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Rho 增强子在视紫红质转录和杆状细胞完整性中出乎意料地扮演着次要角色。

Rho enhancers play unexpectedly minor roles in Rhodopsin transcription and rod cell integrity.

机构信息

Department of Ophthalmology and Visual Sciences, Washington University, Saint Louis, MO, USA.

Department of Genetics, Washington University, 660 South Euclid Avenue, MSC 8096-0006-11, Saint Louis, MO, 63110, USA.

出版信息

Sci Rep. 2023 Aug 9;13(1):12899. doi: 10.1038/s41598-023-39979-6.

Abstract

Enhancers function with a basal promoter to control the transcription of target genes. Enhancer regulatory activity is often studied using reporter-based transgene assays. However, unmatched results have been reported when selected enhancers are silenced in situ. In this study, using genomic deletion analysis in mice, we investigated the roles of two previously identified enhancers and the promoter of the Rho gene that codes for the visual pigment rhodopsin. The Rho gene is robustly expressed by rod photoreceptors of the retina, and essential for the subcellular structure and visual function of rod photoreceptors. Mutations in RHO cause severe vision loss in humans. We found that each Rho regulatory region can independently mediate local epigenomic changes, but only the promoter is absolutely required for establishing active Rho chromatin configuration and transcription and maintaining the cell integrity and function of rod photoreceptors. To our surprise, two Rho enhancers that enable strong promoter activation in reporter assays are largely dispensable for Rho expression in vivo. Only small and age-dependent impact is detectable when both enhancers are deleted. Our results demonstrate context-dependent roles of enhancers and highlight the importance of studying functions of cis-regulatory regions in the native genomic context.

摘要

增强子与基础启动子一起作用,以控制靶基因的转录。增强子的调控活性通常使用基于报告基因的转基因检测来研究。然而,当在原位沉默选定的增强子时,报告的结果并不匹配。在这项研究中,我们利用小鼠的基因组缺失分析,研究了两个先前鉴定的增强子以及编码视觉色素视蛋白的 Rho 基因的启动子的作用。Rho 基因在视网膜的杆状光感受器中强烈表达,对于杆状光感受器的亚细胞结构和视觉功能是必需的。RHO 基因突变可导致人类严重的视力丧失。我们发现,每个 Rho 调控区域都可以独立地介导局部表观基因组变化,但只有启动子对于建立活跃的 Rho 染色质构象和转录以及维持杆状光感受器的细胞完整性和功能是绝对必需的。令我们惊讶的是,在报告基因检测中能够强烈激活启动子的两个 Rho 增强子,在体内对于 Rho 的表达在很大程度上是可有可无的。只有当两个增强子都缺失时,才会检测到小的、与年龄相关的影响。我们的结果表明增强子具有上下文依赖性,并强调了在天然基因组背景下研究顺式调控区域功能的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdc0/10412641/a6f56b464a52/41598_2023_39979_Fig1_HTML.jpg

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