Borgmann Jennifer, Tüttelmann Frank, Dworniczak Bernd, Röpke Albrecht, Song Hye-Won, Kliesch Sabine, Wilkinson Miles F, Laurentino Sandra, Gromoll Jörg
Centre of Reproductive Medicine and Andrology, University of Münster, Münster, Germany.
Institute of Human Genetics, Münster, Germany.
Hum Mol Genet. 2016 Nov 15;25(22):4898-4910. doi: 10.1093/hmg/ddw313.
The X-linked reproductive homeobox (RHOX) gene cluster encodes transcription factors preferentially expressed in reproductive tissues. This gene cluster has important roles in male fertility based on phenotypic defects of Rhox-mutant mice and the finding that aberrant RHOX promoter methylation is strongly associated with abnormal human sperm parameters. However, little is known about the molecular mechanism of RHOX function in humans. Using gene expression profiling, we identified genes regulated by members of the human RHOX gene cluster. Some genes were uniquely regulated by RHOXF1 or RHOXF2/2B, while others were regulated by both of these transcription factors. Several of these regulated genes encode proteins involved in processes relevant to spermatogenesis; e.g. stress protection and cell survival. One of the target genes of RHOXF2/2B is RHOXF1, suggesting cross-regulation to enhance transcriptional responses. The potential role of RHOX in human infertility was addressed by sequencing all RHOX exons in a group of 250 patients with severe oligozoospermia. This revealed two mutations in RHOXF1 (c.515G > A and c.522C > T) and four in RHOXF2/2B (-73C > G, c.202G > A, c.411C > T and c.679G > A), of which only one (c.202G > A) was found in a control group of men with normal sperm concentration. Functional analysis demonstrated that c.202G > A and c.679G > A significantly impaired the ability of RHOXF2/2B to regulate downstream genes. Molecular modelling suggested that these mutations alter RHOXF2/F2B protein conformation. By combining clinical data with in vitro functional analysis, we demonstrate how the X-linked RHOX gene cluster may function in normal human spermatogenesis and we provide evidence that it is impaired in human male fertility.
X连锁生殖同源框(RHOX)基因簇编码在生殖组织中优先表达的转录因子。基于Rhox突变小鼠的表型缺陷以及异常的RHOX启动子甲基化与人类精子参数异常密切相关这一发现,该基因簇在男性生育中具有重要作用。然而,关于RHOX在人类中功能的分子机制知之甚少。利用基因表达谱分析,我们鉴定了受人类RHOX基因簇成员调控的基因。一些基因仅受RHOXF1或RHOXF2/2B调控,而其他基因则受这两种转录因子共同调控。这些受调控基因中的几个编码参与精子发生相关过程的蛋白质;例如应激保护和细胞存活。RHOXF2/2B的一个靶基因是RHOXF1,提示存在交叉调控以增强转录反应。通过对一组250例严重少精子症患者的所有RHOX外显子进行测序,探讨了RHOX在人类不育中的潜在作用。这揭示了RHOXF1中的两个突变(c.515G>A和c.522C>T)以及RHOXF2/2B中的四个突变(-73C>G、c.202G>A、c.411C>T和c.679G>A),其中只有一个(c.202G>A)在精子浓度正常的男性对照组中被发现。功能分析表明,c.202G>A和c.679G>A显著损害了RHOXF2/2B调控下游基因的能力。分子建模表明这些突变改变了RHOXF2/F2B蛋白构象。通过将临床数据与体外功能分析相结合,我们证明了X连锁RHOX基因簇在正常人类精子发生中的作用方式,并提供证据表明其在人类男性生育中受损。