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Dpy19l2 的缺失,一种新的核内层膜蛋白,通过阻止顶体与核的锚定导致小鼠产生圆头精子。

Absence of Dpy19l2, a new inner nuclear membrane protein, causes globozoospermia in mice by preventing the anchoring of the acrosome to the nucleus.

机构信息

Université Joseph Fourier, Grenoble F-38000, France.

出版信息

Development. 2012 Aug;139(16):2955-65. doi: 10.1242/dev.077982. Epub 2012 Jul 4.

DOI:10.1242/dev.077982
PMID:22764053
Abstract

Sperm-head elongation and acrosome formation, which take place during the last stages of spermatogenesis, are essential to produce competent spermatozoa that are able to cross the oocyte zona pellucida and to achieve fertilization. During acrosome biogenesis, acrosome attachment and spreading over the nucleus are still poorly understood and to date no proteins have been described to link the acrosome to the nucleus. We recently demonstrated that a deletion of DPY19L2, a gene coding for an uncharacterized protein, was responsible for a majority of cases of type I globozoospermia, a rare cause of male infertility that is characterized by the exclusive production of round-headed acrosomeless spermatozoa. Here, using Dpy19l2 knockout mice, we describe the cellular function of the Dpy19l2 protein. We demonstrate that the protein is expressed predominantly in spermatids with a very specific localization restricted to the inner nuclear membrane facing the acrosomal vesicle. We show that the absence of Dpy19l2 leads to the destabilization of both the nuclear dense lamina (NDL) and the junction between the acroplaxome and the nuclear envelope. Consequently, the acrosome and the manchette fail to be linked to the nucleus leading to the disruption of vesicular trafficking, failure of sperm nuclear shaping and eventually to the elimination of the unbound acrosomal vesicle. Finally, we show for the first time that Dpy19l3 proteins are also located in the inner nuclear envelope, therefore implying that the Dpy19 proteins constitute a new family of structural transmembrane proteins of the nuclear envelope.

摘要

精子头部伸长和顶体形成发生在精子发生的最后阶段,对于产生能够穿过卵母细胞透明带并实现受精的有能力的精子是必不可少的。在顶体生物发生过程中,顶体附着和覆盖核的过程仍知之甚少,迄今为止,还没有描述将顶体与核连接的蛋白质。我们最近证明,DPY19L2 基因缺失(该基因编码一种未鉴定的蛋白质)是 I 型圆头无顶体精子症的主要原因,这是一种罕见的男性不育症,其特征是仅产生圆形无头顶体的精子。在这里,我们使用 Dpy19l2 敲除小鼠描述了 Dpy19l2 蛋白的细胞功能。我们证明该蛋白主要在精母细胞中表达,其特异性定位仅限于面向顶体小泡的核内膜。我们表明,Dpy19l2 的缺失导致核致密层 (NDL) 和质膜与核膜连接处的不稳定。因此,顶体和顶体板无法与核连接,导致囊泡运输中断、精子核形态形成失败,最终导致未结合的顶体小泡被消除。最后,我们首次表明 Dpy19l3 蛋白也位于核内膜中,因此暗示 Dpy19 蛋白构成核膜的新的跨膜结构蛋白家族。

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1
Absence of Dpy19l2, a new inner nuclear membrane protein, causes globozoospermia in mice by preventing the anchoring of the acrosome to the nucleus.Dpy19l2 的缺失,一种新的核内层膜蛋白,通过阻止顶体与核的锚定导致小鼠产生圆头精子。
Development. 2012 Aug;139(16):2955-65. doi: 10.1242/dev.077982. Epub 2012 Jul 4.
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Dynamics of Sun5 localization during spermatogenesis in wild type and Dpy19l2 knock-out mice indicates that Sun5 is not involved in acrosome attachment to the nuclear envelope.野生型和Dpy19l2基因敲除小鼠精子发生过程中Sun5定位的动态变化表明,Sun5不参与顶体与核膜的附着。
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Subcellular localization of phospholipase Cζ in human sperm and its absence in DPY19L2-deficient sperm are consistent with its role in oocyte activation.磷脂酶Cζ在人类精子中的亚细胞定位及其在DPY19L2缺陷精子中的缺失与它在卵母细胞激活中的作用相符。
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[DPY19L2 gene and globozoospermia: an update].[DPY19L2基因与圆头精子症:最新进展]
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A recurrent deletion of DPY19L2 causes infertility in man by blocking sperm head elongation and acrosome formation.一个重复的 DPY19L2 缺失会导致男性不育,因为它会阻止精子头部的伸长和顶体的形成。
Am J Hum Genet. 2011 Mar 11;88(3):351-61. doi: 10.1016/j.ajhg.2011.02.007.

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