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首页> 外文期刊>Human Molecular Genetics >Expression profiling of purified mouse gonadal somatic cells during the critical time window of sex determination reveals novel candidate genes for human sexual dysgenesis syndromes
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Expression profiling of purified mouse gonadal somatic cells during the critical time window of sex determination reveals novel candidate genes for human sexual dysgenesis syndromes

机译:在性别决定的关键时间窗内,纯化的小鼠性腺体细胞的表达谱揭示了人类性发育不良综合征的新候选基因

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摘要

Despite the identification of SRY as the testis-determining gene in mammals, the genetic interactions controlling the earliest steps of male sex determination remain poorly understood. In particular, the molecular lesions underlying a high proportion of human XY gonadal dysgenesis, XX maleness and XX true hermaphroditism remain undiscovered. A number of screens have identified candidate genes whose expression is modulated during testis or ovary differentiation in mice, but these screens have used whole gonads, consisting of multiple cell types, or stages of gonadal development well beyond the time of sex determination. We describe here a novel reporter mouse line that expresses enhanced green fluorescent protein under the control of an Sf1 promoter fragment, marking Sertoli and granulosa cell precursors during the critical period of sex determination. These cells were purified from gonads of male and female transgenic embryos at 10.5 dpc (shortly after Sry transcription is activated) and 11.5 dpc (when Sox9 transcription begins), and their transcriptomes analysed using Affymetrix genome arrays. We identified 266 genes, including Dhh, Fgf9 and Ptgds, that were upregulated and 50 genes that were downregulated in 11.5 dpc male somatic gonad cells only, and 242 genes, including Fst, that were upregulated in 11.5 dpc female somatic gonad cells only. The majority of these genes are novel genes that lack identifiable homology, and several human orthologues were found to map to chromosomal loci implicated in disorders of sexual development. These genes represent an important resource with which to piece together the earliest steps of sex determination and gonad development, and provide new candidates for mutation searching in human sexual dysgenesis syndromes.
机译:尽管在哺乳动物中将SRY鉴定为决定睾丸的基因,但控制男性性别最早阶段的遗传相互作用仍然知之甚少。尤其是,尚未发现高比例的人类XY性腺发育不全,XX雄性和XX真正的雌雄同体分子损伤。许多筛选已经鉴定出候选基因,这些候选基因的表达在小鼠的睾丸或卵巢分化过程中得到调节,但是这些筛选使用了由多种细胞类型或性腺发育阶段组成的整个性腺,远远超过了性别确定的时间。我们在这里描述了一种新型的报告基因小鼠系,该系在Sf1启动子片段的控制下表达增强的绿色荧光蛋白,在性别决定的关键时期标记了Sertoli和颗粒细胞的前体。这些细胞从雄性和雌性转基因胚胎的性腺中分别以10.5 dpc(激活Sry转录后不久)和11.5 dpc(当Sox9转录开始时)纯化,并使用Affymetrix基因组芯片分析其转录组。我们鉴定了仅在11.5 dpc雄性体细胞性腺细胞中上调的266个基因(包括Dhh,Fgf9和Ptgds)和50个基因,仅在11.5 dpc雌性体细胞性腺细胞中上调了242个基因,包括Fst。这些基因中的大多数是缺乏可识别同源性的新基因,并且发现了几种人类直向同源物可定位到涉及性发育障碍的染色体基因座。这些基因代表了重要的资源,可用于将性别确定和性腺发育的最早步骤组合在一起,并为人类性发育不全综合征的突变搜索提供了新的候选人。

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  • 来源
    《Human Molecular Genetics》 |2006年第3期|417-431|共15页
  • 作者单位

    Division of Genetics and Developmental Biology and;

    ARC Centre of Excellence in Biotechnology and Development Institute for Molecular Bioscience The University of Queensland Brisbane Qld 4072 Australia;

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  • 正文语种 eng
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