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对缺乏Nobox的新生小鼠卵巢进行微阵列分析。

Microarray analyses of newborn mouse ovaries lacking Nobox.

作者信息

Choi Youngsok, Qin Yingying, Berger Michael F, Ballow Daniel J, Bulyk Martha L, Rajkovic Aleksandar

机构信息

Department of Obstetrics and Gynecology, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Biol Reprod. 2007 Aug;77(2):312-9. doi: 10.1095/biolreprod.107.060459. Epub 2007 May 9.

Abstract

Nobox is a homeobox gene expressed in oocytes and critical in oogenesis. Nobox deficiency leads to rapid loss of postnatal oocytes. Early oocyte differentiation is poorly understood. We hypothesized that lack of Nobox perturbs global expression of genes preferentially expressed in oocytes as well as microRNAs. We compared Nobox knockout and wild-type ovaries using Affymetrix 430 2.0 microarray platform. We discovered that 28 (74%) of 38 of the genes downregulated more than 5-fold in the absence of Nobox were preferentially expressed in oocytes, whereas only 5 (15%) of 33 genes upregulated more than 5-fold in the absence of Nobox were preferentially expressed in oocytes. Protein-binding microarray helped identify nucleotide motifs that NOBOX binds and that several downregulated genes contain within putative promoter regions. MicroRNA population in newborn ovaries deficient of Nobox was largely unaffected. Genes whose proteins are predicted to be secreted but were previously unknown to be significantly expressed in early oogenesis were downregulated in Nobox knockouts and included astacin-like metalloendopeptidase (Astl), Jagged 1 (Jag1), oocyte-secreted protein 1 (Oosp1), fetuin beta (Fetub), and R-spondin 2 (Rspo2). In addition, pluripotency-associated genes Pou5f1 and Sall4 are drastically downregulated in Nobox-deficient ovaries, whereas testes-determining gene Dmrt1 is overexpressed. Our findings indicate that Nobox is likely an activator of oocyte-specific gene expression and suggest that the oocyte plays an important role in suppressing expression of male-determining genes, such as Dmrt1.

摘要

Nobox是一种在卵母细胞中表达且在卵子发生过程中起关键作用的同源框基因。Nobox基因缺陷会导致出生后卵母细胞迅速丢失。早期卵母细胞分化的机制尚不清楚。我们推测,Nobox的缺失会扰乱在卵母细胞以及微小RNA中优先表达的基因的整体表达。我们使用Affymetrix 430 2.0微阵列平台比较了Nobox基因敲除小鼠和野生型小鼠的卵巢。我们发现,在没有Nobox的情况下下调超过5倍的38个基因中,有28个(74%)在卵母细胞中优先表达,而在没有Nobox的情况下上调超过5倍的33个基因中,只有5个(15%)在卵母细胞中优先表达。蛋白质结合微阵列有助于识别NOBOX结合的核苷酸基序,以及几个下调基因在假定启动子区域内包含的基序。缺乏Nobox的新生小鼠卵巢中的微小RNA群体基本未受影响。其蛋白质预计会分泌但以前未知在早期卵子发生中显著表达的基因在Nobox基因敲除小鼠中下调,包括类astacin金属内肽酶(Astl)、Jagged 1(Jag1)、卵母细胞分泌蛋白1(Oosp1)、胎球蛋白β(Fetub)和R-spondin 2(Rspo2)。此外,多能性相关基因Pou5f1和Sall4在缺乏Nobox的卵巢中大幅下调,而睾丸决定基因Dmrt1则过度表达。我们的研究结果表明,Nobox可能是卵母细胞特异性基因表达的激活剂,并表明卵母细胞在抑制雄性决定基因(如Dmrt1)的表达中起重要作用。

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