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Maf1,一种 tRNA 转录抑制剂,参与调控酿酒酵母的糖异生基因。

Maf1, repressor of tRNA transcription, is involved in the control of gluconeogenetic genes in Saccharomyces cerevisiae.

机构信息

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, ul. Pawinskiego 5a, 02-106 Warsaw, Poland.

出版信息

Gene. 2013 Aug 15;526(1):16-22. doi: 10.1016/j.gene.2013.04.055. Epub 2013 May 5.

Abstract

Maf1 is a negative regulator of RNA polymerase III (Pol III) in yeast. Maf1-depleted cells manifest elevated tRNA transcription and inability to grow on non-fermentable carbon source, such as glycerol. Using genomic microarray approach, we examined the effect of Maf1 deletion on expression of Pol II-transcribed genes in yeast grown in medium containing glycerol. We found that transcription of FBP1 and PCK1, two major genes controlling gluconeogenesis, was decreased in maf1Δ cells. FBP1 is located on chromosome XII in close proximity to a tRNA-Lys gene. Accordingly we hypothesized that decreased FBP1 mRNA level could be due to the effect of Maf1 on tgm silencing (tRNA gene mediated silencing). Two approaches were used to verify this hypothesis. First, we inactivated tRNA-Lys gene on chromosome XII by inserting a deletion cassette in a control wild type strain and in maf1Δ mutant. Second, we introduced a point mutation in the promoter of the tRNA-Lys gene cloned with the adjacent FBP1 in a plasmid and expressed in fbp1Δ or fbp1Δ maf1Δ cells. The levels of FBP1 mRNA were determined by RT-qPCR in each strain. Although the inactivation of the chromosomal tRNA-Lys gene increased expression of the neighboring FBP1, the mutation preventing transcription of the plasmid-born tRNA-Lys gene had no significant effect on FBP1 transcription. Taken together, those results do not support the concept of tgm silencing of FBP1. Other possible mechanisms are discussed.

摘要

Maf1 是酵母中 RNA 聚合酶 III(Pol III)的负调控因子。Maf1 耗尽的细胞表现出 tRNA 转录水平升高,并且无法在非发酵碳源(如甘油)上生长。使用基因组微阵列方法,我们研究了 Maf1 缺失对酵母在含有甘油的培养基中生长时 Pol II 转录基因表达的影响。我们发现,控制糖异生的两个主要基因 FBP1 和 PCK1 的转录在 maf1Δ 细胞中降低。FBP1 位于染色体 XII 上,靠近 tRNA-Lys 基因。因此,我们假设 FBP1 mRNA 水平的降低可能是由于 Maf1 对 tgm 沉默(tRNA 基因介导的沉默)的影响。我们采用两种方法来验证这一假设。首先,我们通过在对照野生型菌株和 maf1Δ 突变体中插入缺失盒,使染色体 XII 上的 tRNA-Lys 基因失活。其次,我们在质粒中克隆了与相邻 FBP1 相邻的 tRNA-Lys 基因的启动子,并在 fbp1Δ 或 fbp1Δ maf1Δ 细胞中表达,引入了一个点突变。通过在每种菌株中进行 RT-qPCR 测定 FBP1 mRNA 的水平。尽管染色体 tRNA-Lys 基因的失活增加了相邻 FBP1 的表达,但阻止质粒来源的 tRNA-Lys 基因转录的突变对 FBP1 转录没有显著影响。总之,这些结果不支持 FBP1 的 tgm 沉默的概念。其他可能的机制正在讨论中。

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