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A comparative expression analysis of four MRX genes regulating intracellular signalling via small GTPases.

机译:四种通过小GTP酶调节细胞内信号转导的MRX基因的比较表达分析。

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The X chromosomal mental retardation genes have attained high interest in the past. A rough classification distinguishes syndromal mental retardation (MRXS) and nonsyndromal mental retardation (MRX) conditions. The latter are suggested to be responsible for human specific development of cognitive abilities. These genes have been shown to be engaged in chromatin remodelling or in intracellular signalling. During this analysis, we have compared the expression pattern in the mouse of four genes from the latter class of MRX genes: Ophn1, Arhgef6 (also called alphaPix), Pak3, and Gdi1. Ophn1, Pak3, and Gdi1 show a specific neuronal expression pattern with a certain overlap that allows to assign these signalling molecules to the same functional context. We noticed the highest expression of these genes in the dentate gyrus and cornu ammonis of the hippocampus, in structures engaged in learning and memory. A completely different expression pattern was observed for Arhgef6. In the CNS, it is expressed in ventricular zones, where neuronal progenitor cells are located. But Arhgef6 expression is also found in other non-neural tissues. Our analysis provides evidence that these signalling molecules are involved in different spatio-temporal expression domains of common signalling cascades and that for most tissues considerable functional redundancy of Rho-mediated signalling pathways exists.European Journal of Human Genetics (2004) 12, 29-37. doi:10.1038/sj.ejhg.5201085 Published online 3 December 2003
机译:过去,X染色体智力低下基因受到了高度关注。粗略的分类区分了综合征型智力障碍(MRXS)和非综合征型智力障碍(MRX)状况。建议后者负责人类特定的认知能力发展。这些基因已显示参与染色质重塑或细胞内信号转导。在此分析中,我们比较了后一类MRX基因中四个基因在小鼠中的表达模式:Ophn1,Arhgef6(也称为alphaPix),Pak3和Gdi1。 Ophn1,Pak3和Gdi1显示具有特定重叠的特定神经元表达模式,可以将这些信号分子分配给相同的功能上下文。我们注意到在参与学习和记忆的结构中,这些基因在海马的齿状回和角膜羊膜中表达最高。对于Arhgef6,观察到完全不同的表达模式。在中枢神经系统中,它在神经元祖细胞所在的心室区域表达。但是Arhgef6表达也在其他非神经组织中发现。我们的分析提供了证据,这些信号分子参与了共同信号级联的不同时空表达域,并且对于大多数组织而言,Rho介导的信号通路存在相当大的功能冗余。欧洲人类遗传学杂志(2004)12,29-37 。 doi:10.1038 / sj.ejhg.5201085 2003年12月3日在线发布

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