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在肢体前体细胞中,依赖Gata6的GLI3阻遏物功能对于正常肢体发育至关重要。

Gata6-Dependent GLI3 Repressor Function is Essential in Anterior Limb Progenitor Cells for Proper Limb Development.

作者信息

Hayashi Shinichi, Akiyama Ryutaro, Wong Julia, Tahara Naoyuki, Kawakami Hiroko, Kawakami Yasuhiko

机构信息

Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, Minnesota, United States of America.

Stem Cell Institute, University of Minnesota, Minneapolis, Minnesota, United States of America.

出版信息

PLoS Genet. 2016 Jun 28;12(6):e1006138. doi: 10.1371/journal.pgen.1006138. eCollection 2016 Jun.

Abstract

Gli3 is a major regulator of Hedgehog signaling during limb development. In the anterior mesenchyme, GLI3 is proteolytically processed into GLI3R, a truncated repressor form that inhibits Hedgehog signaling. Although numerous studies have identified mechanisms that regulate Gli3 function in vitro, it is not completely understood how Gli3 function is regulated in vivo. In this study, we show a novel mechanism of regulation of GLI3R activities in limb buds by Gata6, a member of the GATA transcription factor family. We show that conditional inactivation of Gata6 prior to limb outgrowth by the Tcre deleter causes preaxial polydactyly, the formation of an anterior extra digit, in hindlimbs. A recent study suggested that Gata6 represses Shh transcription in hindlimb buds. However, we found that ectopic Hedgehog signaling precedes ectopic Shh expression. In conjunction, we observed Gata6 and Gli3 genetically interact, and compound heterozygous mutants develop preaxial polydactyly without ectopic Shh expression, indicating an additional prior mechanism to prevent polydactyly. These results support the idea that Gata6 possesses dual roles during limb development: enhancement of Gli3 repressor function to repress Hedgehog signaling in the anterior limb bud, and negative regulation of Shh expression. Our in vitro and in vivo studies identified that GATA6 physically interacts with GLI3R to facilitate nuclear localization of GLI3R and repressor activities of GLI3R. Both the genetic and biochemical data elucidates a novel mechanism by Gata6 to regulate GLI3R activities in the anterior limb progenitor cells to prevent polydactyly and attain proper development of the mammalian autopod.

摘要

Gli3是肢体发育过程中刺猬信号通路的主要调节因子。在前侧间充质中,GLI3被蛋白水解加工成GLI3R,一种截短的抑制形式,可抑制刺猬信号通路。尽管众多研究已在体外确定了调节Gli3功能的机制,但在体内Gli3功能是如何被调节的仍未完全明确。在本研究中,我们展示了GATA转录因子家族成员Gata6对肢体芽中GLI3R活性进行调节的新机制。我们发现,通过Tcre删除因子在肢体长出前条件性失活Gata6会导致后肢出现前轴多指畸形,即在前侧额外形成一个指。最近的一项研究表明,Gata6在后肢芽中抑制Shh转录。然而,我们发现异位刺猬信号通路先于异位Shh表达出现。同时,我们观察到Gata6和Gli3存在遗传相互作用,复合杂合突变体在没有异位Shh表达的情况下出现前轴多指畸形,这表明存在另一种防止多指畸形的先前机制。这些结果支持了Gata6在肢体发育过程中具有双重作用的观点:增强Gli3抑制因子功能以抑制前侧肢体芽中的刺猬信号通路,以及对Shh表达进行负调控。我们的体外和体内研究确定,GATA6与GLI

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d62/4924869/42dfa0ad10e2/pgen.1006138.g001.jpg

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