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研究 Grainyhead-like 2(Grhl2)基因座鉴定出一个增强子元件,该元件调节小鼠的腭形成。

Interrogating the Grainyhead-like 2 (Grhl2) genomic locus identifies an enhancer element that regulates palatogenesis in mouse.

机构信息

Department of Medicine, Monash University Central Clinical School, Prahran, Victoria, 3004, Australia; Department of Physiology, Anatomy and Microbiology, La Trobe University, Melbourne, Victoria, 3086, Australia.

Department of Medicine, Monash University Central Clinical School, Prahran, Victoria, 3004, Australia.

出版信息

Dev Biol. 2020 Mar 15;459(2):194-203. doi: 10.1016/j.ydbio.2019.11.015. Epub 2019 Nov 26.

Abstract

The highly-conserved Grainyhead-like (Grhl) transcription factors are critical regulators of embryogenesis that regulate cellular survival, proliferation, migration and epithelial integrity, especially during the formation of the craniofacial skeleton. Family member Grhl2 is expressed throughout epithelial tissues during development, and loss of Grhl2 function leads to significant defects in neurulation, abdominal wall closure, formation of the face and fusion of the maxilla/palate. Whereas numerous downstream target genes of Grhl2 have been identified, very little is known about how this crucial developmental transcription factor itself is regulated. Here, using in silico and in utero expression analyses and functional deletion in mice, we have identified a novel 2.4 ​kb enhancer element (mm1286) that drives reporter gene expression in a pattern that strongly recapitulates endogenous Grhl2 in the craniofacial primordia, modulates Grhl2 expression in these tissues, and augments Grhl2-mediated closure of the secondary palate. Deletion of this genomic element, in the context of inactivation of one allele of Grhl2 (through generation of double heterozygous Grhl2;mm1286 mice), results in a significant predisposition to palatal clefting at birth. Moreover, we found that a highly conserved 325 bp region of mm1286 is both necessary and sufficient for mediating the craniofacial-specific enhancer activity of this region, and that an extremely well-conserved 12-bp sequence within this element (CTGTCAAACAGGT) substantially determines full enhancer function. Together, these data provide valuable new insights into the upstream genomic regulatory landscape responsible for transcriptional control of Grhl2 during palatal closure.

摘要

高度保守的 Grainyhead-like (Grhl) 转录因子是胚胎发生的关键调节因子,可调节细胞存活、增殖、迁移和上皮完整性,尤其是在颅面骨骼形成过程中。家族成员 Grhl2 在发育过程中广泛表达于上皮组织中,而 Grhl2 功能丧失会导致神经管形成、腹壁闭合、面部形成和上颌/ palate 融合的严重缺陷。虽然已经鉴定出许多 Grhl2 的下游靶基因,但对于这种关键的发育转录因子本身是如何被调控的,人们知之甚少。在这里,我们通过计算机分析和体内表达分析以及在小鼠中进行的功能缺失,鉴定了一个新的 2.4kb 增强子元件(mm1286),该元件驱动报告基因的表达模式强烈重现颅面原基中的内源性 Grhl2,调节这些组织中的 Grhl2 表达,并增强 Grhl2 介导的 secondary palate 闭合。在 Grhl2 一个等位基因失活(通过生成 Grhl2;mm1286 双杂合子小鼠)的背景下,删除这个基因组元件会导致出生时 palate 裂的明显倾向。此外,我们发现 mm1286 的一个高度保守的 325bp 区域是介导该区域颅面特异性增强子活性所必需和充分的,而该元件内一个非常保守的 12bp 序列(CTGTCAAACAGGT)在很大程度上决定了完整增强子的功能。这些数据共同为腭闭合过程中 Grhl2 转录调控的上游基因组调控景观提供了有价值的新见解。

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