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193个碱基对的Gsg2(Haspin)启动子区域双向且同步地调节生殖细胞特异性表达。

The 193-base pair Gsg2 (haspin) promoter region regulates germ cell-specific expression bidirectionally and synchronously.

作者信息

Tokuhiro Keizo, Miyagawa Yasushi, Yamada Shuichi, Hirose Mika, Ohta Hiroshi, Nishimune Yoshitake, Tanaka Hiromitsu

机构信息

Tanaka Project, Center for Advanced Science and Innovation, and Research Collaboration Center on Emerging and Re-emerging Infections, Osaka University, Osaka 565-0871, Japan.

出版信息

Biol Reprod. 2007 Mar;76(3):407-14. doi: 10.1095/biolreprod.106.055236. Epub 2006 Nov 22.

Abstract

Haspin is a unique protein kinase expressed predominantly in haploid male germ cells. The genomic structure of haspin (Gsg2) has revealed it to be intronless, and the entire transcription unit is in an intron of the integrin alphaE (Itgae) gene. Transcription occurs from a bidirectional promoter that also generates an alternatively spliced integrin alphaE-derived mRNA (Aed). In mice, the testis-specific alternative splicing of Aed is expressed bidirectionally downstream from the Gsg2 transcription initiation site, and a segment consisting of 26 bp transcribes both genomic DNA strands between Gsg2 and the Aed transcription initiation sites. To investigate the mechanisms for this unique gene regulation, we cloned and characterized the Gsg2 promoter region. The 193-bp genomic fragment from the 5' end of the Gsg2 and Aed genes, fused with EGFP and DsRed genes, drove the expression of both proteins in haploid germ cells of transgenic mice. This promoter element contained only a GC-rich sequence, and not the previously reported DNA sequences known to bind various transcription factors--with the exception of E2F1, TCFAP2A1 (AP2), and SP1. Here, we show that the 193-bp DNA sequence is sufficient for the specific, bidirectional, and synchronous expression in germ cells in the testis. We also demonstrate the existence of germ cell nuclear factors specifically bound to the promoter sequence. This activity may be regulated by binding to the promoter sequence with germ cell-specific nuclear complex(es) without regulation via DNA methylation.

摘要

Haspin是一种独特的蛋白激酶,主要在单倍体雄性生殖细胞中表达。Haspin(Gsg2)的基因组结构显示它没有内含子,整个转录单元位于整合素αE(Itgae)基因的一个内含子中。转录从一个双向启动子开始,该启动子还产生一种选择性剪接的整合素αE衍生的mRNA(Aed)。在小鼠中,Aed的睾丸特异性选择性剪接在Gsg2转录起始位点下游双向表达,并且由26 bp组成的一段序列转录Gsg2和Aed转录起始位点之间的两条基因组DNA链。为了研究这种独特基因调控的机制,我们克隆并鉴定了Gsg2启动子区域。来自Gsg2和Aed基因5'端的193 bp基因组片段与EGFP和DsRed基因融合,驱动这两种蛋白在转基因小鼠的单倍体生殖细胞中表达。该启动子元件仅包含一个富含GC的序列,除了E2F1、TCFAP2A1(AP2)和SP1外,不包含先前报道的已知可结合各种转录因子的DNA序列。在这里,我们表明193 bp的DNA序列足以在睾丸生殖细胞中实现特异性、双向和同步表达。我们还证明了存在与启动子序列特异性结合的生殖细胞核因子。这种活性可能通过与生殖细胞特异性核复合物结合到启动子序列来调节,而不受DNA甲基化的调控。

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