首页> 美国卫生研究院文献>Molecular and Cellular Biology >The Expression Profile of the Major Mouse SPO11 Isoforms Indicates that SPO11β Introduces Double Strand Breaks and Suggests that SPO11α Has an Additional Role in Prophase in both Spermatocytes and Oocytes
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The Expression Profile of the Major Mouse SPO11 Isoforms Indicates that SPO11β Introduces Double Strand Breaks and Suggests that SPO11α Has an Additional Role in Prophase in both Spermatocytes and Oocytes

机译:主要小鼠SPO11亚型的表达谱表明SPO11β引入了双链断裂并暗示SPO11α在精母细胞和卵母细胞的前期中具有额外的作用。

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摘要

Both in mice and humans, two major SPO11 isoforms are generated by alternative splicing: SPO11α (exon 2 skipped) and SPO11β. Thus, the alternative splicing event must have emerged before the mouse and human lineages diverged and was maintained during 90 million years of evolution, arguing for an essential role for both isoforms. Here we demonstrate that developmental regulation of alternative splicing at the Spo11 locus governs the sequential expression of SPO11 isoforms in male meiotic prophase. Protein quantification in juvenile mice and in prophase mutants indicates that early spermatocytes synthesize primarily SPO11β. Estimation of the number of SPO11 dimers (ββ/αβ/αα) in mutants in which spermatocytes undergo a normal number of double strand breaks but arrest in midprophase due to inefficient repair argues for a role for SPO11β-containing dimers in introducing the breaks in leptonema. Expression kinetics in males suggested a role for SPO11α in pachytene/diplotene spermatocytes. Nevertheless, we found that both alternative transcripts can be detected in oocytes throughout prophase I, arguing against a male-specific function for this isoform. Altogether, our data support a role for SPO11α in mid- to late prophase, presumably acting as a topoisomerase, that would be conserved in male and female meiocytes.
机译:在小鼠和人类中,通过选择性剪接均产生两种主要的SPO11亚型:SPO11α(跳过第2外显子)和SPO11β。因此,替代的剪接事件必须在小鼠和人类谱系分化之前就已经出现,并在9000万年的进化过程中得以维持,并认为这两种同工型都起着至关重要的作用。在这里,我们证明了在Spo11基因座上选择性剪接的发育调控控制了雄性减数分裂前期SPO11亚型的顺序表达。幼年小鼠和前期突变体中的蛋白质定量表明,早期的精母细胞主要合成SPO11β。估计其中精子细胞发生正常双链断裂但由于修复效率低下而停滞在中期的突变体中,SPO11二聚体(ββ/αβ/αα)的数量表明,含SPO11β的二聚体在引入瘦素瘤中的作用。男性中的表达动力学表明,SPO11α在粗线/双线烯精细胞中起作用。然而,我们发现在整个前期I的卵母细胞中都可以检测到这两种替代转录本,这与该同工型的雄性特异性功能有关。总而言之,我们的数据支持SPO11α在前中期到晚期的作用,大概是拓扑异构酶,在男性和女性的减数分裂细胞中都是保守的。

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