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Genetic and Functional Investigation of Zn2Cys6 Transcription Factors RSE2 and RSE3 in Podospora anserina

机译:中华绒螯蟹中Zn2Cys6转录因子RSE2和RSE3的遗传和功能研究。

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摘要

In Podospora anserina, the two zinc cluster proteins RSE2 and RSE3 are essential for the expression of the gene encoding the alternative oxidase (aox) when the mitochondrial electron transport chain is impaired. In parallel, they activated the expression of gluconeogenic genes encoding phosphoenolpyruvate carboxykinase (pck) and fructose-1,6-biphosphatase (fbp). Orthologues of these transcription factors are present in a wide range of filamentous fungi, and no other role than the regulation of these three genes has been evidenced so far. In order to better understand the function and the organization of RSE2 and RSE3, we conducted a saturated genetic screen based on the constitutive expression of the aox gene. We identified 10 independent mutations in 9 positions in rse2 and 11 mutations in 5 positions in rse3. Deletions were generated at some of these positions and the effects analyzed. This analysis suggests the presence of central regulatory domains and a C-terminal activation domain in both proteins. Microarray analysis revealed 598 genes that were differentially expressed in the strains containing gain- or loss-of-function mutations in rse2 or rse3. It showed that in addition to aox, fbp, and pck, RSE2 and RSE3 regulate the expression of genes encoding the alternative NADH dehydrogenase, a Zn2Cys6 transcription factor, a flavohemoglobin, and various hydrolases. As a complement to expression data, a metabolome profiling approach revealed that both an rse2 gain-of-function mutation and growth on antimycin result in similar metabolic alterations in amino acids, fatty acids, and α-ketoglutarate pools.
机译:在线粒假单胞菌中,当线粒体电子传输链受损时,两个锌簇蛋白RSE2和RSE3对于编码替代氧化酶(aox)的基因的表达至关重要。同时,他们激活了编码磷酸烯醇丙酮酸羧化激酶(pck)和果糖-1,6-双磷酸酶(fbp)的糖异生基因的表达。这些转录因子的直向同源物广泛存在于丝状真菌中,到目前为止,除了调节这三个基因外,没有其他作用。为了更好地了解RSE2和RSE3的功能和组织,我们基于aox基因的组成型表达进行了饱和遗传筛选。我们在rse2的9个位置鉴定了10个独立突变,在rse3的5个位置鉴定了11个突变。在这些位置中的一些位置产生缺失,并分析了作用。该分析表明在两种蛋白质中均存在中央调节域和C端活化域。微阵列分析揭示了598个基因,这些基因在包含rse2或rse3中功能获得或丧失功能突变的菌株中差异表达。结果表明,除了aox,fbp和pck外,RSE2和RSE3还调节编码替代性NADH脱氢酶,Zn2Cys6转录因子,黄素血红蛋白和各种水解酶的基因的表达。作为表达数据的补充,代谢物谱分析方法显示rse2功能获得突变和抗霉素生长均导致氨基酸,脂肪酸和α-酮戊二酸池中相似的代谢改变。

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