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染色质调节因子 Ahc1p 通过与酿酒酵母中的多个转录因子相互作用来共同调节氮代谢。

Chromatin regulator Ahc1p co-regulates nitrogen metabolism via interactions with multiple transcription factors in Saccharomyces cerevisiae.

机构信息

Engineering Research Center of Ministry of Education on Food Synthetic Biotechnology, Jiangnan University, 1800 Lihu Road, Wuxi, Jiangsu, 214122, China; College of Biological and Food Engineering, Anhui Polytechnic University, Wuhu, 241000, China; Science Center for Future Foods, Jiangnan University, Wuxi, 214122, China.

Engineering Research Center of Ministry of Education on Food Synthetic Biotechnology, Jiangnan University, 1800 Lihu Road, Wuxi, Jiangsu, 214122, China; Science Center for Future Foods, Jiangnan University, Wuxi, 214122, China.

出版信息

Biochem Biophys Res Commun. 2023 Jun 25;662:31-38. doi: 10.1016/j.bbrc.2023.04.006. Epub 2023 Apr 5.

Abstract

Chromatin regulation is an important gene expression/regulation system, but little is known about how it affects nitrogen metabolism in Saccharomyces cerevisiae. A previous study demonstrated the regulatory role of the chromatin regulator Ahc1p on multiple key genes of nitrogen metabolism in S. cerevisiae, but the regulatory mechanism remains unknown. In this study, multiple key nitrogen metabolism genes directly regulated by Ahc1p were identified, and the transcription factors interacting with Ahc1p were analyzed. It was ultimately found that Ahc1p may regulate some key nitrogen metabolism genes in two ways. First, Ahc1p acts as a co-factor and is recruited with transcription factors such as Rtg3p or Gcr1p to facilitate transcription complex binding to target gene core promoters and promote transcription initiation. Second, Ahc1p binds at enhancers to promote the transcription of target genes in concert with transcription factors. This study furthers the understanding of the regulatory network of nitrogen metabolism in S. cerevisiae from an epigenetic perspective.

摘要

染色质调控是一个重要的基因表达/调控系统,但对于它如何影响酿酒酵母中的氮代谢知之甚少。先前的研究表明,染色质调节剂 Ahc1p 在酿酒酵母的多个氮代谢关键基因上发挥着调控作用,但调控机制尚不清楚。在这项研究中,鉴定出了多个受 Ahc1p 直接调控的关键氮代谢基因,并分析了与 Ahc1p 相互作用的转录因子。最终发现,Ahc1p 可能通过两种方式调节一些关键的氮代谢基因。首先,Ahc1p 作为一种辅助因子,与转录因子如 Rtg3p 或 Gcr1p 一起募集,有助于转录复合物结合到靶基因核心启动子上,并促进转录起始。其次,Ahc1p 结合在增强子上,与转录因子一起协同促进靶基因的转录。这项研究从表观遗传学的角度进一步了解了酿酒酵母氮代谢的调控网络。

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