Keng T
Department of Microbiology and Immunology, McGill University, Montreal, Quebec, Canada.
Mol Cell Biol. 1992 Jun;12(6):2616-23. doi: 10.1128/mcb.12.6.2616-2623.1992.
HEM13 of Saccharomyces cerevisiae encodes coproporphyrinogen oxidase, an enzyme in the heme biosynthetic pathway. Expression of HEM13 is repressed by oxygen and heme. This study investigated the regulatory pathway responsible for the regulation of HEM13 expression. The transcriptional activator HAP1 is demonstrated to be required for the full-level expression of HEM13 in the absence of heme. It is also shown that the repression of HEM13 transcription caused by heme involves the HAP1 and ROX1 gene products; a mutation in either gene results in derepression of HEM13 expression. The heme-dependent expression of ROX1 was found to require functional HAP1, leading one to propose that repression of HEM13 results from a pathway involving HAP1-mediated regulation of ROX1 transcription in response to heme levels followed by ROX1-mediated repression of HEM13 transcription. In support of this model, expression of ROX1 under control of the GAL promoter was found to result in repression of HEM13 transcription in a hap1 mutant strain. The ability of ROX1 encoded by the galactose-inducible ROX1 construct to function in the absence of HAP1 indicates that the only role of HAP1 in repression of HEM13 is to activate ROX1 transcription.
酿酒酵母的HEM13编码粪卟啉原氧化酶,这是血红素生物合成途径中的一种酶。HEM13的表达受氧气和血红素的抑制。本研究调查了负责调控HEM13表达的调控途径。结果表明,转录激活因子HAP1是在无血红素情况下HEM13实现全水平表达所必需的。研究还表明,血红素引起的HEM13转录抑制涉及HAP1和ROX1基因产物;任一基因发生突变都会导致HEM13表达的去抑制。发现ROX1的血红素依赖性表达需要功能性的HAP1,这使得人们提出HEM13的抑制是由一条途径导致的,该途径涉及HAP1介导的对ROX1转录的调控以响应血红素水平,随后是ROX1介导的对HEM13转录的抑制。支持该模型的是,发现在GAL启动子控制下ROX1的表达会导致hap1突变株中HEM13转录的抑制。由半乳糖诱导型ROX1构建体编码的ROX1在无HAP1的情况下发挥作用的能力表明,HAP1在抑制HEM13中的唯一作用是激活ROX1转录。