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Mctp1 自发缺失的小鼠模型揭示了长程顺式调控区在内耳发育过程中对 NR2F1 功能至关重要。

A spontaneous mouse deletion in Mctp1 uncovers a long-range cis-regulatory region crucial for NR2F1 function during inner ear development.

机构信息

The Jackson Laboratory, Bar Harbor, ME 04609, USA; Department of Medicine, Tufts University, Boston 02111, MA, USA; Graduate School of Biomedical Science and Engineering (GSBSE), University of Maine, Orono 04469, ME, USA.

The Jackson Laboratory, Bar Harbor, ME 04609, USA.

出版信息

Dev Biol. 2018 Nov 15;443(2):153-164. doi: 10.1016/j.ydbio.2018.09.011. Epub 2018 Sep 11.

Abstract

Hundreds of thousands of cis-regulatory DNA sequences are predicted in vertebrate genomes, but unlike genes themselves, few have been characterized at the functional level or even unambiguously paired with a target gene. Here we serendipitously identified and started investigating the first reported long-range regulatory region for the Nr2f1 (Coup-TFI) transcription factor gene. NR2F1 is temporally and spatially regulated during development and required for patterning and regionalization in the nervous system, including sensory hair cell organization in the auditory epithelium of the cochlea. Analyzing the deaf wanderer (dwnd) spontaneous mouse mutation, we traced back the cause of its associated circling behavior to a 53 kb deletion removing five exons and adjacent intronic regions of the poorly characterized Mctp1 gene. Interestingly, loss of Mctp1 function cannot account for the hearing loss, inner ear dysmorphology and sensory hair cell disorganization observed in dwnd mutants. Instead, we found that the Mctp1 deletion affects the Nr2f1 gene located 1.4 Mb away, downregulating transcription and protein expression in the embryonic cochlea. Remarkably, the Mctp1 allele failed to complement a targeted inactivation allele of Nr2f1, and transheterozygotes or Mctp1 homozygotes exhibit the same morphological defects observed in inner ears of Nr2f1 mutants without sharing their early life lethality. Defects include improper separation of the utricle and saccule in the vestibule not described previously, which can explain the circling behavior that first brought the spontaneous mutation to attention. By contrast, mice homozygous for a targeted inactivation of Mctp1 have normal hearing and inner ear structures. We conclude that the 53 kb Mctp1 deletion encompasses a long-range cis-regulatory region essential for proper Nr2f1 expression in the embryonic inner ear, providing a first opportunity to investigate Nr2f1 function in postnatal inner ears. This work adds to the short list of long-range regulatory regions characterized as essential to drive expression of key developmental control genes.

摘要

在脊椎动物基因组中预测到了数十万顺式调控 DNA 序列,但与基因本身不同,这些序列中只有少数在功能水平上得到了表征,甚至无法明确与靶基因配对。在这里,我们偶然发现并开始研究第一个报道的 Nr2f1(Coup-TFI)转录因子基因的长程调控区。NR2F1 在发育过程中受到时空调控,是神经系统模式形成和区域化所必需的,包括耳蜗听觉上皮中的感觉毛细胞组织。分析耳聋游荡者(dwnd)自发突变鼠,我们追溯到其相关的转圈行为的原因是一个 53kb 的缺失,该缺失去除了 poorly characterized Mctp1 基因的五个外显子和相邻内含子区域。有趣的是,Mctp1 功能丧失不能解释 dwnd 突变体中观察到的听力损失、内耳畸形和感觉毛细胞紊乱。相反,我们发现 Mctp1 缺失影响位于 1.4Mb 之外的 Nr2f1 基因,下调胚胎耳蜗中的转录和蛋白表达。值得注意的是,Mctp1 等位基因未能互补 Nr2f1 的靶向失活等位基因,并且 transheterozygotes 或 Mctp1 纯合子表现出与 Nr2f1 突变体内耳相同的形态缺陷,而没有共享它们的早期致死性。缺陷包括以前未描述的前庭中前庭和球囊的不当分离,这可以解释首先引起自发突变的转圈行为。相比之下,Mctp1 靶向失活的纯合子小鼠具有正常的听力和内耳结构。我们得出结论,53kb 的 Mctp1 缺失包含一个长程顺式调控区,对于胚胎内耳中 Nr2f1 的正确表达是必需的,为研究 Nr2f1 在出生后内耳中的功能提供了第一个机会。这项工作增加了少数被表征为对驱动关键发育控制基因表达必不可少的长程调控区的列表。

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本文引用的文献

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Deletion of a Long-Range Enhancer Disrupts Inner Ear Development in Mice.长距离增强子缺失导致小鼠内耳发育异常。
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