赖性谷氨酸脱氢酶的GDH2; (ii)分别编码线粒体和胞质天冬氨酸转氨酶的AAT1和AAT2; (iii)MDH1和MDH2分别编码线粒体和胞质苹果酸脱氢酶; (iv)编码谷氨酰胺合成酶的GLN1。除GDH2外,所有这些酶的合成均受Mxr1p转录水平的调控,而GDH2的合成受翻译水平的调控。 Mxr1p激活在YP以及YNB + Glu培养基中培养的细胞中AAT1,AAT2和GLN1的转录,而MDH1和MDH2的转录在YNB + Glu而不是YP中培养的细胞中被激活。一个由400个N端氨基酸组成的截短的Mxr1p激活了YP中培养的细胞中靶基因的转录,而不是YNB + Glu中的细胞。 Mxr1p绑定到AAT2,MDH2和GLN1启动子中存在的Mxr1p反应元件。我们得出结论,Mxr1p对于利用氨基酸作为碳和氮的唯一来源至关重要,并且它是巴斯德毕赤酵母中多种代谢途径的全球调节者。

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