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Sox9是前列腺发育所必需的。

Sox9 is required for prostate development.

作者信息

Thomsen Martin K, Butler Christopher M, Shen Michael M, Swain Amanda

机构信息

Section of Gene Function and Regulation, Institute of Cancer Research, 237 Fulham Road, London SW3 6JB, UK.

出版信息

Dev Biol. 2008 Apr 15;316(2):302-11. doi: 10.1016/j.ydbio.2008.01.030. Epub 2008 Feb 7.

Abstract

The mammalian prostate arises from the urogenital sinus and few factors have been identified to be important in the early stages of prostate development. In this study we show that the transcription factor Sox9 is expressed in the epithelia of all mouse prostatic lobes from the initial stages of their development. We used a conditional approach with mice expressing Cre recombinase under the control of Nkx3.1 regulatory sequences to delete Sox9 from the developing prostate. Mice with a prostate specific deletion of Sox9 showed a lack of ventral prostate development and abnormal anterior prostate differentiation. Analysis of these mutant animals revealed an early loss of expression of genes specific to the prostate epithelia such as Nkx3.1 and Shh and a marked reduction in proliferation in the ventral prostate but not in other lobes. Fgf signalling, through the MAPK pathway, has been shown to be important in prostate development and a lobe specific phenotype was reported for a prostate specific Fgfr2 mutant mouse model. Here we show that the levels of Fgfr2 and Sprouty2, a downstream target of Fgf signalling, were severely reduced in the ventral prostate of Sox9 mutant animals but not in other lobes. Prostate organ culture studies with a Mek inhibitor, U0126, and a Fgf receptor inhibitor, SU5402, indicate that the timing of expression of Cre in the mutant animals could account for the lobe specific phenotype in the Sox9 and Fgfr2 mutants. These studies imply that Sox9 is required for the early differentiation of the prostate bud epithelia.

摘要

哺乳动物的前列腺起源于泌尿生殖窦,目前已确定在前列腺发育早期起重要作用的因素较少。在本研究中,我们发现转录因子Sox9在小鼠所有前列腺叶上皮从发育初始阶段就开始表达。我们采用一种条件性方法,利用在Nkx3.1调控序列控制下表达Cre重组酶的小鼠,从发育中的前列腺中删除Sox9。前列腺特异性缺失Sox9的小鼠表现出腹侧前列腺发育缺失和前叶前列腺分化异常。对这些突变动物的分析显示,前列腺上皮特异性基因如Nkx3.1和Shh的表达早期丧失,腹侧前列腺的增殖明显减少,但其他叶未出现这种情况。通过MAPK途径的Fgf信号传导已被证明在前列腺发育中很重要,并且报道了前列腺特异性Fgfr2突变小鼠模型的叶特异性表型。在此我们表明,Fgfr2和Fgf信号传导的下游靶点Sprouty2的水平在Sox9突变动物的腹侧前列腺中严重降低,但在其他叶中未降低。用Mek抑制剂U0126和Fgf受体抑制剂SU5402进行的前列腺器官培养研究表明,突变动物中Cre表达的时间可以解释Sox9和Fgfr2突变体中叶特异性表型的原因。这些研究表明,Sox9是前列腺芽上皮早期分化所必需的。

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