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人 RSPO1/R- 应答蛋白 1 在卵巢早期发育过程中表达,并增强β-连环蛋白信号通路。

Human RSPO1/R-spondin1 is expressed during early ovary development and augments β-catenin signaling.

机构信息

Medical Genetics, Molecular Medicine Department, S. Camillo-Forlanini Hospital, Sapienza-University of Rome, Rome, Italy.

出版信息

PLoS One. 2011 Jan 28;6(1):e16366. doi: 10.1371/journal.pone.0016366.

Abstract

Human testis development starts from around 42 days post conception with a transient wave of SRY expression followed by up-regulation of testis specific genes and a distinct set of morphological, paracrine and endocrine events. Although anatomical changes in the ovary are less marked, a distinct sub-set of ovary specific genes are also expressed during this time. The furin-domain containing peptide R-spondin1 (RSPO1) has recently emerged as an important regulator of ovary development through up-regulation of the WNT/β-catenin pathway to oppose testis formation. Here, we show that RSPO1 is upregulated in the ovary but not in the testis during critical early stages of gonad development in humans (between 6-9 weeks post conception), whereas the expression of the related genes WNT4 and CTNNB1 (encoding β catenin) is not significantly different between these tissues. Furthermore, reduced R-spondin1 function in the ovotestis of an individual (46,XX) with a RSPO1 mutation leads to reduced β-catenin protein and WNT4 mRNA levels, consistent with down regulation of ovarian pathways. Transfection of wild-type RSPO1 cDNA resulted in weak dose-dependent activation of a β-catenin responsive TOPFLASH reporter (1.8 fold maximum), whereas co-transfection of CTNNB1 (encoding β-catenin) with RSPO1 resulted in dose-dependent synergistic augmentation of this reporter (approximately 10 fold). Furthermore, R-spondin1 showed strong nuclear localization in several different cell lines. Taken together, these data show that R-spondin1 is upregulated during critical stages of early human ovary development and may function as a tissue-specific amplifier of β-catenin signaling to oppose testis determination.

摘要

人类睾丸发育始于受孕后约 42 天,此时会出现短暂的 SRY 表达波,随后是睾丸特异性基因的上调和一系列独特的形态、旁分泌和内分泌事件。尽管卵巢的解剖变化不那么明显,但在此期间,卵巢特异性基因的一个独特子集也会表达。富含 furin 结构域的肽 R-spondin1(RSPO1)最近被认为是卵巢发育的重要调节因子,通过上调 WNT/β-catenin 途径来拮抗睾丸形成。在这里,我们发现在人类性腺发育的关键早期阶段(受孕后 6-9 周),RSPO1 在卵巢中上调,但在睾丸中没有上调,而相关基因 WNT4 和 CTNNB1(编码β-连环蛋白)的表达在这些组织之间没有显著差异。此外,个体(46,XX)的卵睾中 R-spondin1 功能降低,RSPO1 突变导致β-catenin 蛋白和 WNT4 mRNA 水平降低,与卵巢途径的下调一致。转染野生型 RSPO1 cDNA 导致 β-catenin 反应性 TOPFLASH 报告基因的弱剂量依赖性激活(最大 1.8 倍),而 RSPO1 与 CTNNB1(编码β-连环蛋白)共转染导致该报告基因的剂量依赖性协同增强(约 10 倍)。此外,RSPO1 在几种不同的细胞系中表现出强烈的核定位。总之,这些数据表明 R-spondin1 在人类早期卵巢发育的关键阶段上调,并且可能作为组织特异性的β-catenin 信号放大器,拮抗睾丸决定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/355f/3030573/a9e5dbdaa1f5/pone.0016366.g001.jpg

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