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管家基因的调控结构是由启动子组件驱动的。

Regulatory architecture of housekeeping genes is driven by promoter assemblies.

机构信息

Black Family Stem Cell Institute, Huffington Center for Cell-based Research in Parkinson's Disease, Department of Cell, Developmental and Regenerative Biology, Icahn School of Medicine at Mount Sinai, New York, NY 10502, USA.

Whitehead Institute for Biomedical Research, Cambridge, MA 02142, USA; Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02142, USA.

出版信息

Cell Rep. 2023 May 30;42(5):112505. doi: 10.1016/j.celrep.2023.112505. Epub 2023 May 12.

Abstract

Genes that are key to cell identity are generally regulated by cell-type-specific enhancer elements bound by transcription factors, some of which facilitate looping to distant gene promoters. In contrast, genes that encode housekeeping functions, whose regulation is essential for normal cell metabolism and growth, generally lack interactions with distal enhancers. We find that Ronin (Thap11) assembles multiple promoters of housekeeping and metabolic genes to regulate gene expression. This behavior is analogous to how enhancers are brought together with promoters to regulate cell identity genes. Thus, Ronin-dependent promoter assemblies provide a mechanism to explain why housekeeping genes can forgo distal enhancer elements and why Ronin is important for cellular metabolism and growth control. We propose that clustering of regulatory elements is a mechanism common to cell identity and housekeeping genes but is accomplished by different factors binding distinct control elements to establish enhancer-promoter or promoter-promoter interactions, respectively.

摘要

对细胞身份至关重要的基因通常受转录因子结合的细胞类型特异性增强子元件调控,其中一些转录因子促进与远距离基因启动子的环化。相比之下,编码管家功能的基因,其调控对于正常细胞代谢和生长是必不可少的,通常缺乏与远端增强子的相互作用。我们发现 Ronin(Thap11)将多个管家基因和代谢基因的启动子组装在一起,以调节基因表达。这种行为类似于增强子如何与启动子结合来调节细胞身份基因。因此,Ronin 依赖的启动子组装提供了一种机制来解释为什么管家基因可以放弃远端增强子元件,以及为什么 Ronin 对细胞代谢和生长控制很重要。我们提出,调控元件的聚类是细胞身份和管家基因共有的机制,但由不同的因子结合不同的控制元件来分别建立增强子-启动子或启动子-启动子相互作用来实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c499/10329844/5d60beba115e/nihms-1905380-f0002.jpg

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