首页> 外文期刊>American journal of medical genetics, Part C. Seminars in medical genetics >A hypothesis: Could telomere length and/or epigenetic alterations contribute to infertility in females with Turner syndrome?
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A hypothesis: Could telomere length and/or epigenetic alterations contribute to infertility in females with Turner syndrome?

机译:一个假设:可以端粒长度和/或表观遗传改变有助于患有特纳综合征的女性的不孕症吗?

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One of the traits most consistently seen in females with Turner syndrome is premature ovarian insufficiency (POI). The biological mechanisms underlying the germ cell atresia that leads to infertility in most women with Turner syndrome are unclear. Given that telomeres are important for proper chromosomal pairing and other early steps in meiosis and oogenesis, one can conjecture that perturbations in telomere length and/or function might contribute to the POI associated with Turner syndrome. Also, one can speculate that epigenetic modifications that arise in response to asynapsis, as well as the resetting of the epigenome during embryogenesis, could contribute to monosomy X-related germ cell atresia. Moreover, errors in recombination-based DNA repair might contribute to the failure of cells lacking all, or a portion of, a second sex chromosome to successfully complete oogenesis. This article presents a review of the extant literature related to telomere length and/or epigenetic patterns associated with POI in females with a monosomy X complement (in humans and animal models). A goal of this review is to inspire researchers to use new technological advances to better characterize the components of the biological cascade leading to early germ cell loss in females with Turner syndrome.
机译:在具有特纳综合征的女性中最持续看到的特征之一是过早卵巢不足(POI)。生殖细胞患者的生物机制导致具有特纳综合征大多数女性的不孕症尚不清楚。鉴于端粒对染色体配对的适当染色体配对和其他早期步骤是重要的,可以猜测端粒长度和/或功能的扰动可能导致与变形综合征相关的POI。此外,可以推测响应于Asynapsis而产生的表观遗传修饰以及在胚胎发生期间重置外形内蛋白酶,可以有助于单体X相关的生殖细胞腹部。此外,基于重组的DNA修复中的误差可能导致缺乏全部或一部分的细胞失败,以成功完成oferyesis的第二个性染色体。本文介绍了与用单体X补品(在人类和动物模型中的女性中与Poi相关的端粒长度和/或表观遗传模式相关的现存文献。本综述的目标是激励研究人员利用新技术进步,以更好地表征生物级联的组成部分,导致具有特纳综合征的女性早期生殖细胞损失。

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