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NANOS3 function in human germ cell development.

机译:NANOS3在人类生殖细胞发育中起作用。

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摘要

Human infertility is common and frequently linked to poor germ cell development. Yet, human germ cell development is poorly understood, at least in part due to the inaccessibility of germ cells to study especially during fetal development. Here, we explored the function of a highly conserved family of genes, the NANOS genes, in the differentiation of human germ cells from human embryonic stem cells. We observed that NANOS-1, -2 and -3 mRNAs and proteins were expressed in human gonads. We also noted that NANOS3 was expressed in germ cells throughout spermatogenesis and oogenesis and thus, focused further efforts on this family member. NANOS3 expression was highest in human germ cell nuclei where the protein co-localized with chromosomal DNA during mitosis/meiosis. Reduced expression of NANOS3 (via morpholinos or short hairpin RNA) resulted in a reduction in germ cell numbers and decreased expression of germ cell-intrinsic genes required for the maintenance of pluripotency and meiotic initiation and progression. These data provide the first direct experimental evidence that NANOS3 functions in human germ cell development; indeed, NANOS3 is now one of just two genes that has been directly shown to function in germ cell development across diverse species from flies, worms, frogs and mice to humans [the other is BOULE, a member of the Deleted in Azoospermia (DAZ) gene family]. Findings may contribute to our understanding of the basic biology of human germ cell development and may provide clinical insights regarding infertility.
机译:人类不育是普遍现象,通常与生殖细胞发育不良有关。然而,人们对生殖细胞的发育了解甚少,至少部分原因是生殖细胞难以研究,尤其是在胎儿发育过程中。在这里,我们探索了一个高度保守的基因家族,即NANOS基因,在从人类胚胎干细胞分化人类生殖细胞中的功能。我们观察到NANOS-1,-2和-3 mRNA和蛋白质在人的性腺中表达。我们还注意到,NANOS3在整个精子发生和卵子发生过程中都在生殖细胞中表达,因此,对该家族成员进行了进一步的努力。 NANOS3表达在人类生殖细胞核中最高,该蛋白质在有丝分裂/减数分裂过程中与染色体DNA共定位。 NANOS3的表达减少(通过吗啉代或短发夹RNA)导致生殖细胞数量减少,并且维持多能性和减数分裂起始和进展所需的生殖细胞内在基因表达降低。这些数据提供了第一个直接的实验证据,证明NANOS3在人类生殖细胞发育中起作用。的确,NANOS3现在是两个基因之一,已被直接证明可在各种物种的生殖细胞发育中发挥作用,这些物种从苍蝇,蠕虫,青蛙和小鼠到人类[另一个是BOULE,无精子症(DAZ)的成员基因家族]。这些发现可能有助于我们理解人类生殖细胞发育的基本生物学,并可能提供有关不育症的临床见解。

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