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两个 RNA 结合蛋白,ADAD2 和 RNF17,相互作用形成了一种具有发育依赖性细胞器关联的新型减数分裂生殖细胞颗粒的异质群体。

Two RNA binding proteins, ADAD2 and RNF17, interact to form a heterogeneous population of novel meiotic germ cell granules with developmentally dependent organelle association.

机构信息

Department of Animal Science, Rutgers, The State University of New Jersey, New Brunswick, New Jersey, United States of America.

出版信息

PLoS Genet. 2023 Jul 10;19(7):e1010519. doi: 10.1371/journal.pgen.1010519. eCollection 2023 Jul.

Abstract

Mammalian male germ cell differentiation relies on complex RNA biogenesis events, many of which occur in non-membrane bound organelles termed RNA germ cell granules that are rich in RNA binding proteins (RBPs). Though known to be required for male germ cell differentiation, we understand little of the relationships between the numerous granule subtypes. ADAD2, a testis specific RBP, is required for normal male fertility and forms a poorly characterized granule in meiotic germ cells. This work aimed to understand the role of ADAD2 granules in male germ cell differentiation by clearly defining their molecular composition and relationship to other granules. Biochemical analyses identified RNF17, a testis specific RBP that forms meiotic male germ cell granules, as an ADAD2-interacting protein. Phenotypic analysis of Adad2 and Rnf17 mutants identified a rare post-meiotic chromatin defect, suggesting shared biological roles. ADAD2 and RNF17 were found to be dependent on one another for granularization and together form a previously unstudied set of germ cell granules. Based on co-localization studies with well-characterized granule RBPs and organelle-specific markers, a subset of the ADAD2-RNF17 granules are found to be associated with the intermitochondrial cement and piRNA biogenesis. In contrast, a second, morphologically distinct population of ADAD2-RNF17 granules co-localized with the translation regulators NANOS1 and PUM1, along with the molecular chaperone PDI. These large granules form a unique funnel-shaped structure that displays distinct protein subdomains and is tightly associated with the endoplasmic reticulum. Developmental studies suggest the different granule populations represent different phases of a granule maturation process. Lastly, a double Adad2-Rnf17 mutant model suggests the interaction between ADAD2 and RNF17, as opposed to loss of either, is the likely driver of the Adad2 and Rnf17 mutant phenotypes. These findings shed light on the relationship between germ cell granule pools and define new genetic approaches to their study.

摘要

哺乳动物雄性生殖细胞的分化依赖于复杂的 RNA 生物发生事件,其中许多发生在富含 RNA 结合蛋白 (RBPs) 的非膜结合细胞器中,称为 RNA 生殖细胞颗粒。虽然已知 ADAD2 是雄性生殖细胞分化所必需的,但我们对众多颗粒亚型之间的关系知之甚少。ADAD2 是一种睾丸特异性 RBP,是正常雄性生育力所必需的,并在减数分裂生殖细胞中形成一种特征描述较差的颗粒。这项工作旨在通过明确定义其分子组成及其与其他颗粒的关系,来了解 ADAD2 颗粒在雄性生殖细胞分化中的作用。生化分析鉴定出 RNF17,一种形成减数分裂雄性生殖细胞颗粒的睾丸特异性 RBP,是 ADAD2 的相互作用蛋白。Adad2 和 Rnf17 突变体的表型分析确定了一种罕见的减数后染色质缺陷,表明它们具有共同的生物学作用。ADAD2 和 RNF17 被发现彼此依赖于颗粒化,并共同形成一组以前未研究过的生殖细胞颗粒。根据与特征明确的颗粒 RBP 和细胞器特异性标记物的共定位研究,发现 ADAD2-RNF17 颗粒的一部分与线粒体间水泥和 piRNA 生物发生有关。相比之下,形态上不同的 ADAD2-RNF17 颗粒的第二部分与翻译调节剂 NANOS1 和 PUM1 以及分子伴侣 PDI 共定位。这些大颗粒形成一种独特的漏斗状结构,显示出不同的蛋白质亚结构域,并与内质网紧密相关。发育研究表明,不同的颗粒群体代表颗粒成熟过程的不同阶段。最后,Adad2-Rnf17 双突变模型表明,ADAD2 和 RNF17 之间的相互作用,而不是两者的缺失,可能是 Adad2 和 Rnf17 突变表型的驱动因素。这些发现揭示了生殖细胞颗粒池之间的关系,并定义了研究它们的新遗传方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/697c/10359003/209d3310fc1b/pgen.1010519.g001.jpg

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