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黏连蛋白亚基 RAD21L 在减数分裂联会中发挥作用,并表现出生育力的性别二态性。

The cohesin subunit RAD21L functions in meiotic synapsis and exhibits sexual dimorphism in fertility.

机构信息

Instituto de Biología Molecular y Celular del Cáncer (CSIC-USAL), Campus Miguel de Unamuno S/N, Salamanca, Spain.

出版信息

EMBO J. 2011 Jul 8;30(15):3091-105. doi: 10.1038/emboj.2011.222.

Abstract

The cohesin complex is a ring-shaped proteinaceous structure that entraps the two sister chromatids after replication until the onset of anaphase when the ring is opened by proteolytic cleavage of its α-kleisin subunit (RAD21 at mitosis and REC8 at meiosis) by separase. RAD21L is a recently identified α-kleisin that is present from fish to mammals and biochemically interacts with the cohesin subunits SMC1, SMC3 and STAG3. RAD21L localizes along the axial elements of the synaptonemal complex of mouse meiocytes. However, its existence as a bona fide cohesin and its functional role awaits in vivo validation. Here, we show that male mice lacking RAD21L are defective in full synapsis of homologous chromosomes at meiotic prophase I, which provokes an arrest at zygotene and leads to total azoospermia and consequently infertility. In contrast, RAD21L-deficient females are fertile but develop an age-dependent sterility. Thus, our results provide in vivo evidence that RAD21L is essential for male fertility and in females for the maintenance of fertility during natural aging.

摘要

着丝粒复合物是一种环形蛋白结构,在复制后捕获两条姐妹染色单体,直到有丝分裂中期的后期,环被分离酶对其α- kleisin 亚基(有丝分裂中的 RAD21 和减数分裂中的 REC8)的蛋白水解切割打开。RAD21L 是最近鉴定的一种α- kleisin,从鱼类到哺乳动物都存在,并且与着丝粒亚基 SMC1、SMC3 和 STAG3 在生化上相互作用。RAD21L 在小鼠减数分裂细胞的联会复合体的轴元件上定位。然而,它作为一个真正的着丝粒复合物的存在及其功能作用有待于体内验证。在这里,我们表明,缺乏 RAD21L 的雄性小鼠在减数分裂前期的同源染色体完全联会中存在缺陷,这导致在合线期停滞,并导致完全无精子症,从而导致不育。相比之下,RAD21L 缺陷的雌性是可育的,但会随着年龄的增长而出现不育。因此,我们的结果提供了体内证据,表明 RAD21L 对雄性生育能力以及对女性在自然衰老期间维持生育能力是必不可少的。

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