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RFX2是小鼠精子发生过程中A-MYB调控的下游候选放大因子。

RFX2 is a candidate downstream amplifier of A-MYB regulation in mouse spermatogenesis.

作者信息

Horvath Gary C, Kistler Malathi K, Kistler W Stephen

机构信息

Department of Chemistry and Biochemistry, University of South Carolina, Columbia, SC 29208, USA.

出版信息

BMC Dev Biol. 2009 Dec 9;9:63. doi: 10.1186/1471-213X-9-63.

Abstract

BACKGROUND

Mammalian spermatogenesis involves formation of haploid cells from the male germline and then a complex morphological transformation to generate motile sperm. Focusing on meiotic prophase, some tissue-specific transcription factors are known (A-MYB) or suspected (RFX2) to play important roles in modulating gene expression in pachytene spermatocytes. The current work was initiated to identify both downstream and upstream regulatory connections for Rfx2.

RESULTS

Searches of pachytene up-regulated genes identified high affinity RFX binding sites (X boxes) in promoter regions of several new genes: Adam5, Pdcl2, and Spag6. We confirmed a strong promoter-region X-box for Alf, a germ cell-specific variant of general transcription factor TFIIA. Using Alf as an example of a target gene, we showed that its promoter is stimulated by RFX2 in transfected cells and used ChIP analysis to show that the promoter is occupied by RFX2 in vivo. Turning to upstream regulation of the Rfx2 promoter, we identified a cluster of three binding sites (MBS) for the MYB family of transcription factors. Because testis is one of the few sites of A-myb expression, and because spermatogenesis arrests in pachytene in A-myb knockout mice, the MBS cluster implicates Rfx2 as an A-myb target. Electrophoretic gel-shift, ChIP, and co-transfection assays all support a role for these MYB sites in Rfx2 expression. Further, Rfx2 expression was virtually eliminated in A-myb knockout testes. Immunohistology on testis sections showed that A-MYB expression is up-regulated only after pachytene spermatocytes have clearly moved away from the tubule wall, which correlates with onset of RFX2 expression, whereas B-MYB expression, by contrast, is prevalent only in earlier spermatocytes and spermatogonia.

CONCLUSION

With an expanding list of likely target genes, RFX2 is potentially an important transcriptional regulator in pachytene spermatocytes. Rfx2 itself is a good candidate to be regulated by A-MYB, which is essential for meiotic progression. If Alf is a genuine RFX2 target, then A-myb, Rfx2, and Alf may form part of a transcriptional network that is vital for completion of meiosis and preparation for post-meiotic differentiation.

摘要

背景

哺乳动物精子发生过程包括雄性生殖系单倍体细胞的形成,随后是产生可游动精子的复杂形态转变。聚焦于减数分裂前期,已知一些组织特异性转录因子(A-MYB)或疑似转录因子(RFX2)在调控粗线期精母细胞基因表达中发挥重要作用。开展当前这项研究是为了确定Rfx2的下游和上游调控联系。

结果

对粗线期上调基因的搜索在几个新基因(Adam5、Pdcl2和Spag6)的启动子区域鉴定出高亲和力RFX结合位点(X盒)。我们证实了Alf(通用转录因子TFIIA的生殖细胞特异性变体)的启动子区域存在一个强X盒。以Alf作为靶基因的示例,我们表明其启动子在转染细胞中受RFX2刺激,并通过染色质免疫沉淀分析表明该启动子在体内被RFX2占据。转向Rfx2启动子的上游调控,我们鉴定出转录因子MYB家族的三个结合位点(MBS)簇。由于睾丸是A-myb表达的少数位点之一,并且由于A-myb基因敲除小鼠的精子发生在粗线期停滞,MBS簇表明Rfx2是A-myb的靶标。电泳凝胶迁移、染色质免疫沉淀和共转染分析均支持这些MYB位点在Rfx2表达中的作用。此外,Rfx2表达在A-myb基因敲除睾丸中几乎完全消除。睾丸切片的免疫组织学显示,仅在粗线期精母细胞明显远离管壁后A-MYB表达才上调,这与RFX2表达的开始相关,而相比之下,B-MYB表达仅在早期精母细胞和精原细胞中普遍存在。

结论

随着可能的靶基因列表不断增加,RFX2可能是粗线期精母细胞中一种重要的转录调节因子。Rfx2本身是受A-MYB调控的良好候选者,A-MYB对减数分裂进程至关重要。如果Alf是真正的RFX2靶标,那么A-myb、Rfx2和Alf可能构成对减数分裂完成和减数分裂后分化准备至关重要的转录网络的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a5f/2797782/3080439f0dca/1471-213X-9-63-1.jpg

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