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XY oocytes of sex-reversed females with a Sry mutation deviate from the normal developmental process beyond the mitotic stage

机译:具有Sry突变的性逆转女性的XY卵母细胞偏离有丝分裂期之后的正常发育过程

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摘要

The fertility of sex-reversed XY female mice is severely impaired by a massive loss of oocytes and failure of meiotic progression. This phenomenon remains an outstanding mystery. We sought to determine the molecular etiology of XY oocyte dysfunction by generating sex-reversed females that bear genetic ablation of Sry, a vital sex determination gene, on an inbred C57BL/6 background. These mutant mice, termed XYsry− mutants, showed severe attrition of germ cells during fetal development, resulting in the depletion of ovarian germ cells prior to sexual maturation. Comprehensive transcriptome analyses of primordial germ cells (PGCs) and postnatal oocytes demonstrated that XYsry− females had deviated significantly from normal developmental processes during the stages of mitotic proliferation. The impaired proliferation of XYsry− PGCs was associated with aberrant β-catenin signaling and the excessive expression of transposable elements. Upon entry to the meiotic stage, XYsry− oocytes demonstrated extensive defects, including the impairment of crossover formation, the failure of primordial follicle maintenance, and no capacity for embryo development. Together, these results suggest potential molecular causes for germ cell disruption in sex-reversed female mice, thereby providing insights into disorders of sex differentiation in humans, such as “Swyer syndrome,” in which patients with an XY karyotype present as typical females and are infertile.
机译:性别相反的XY雌性小鼠的生育能力受到卵母细胞大量丢失和减数分裂进程失败的严重损害。这种现象仍然是一个突出的谜。我们试图通过在近交C57BL / 6背景上产生具有Sry(一种重要的性别决定基因)的基因消融的性别相反的女性来确定XY卵母细胞功能障碍的分子病因。这些被称为XY sry-突变体的突变小鼠在胎儿发育过程中显示出生殖细胞的严重磨损,从而导致性成熟之前卵巢生殖细胞的消耗。对原始生殖细胞(PGC)和产后卵母细胞进行的转录组综合分析表明,在有丝分裂增殖阶段,XY sry-雌性动物与正常发育过程明显不同。 XY sry- PGC的增殖受损与β-catenin信号异常和转座因子的过度表达有关。进入减数分裂阶段后,XY sry-卵母细胞表现出广泛的缺陷,包括交叉形成的损伤,原始卵泡维持的失败以及没有胚胎发育的能力。这些结果共同表明,性别反转的雌性小鼠生殖细胞破裂的潜在分子原因,从而提供了对人类性别分化疾病的见解,例如“ Swyer综合征”,其中具有XY核型的患者表现为典型的雌性,不育。

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