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TRA-1/GLI在秀丽隐杆线虫外阴发育过程中控制Hox基因lin-39的表达。

TRA-1/GLI controls the expression of the Hox gene lin-39 during C. elegans vulval development.

作者信息

Szabó Emese, Hargitai Balázs, Regos Agnes, Tihanyi Borbála, Barna János, Borsos Eva, Takács-Vellai Krisztina, Vellai Tibor

机构信息

Department of Genetics, Eötvös Loránd University, Pázmány Péter sétány 1/C, Budapest H-1117, Hungary.

出版信息

Dev Biol. 2009 Jun 15;330(2):339-48. doi: 10.1016/j.ydbio.2009.04.005. Epub 2009 Apr 8.

Abstract

The vulva of the Caenorhabditis elegans hermaphrodite develops from a subset of six vulval precursor cells (VPCs) by the combined effect of the Ras, Wingless and Notch signaling cascades, and of three redundant synMuv (synthetic Multivulva) pathways grouped into classes A, B and C. Here we show that signaling via the GLI- (Glioma-associated protein) like transcription factor TRA-1, which is the terminal regulator of the C. elegans sex determination cascade, is a newly discovered pathway specifying vulval cell fates. We found that TRA-1 accumulates in, and regulates the fusion process of, cells (including the VPCs and hypodermal cells) involved in vulval patterning. TRA-1 also influenced the expression of the Hox gene lin-39, a central regulator of vulval development. Furthermore, inactivation of tra-1, which transforms animals with hermaphrodite-specific karyotype into males, promoted vulval induction in synMuv A, but not in synMuv B, mutant background. This implies that TRA-1 interacts with the class B synMuv genes, many of which are involved in chromatin-mediated transcriptional repression of cell proliferation. These results may help to understand how compromised GLI activity in humans leads to cancer. Together, we suggest that the GLI protein family involved in several key developmental processes in both invertebrates and vertebrates regulates somatic cell fates through influencing, at least in part, the expression of specific Hox genes.

摘要

秀丽隐杆线虫雌雄同体的外阴由六个外阴前体细胞(VPC)的一个子集发育而来,这是由Ras、Wingless和Notch信号级联以及分为A、B和C类的三个冗余的合成多外阴(synMuv)途径共同作用的结果。在这里,我们表明,通过与胶质瘤相关蛋白(Glioma-associated protein)类似的转录因子TRA-1进行信号传导,这是秀丽隐杆线虫性别决定级联的终端调节因子,是一条新发现的决定外阴细胞命运的途径。我们发现TRA-1在参与外阴模式形成的细胞(包括VPC和皮下细胞)中积累,并调节这些细胞的融合过程。TRA-1还影响Hox基因lin-39的表达,lin-39是外阴发育的核心调节因子。此外,tra-1的失活会将具有雌雄同体特异性核型的动物转化为雄性,在synMuv A突变背景下促进外阴诱导,但在synMuv B突变背景下则不会。这意味着TRA-1与B类synMuv基因相互作用,其中许多基因参与染色质介导的细胞增殖转录抑制。这些结果可能有助于理解人类中受损的GLI活性如何导致癌症。总之,我们认为,参与无脊椎动物和脊椎动物几个关键发育过程的GLI蛋白家族至少部分通过影响特定Hox基因的表达来调节体细胞命运。

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