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酵母甘氨酸裂解基因的调控对多种营养物质的可利用性有响应。

Regulation of the yeast glycine cleavage genes is responsive to the availability of multiple nutrients.

作者信息

Piper Matthew D W, Hong Seung Pyo, Eissing Thomas, Sealey Philip, Dawes Ian W

机构信息

School of Biochemistry and Molecular Genetics, The University of New South Wales, Sydney, Australia.

出版信息

FEMS Yeast Res. 2002 Mar;2(1):59-71. doi: 10.1111/j.1567-1364.2002.tb00069.x.

Abstract

The mitochondrial glycine cleavage complex has an important role in metabolism since it provides the cell with the ability to use glycine as sole one-carbon and sole nitrogen source. In previous studies we have found that the genes encoding the unique components of this complex (GCV1, GCV2 and GCV3) are regulated by the one-carbon status of the cell. Here we have examined the transcriptional regulation of these genes with respect to nitrogen source. Two controls are required for the full range of GCV2 expression. One acts through a GATA sequence known to be involved in the control of transcription in response to the quality of the available nitrogen source and the other acts through an eight-base palindrome immediately 5' of the GATA element. This palindromic sequence previously had no known function. These data expand the repertoire of nitrogen catabolite repression to include the poor nitrogen source glycine and the genes encoding the enzyme complex responsible for its catabolism. Furthermore, deletion analyses and mutagenesis have shown that the palindromic sequence is important for full repression of GCV2 in complex glucose-containing medium and functions in a manner that is different from control mediated by the GATA element.

摘要

线粒体甘氨酸裂解复合体在代谢中具有重要作用,因为它使细胞能够将甘氨酸用作唯一的一碳和唯一的氮源。在先前的研究中,我们发现编码该复合体独特组分(GCV1、GCV2和GCV3)的基因受细胞一碳状态的调控。在此,我们研究了这些基因相对于氮源的转录调控。GCV2的完整表达需要两种调控机制。一种通过一个已知参与响应可用氮源质量调控转录的GATA序列起作用,另一种通过紧邻GATA元件5'端的一个八碱基回文序列起作用。该回文序列以前没有已知功能。这些数据扩展了氮代谢物阻遏的范围,使其包括劣质氮源甘氨酸以及编码负责其分解代谢的酶复合体的基因。此外,缺失分析和诱变表明,该回文序列对于在含复合葡萄糖的培养基中完全抑制GCV2很重要,并且其作用方式不同于由GATA元件介导的调控。

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