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小鼠基因组中以簇状形式组织的卵母细胞特异性基因的鉴定、表征及宏基因组分析。

Identification, characterization and metagenome analysis of oocyte-specific genes organized in clusters in the mouse genome.

作者信息

Paillisson Amélie, Dadé Sébastien, Callebaut Isabelle, Bontoux Martine, Dalbiès-Tran Rozenn, Vaiman Daniel, Monget Philippe

机构信息

Physiologie de la Reproduction et des Comportements, UMR 6175 INRA-CNRS-Université François Rabelais de Tours-Haras Nationaux, 37380 Nouzilly, France.

出版信息

BMC Genomics. 2005 May 20;6:76. doi: 10.1186/1471-2164-6-76.

Abstract

BACKGROUND

Genes specifically expressed in the oocyte play key roles in oogenesis, ovarian folliculogenesis, fertilization and/or early embryonic development. In an attempt to identify novel oocyte-specific genes in the mouse, we have used an in silico subtraction methodology, and we have focused our attention on genes that are organized in genomic clusters.

RESULTS

In the present work, five clusters have been studied: a cluster of thirteen genes characterized by an F-box domain localized on chromosome 9, a cluster of six genes related to T-cell leukaemia/lymphoma protein 1 (Tcl1) on chromosome 12, a cluster composed of a SPErm-associated glutamate (E)-Rich (Speer) protein expressed in the oocyte in the vicinity of four unknown genes specifically expressed in the testis on chromosome 14, a cluster composed of the oocyte secreted protein-1 (Oosp-1) gene and two Oosp-related genes on chromosome 19, all three being characterized by a partial N-terminal zona pellucida-like domain, and another small cluster of two genes on chromosome 19 as well, composed of a TWIK-Related spinal cord K+ channel encoding-gene, and an unknown gene predicted in silico to be testis-specific. The specificity of expression was confirmed by RT-PCR and in situ hybridization for eight and five of them, respectively. Finally, we showed by comparing all of the isolated and clustered oocyte-specific genes identified so far in the mouse genome, that the oocyte-specific clusters are significantly closer to telomeres than isolated oocyte-specific genes are.

CONCLUSION

We have studied five clusters of genes specifically expressed in female, some of them being also expressed in male germ-cells. Moreover, contrarily to non-clustered oocyte-specific genes, those that are organized in clusters tend to map near chromosome ends, suggesting that this specific near-telomere position of oocyte-clusters in rodents could constitute an evolutionary advantage. Understanding the biological benefits of such an organization as well as the mechanisms leading to a specific oocyte expression in these clusters now requires further investigation.

摘要

背景

在卵母细胞中特异性表达的基因在卵子发生、卵泡发生、受精和/或早期胚胎发育中起关键作用。为了在小鼠中鉴定新的卵母细胞特异性基因,我们使用了电子消减方法,并将注意力集中在基因组簇中组织的基因上。

结果

在本研究中,研究了五个基因簇:一个由位于9号染色体上的具有F-box结构域的13个基因组成的基因簇,一个位于12号染色体上与T细胞白血病/淋巴瘤蛋白1(Tcl1)相关的6个基因组成的基因簇,一个由在卵母细胞中表达的精子相关谷氨酸(E)富集(Speer)蛋白组成的基因簇,该蛋白位于14号染色体上四个在睾丸中特异性表达的未知基因附近,一个由卵母细胞分泌蛋白-1(Oosp-1)基因和两个位于19号染色体上的Oosp相关基因组成的基因簇,这三个基因均具有部分N端透明带样结构域,以及19号染色体上的另一个由两个基因组成的小基因簇,由一个TWIK相关脊髓钾通道编码基因和一个电子预测为睾丸特异性的未知基因组成。分别通过RT-PCR和原位杂交对其中8个和5个基因的表达特异性进行了证实。最后,通过比较迄今为止在小鼠基因组中鉴定的所有分离和聚类的卵母细胞特异性基因,我们发现卵母细胞特异性基因簇比分离的卵母细胞特异性基因更靠近端粒。

结论

我们研究了在雌性中特异性表达的五个基因簇,其中一些也在雄性生殖细胞中表达。此外,与非聚类的卵母细胞特异性基因相反,那些聚类的基因倾向于定位在染色体末端附近,这表明啮齿动物中卵母细胞簇的这种特定近端粒位置可能构成一种进化优势。现在需要进一步研究了解这种组织的生物学益处以及导致这些基因簇中卵母细胞特异性表达的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfe7/1166550/353b0039b1f7/1471-2164-6-76-1.jpg

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