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酿酒酵母中线粒体生物合成的调控。QCR8基因启动子中一般转录因子与特定转录因子之间的复杂相互作用。

Regulation of mitochondrial biogenesis in Saccharomyces cerevisiae. Intricate interplay between general and specific transcription factors in the promoter of the QCR8 gene.

作者信息

De Winde J H, Grivell L A

机构信息

Section for Molecular Biology, Institute for Molecular Cell Biology, BioCentrum Amsterdam, The Netherlands.

出版信息

Eur J Biochem. 1995 Oct 1;233(1):200-8. doi: 10.1111/j.1432-1033.1995.200_1.x.

Abstract

Transcription of the QCR8 gene, encoding subunit VIII of the Saccharomyces cerevisiae mitochondrial ubiquinol-cytochrome c oxidoreductase (QCR), is controlled by the carbon-source-dependent heme-activator protein complex HAP2/3/4 and the general transcriptional regulators autonomous replication-site-binding factor ABF1 and centromere-binding and promoter-binding factor CPF1. In this study, we investigate and dissect the relative contributions and mutual interactions of these regulators in transcriptional control. Transcription was analyzed both under steady-state conditions and during nutritional shifts, in hap delta mutants and after site-specific mutagenesis of the various binding sites in the chromosomal context of the QCR8 gene. We present evidence for both direct and indirect interactions between ABF1 and HAP2/3/4, and show that HAP2/3/4 is essential for a rapid transcriptional induction during transition from repressed to derepressed conditions. However, the activator is not the only determinant for carbon-source-dependent regulation, and we observe a functional difference between HAP2/3/4 and the HAP2/3 subcomplex. ABF1 is required for maintainance of basal repressed and derepressed transcription in the steady state of growth. The repressive action of the negative modulator CPF1 during escape from glucose repression is overcome through the cooperative action of ABF1 and HAP2/3/4. The implications of the intricate interactions of these DNA-binding regulators for control of expression of mitochondrial protein genes are discussed.

摘要

酿酒酵母线粒体泛醇 - 细胞色素c氧化还原酶(QCR)的亚基VIII编码基因QCR8的转录,受碳源依赖性血红素激活蛋白复合物HAP2/3/4以及一般转录调节因子自主复制位点结合因子ABF1和着丝粒结合及启动子结合因子CPF1的控制。在本研究中,我们调查并剖析了这些调节因子在转录控制中的相对贡献和相互作用。在稳态条件下以及营养转换期间,对hapδ突变体以及在QCR8基因染色体背景下对各个结合位点进行位点特异性诱变后,对转录进行了分析。我们提供了ABF1与HAP2/3/4之间直接和间接相互作用的证据,并表明HAP2/3/4对于从抑制状态转变为去抑制状态期间的快速转录诱导至关重要。然而,激活剂并非碳源依赖性调节的唯一决定因素,并且我们观察到HAP2/3/4与HAP2/3亚复合物之间存在功能差异。ABF1是在生长稳态中维持基础抑制和去抑制转录所必需的。在从葡萄糖抑制中逃逸期间,负调节因子CPF1的抑制作用通过ABF1和HAP2/3/4的协同作用得以克服。讨论了这些DNA结合调节因子复杂相互作用对线粒体蛋白基因表达控制的影响。

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