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一个用于筛选 hoxb1 调控基因的屏幕,鉴定出 ppp1r14al 是 rhombomere 4 Fgf 信号中心的一个调控因子。

A screen for hoxb1-regulated genes identifies ppp1r14al as a regulator of the rhombomere 4 Fgf-signaling center.

机构信息

Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester, MA 01605-2324, USA.

出版信息

Dev Biol. 2011 Oct 15;358(2):356-67. doi: 10.1016/j.ydbio.2011.05.676. Epub 2011 Jul 23.

Abstract

Segmentation of the vertebrate hindbrain into multiple rhombomeres is essential for proper formation of the cerebellum, cranial nerves and cranial neural crest. Paralog group 1 (PG1) hox genes are expressed early in the caudal hindbrain and are required for rhombomere formation. Accordingly, loss of PG1 hox function disrupts development of caudal rhombomeres in model organisms and causes brainstem defects, associated with cognitive impairment, in humans. In spite of this important role for PG1 hox genes, transcriptional targets of PG1 proteins are not well characterized. Here we use ectopic expression together with embryonic dissection to identify novel targets of the zebrafish PG1 gene hoxb1b. Of 100 genes up-regulated by hoxb1b, 54 were examined and 25 were found to represent novel hoxb1b regulated hindbrain genes. The ppp1r14al gene was analyzed in greater detail and our results indicate that Hoxb1b is likely to directly regulate ppp1r14al expression in rhombomere 4. Furthermore, ppp1r14al is essential for establishment of the earliest hindbrain signaling-center in rhombomere 4 by regulating expression of fgf3.

摘要

脊椎动物后脑的分割成多个神经节对于小脑、颅神经和颅嵴的正常形成至关重要。旁系同源基因群 1 (PG1) hox 基因在尾部后脑中早期表达,并且是神经节形成所必需的。因此,PG1 hox 功能的丧失会破坏模型生物中尾部神经节的发育,并导致与认知障碍相关的脑干缺陷在人类中。尽管 PG1 hox 基因具有重要作用,但 PG1 蛋白的转录靶标尚未得到很好的描述。在这里,我们使用异位表达和胚胎解剖来鉴定斑马鱼 PG1 基因 hoxb1b 的新靶标。在 hoxb1b 上调的 100 个基因中,我们检查了 54 个,发现其中 25 个是新的 hoxb1b 调节的后脑基因。ppp1r14al 基因被更详细地分析,我们的结果表明 Hoxb1b 可能通过调节 fgf3 的表达直接调节神经节 4 中的 ppp1r14al 表达。此外,ppp1r14al 通过调节 fgf3 的表达对于在神经节 4 中建立最早的后脑信号中心是必需的。

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