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首页> 外文期刊>Brain research >Negative regulation of Vsx1 by its paralog Chx10/Vsx2 is conserved in the vertebrate retina.
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Negative regulation of Vsx1 by its paralog Chx10/Vsx2 is conserved in the vertebrate retina.

机译:Vsx1的旁系同源物Chx10 / Vsx2对Vsx1的负调控在脊椎动物视网膜中得以保留。

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Chx10/Vsx2 and Vsx1 are the only Paired-like CVC (Prd-L:CVC) homeobox genes in the mouse genome. Both are expressed in the retina and have important but distinct roles in retinal development. Mutations in Chx10/Vsx2 cause reduced retinal progenitor cell (RPC) proliferation and an absence of bipolar cells, while mutations in Vsx1 impair differentiation of cone bipolar cells. Given their structural similarities and importance in retinal development, we sought to determine if a regulatory interaction exists between these genes and whether inactivation of both genes blocks initiation of retinal development. We found that Chx10/Vsx2 binds to a specific sequence in the Vsx1 5'-intergenic region and represses the activity of a luciferase reporter under the control of the Vsx1 promoter. This is consistent with our observation that there is an inverse relationship between the levels of Chx10/Vsx2 and Vsx1 immunostaining within the bipolar cell class. Furthermore, Vsx1 mRNA is upregulated in the RPCs of Chx10/Vsx2 deficient mice and zebrafish embryos injected with a chx10/vsx2 morpholino. In mice deficient for both Chx10/Vsx2 and Vsx1 and zebrafish embryos co-injected with chx10/Vsx2 and vsx1 morpholinos, the changes in embryonic retinal development and marker expression are similar in magnitude to embryos with Chx10/Vsx2 loss of function only. From these studies, we propose that Vsx1 is a direct target of Chx10/Vsx2-mediated transcriptional repression. Although Vsx1 mRNA is upregulated in Chx10/Vsx2 deficient RPCs, Vsx1 does not genetically compensate for loss of Chx10/Vsx2, demonstrating that Prd-L:CVC genes, although important, are not absolutely required to initiate retinal development.
机译:Chx10 / Vsx2和Vsx1是小鼠基因组中唯一的成对样CVC(Prd-L:CVC)同源盒基因。两者均在视网膜中表达,并且在视网膜发育中具有重要但独特的作用。 Chx10 / Vsx2中的突变导致视网膜祖细胞(RPC)增殖减少和双极细胞的缺失,而Vsx1的突变则损害视锥双极细胞的分化。考虑到它们在视网膜发育中的结构相似性和重要性,我们试图确定这些基因之间是否存在调节相互作用,以及两个基因的失活是否会阻止视网膜发育的启动。我们发现Chx10 / Vsx2绑定到Vsx1 5'基因间区域中的特定序列,并在Vsx1启动子的控制下抑制萤光素酶报道分子的活性。这与我们的观察一致,即双极细胞类别中Chx10 / Vsx2和Vsx1免疫染色水平之间存在反比关系。此外,Vsx1 mRNA在Chx10 / Vsx2缺陷小鼠和注射chx10 / vsx2吗啉代的斑马鱼胚胎的RPC中上调。在同时缺乏Chx10 / Vsx2和Vsx1的小鼠以及与chx10 / Vsx2和vsx1吗啉代小鼠共同注射的斑马鱼胚胎中,视网膜视网膜发育和标志物表达的变化与仅具有Chx10 / Vsx2功能丧失的胚胎在大小上相似。从这些研究,我们建议Vsx1是Chx10 / Vsx2介导的转录抑制的直接目标。尽管在缺乏Chx10 / Vsx2的RPC中Vsx1 mRNA上调,但Vsx1不能从遗传上弥补Chx10 / Vsx2的损失,这表明Prd-L:CVC基因虽然很重要,但并不是启动视网膜发育所必需的。

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