Jeanne Fabian, Bernay Benoît, Sourdaine Pascal
Université de Caen Normandie, MNHN, SU, UA, CNRS, IRD, Laboratoire de Biologie des Organismes et Ecosystèmes Aquatiques (BOREA), UMR 8067, 14032 Caen cedex 5, France.
Université de Caen Normandie - Plateforme PROTEOGEN, US EMerode, 14032 Caen cedex 5, France.
J Proteome Res. 2023 Jul 7;22(7):2477-2492. doi: 10.1021/acs.jproteome.3c00206. Epub 2023 Jun 8.
Spermatogenesis is a highly specialized process of cell proliferation and differentiation leading to the production of spermatozoa from spermatogonial stem cells. Due to its testicular anatomy, is an interesting model to explore stage-based changes in proteins during spermatogenesis. The proteomes of four testicular zones corresponding to the germinative niche and to spermatocysts (cysts) with spermatogonia (zone A), cysts with spermatocytes (zone B), cysts with young spermatids (zone C), and cysts with late spermatids (zone D) have been analyzed by nanoLC-ESI-MS/MS. Gene ontology and KEGG annotations were also performed. A total of 3346 multiple protein groups were identified. Zone-specific protein analyses highlighted RNA-processing, chromosome-related processes, cilium organization, and cilium activity in zones A, D, C, and D, respectively. Analyses of proteins with zone-dependent abundance revealed processes related to cellular stress, ubiquitin-dependent degradation by the proteasome, post-transcriptional regulation, and regulation of cellular homeostasis. Our results also suggest that the roles of some proteins, such as ceruloplasmin, optineurin, the pregnancy zone protein, PA28β or the Culling-RING ligase 5 complex, as well as some uncharacterized proteins, during spermatogenesis could be further explored. Finally, the study of this shark species allows one to integrate these data in an evolutionary context of the regulation of spermatogenesis. Mass spectrometry data are freely accessible via iProX-integrated Proteome resources (https://www.iprox.cn/) for reuse purposes.
精子发生是一个高度专业化的细胞增殖和分化过程,导致从精原干细胞产生精子。由于其睾丸解剖结构,它是探索精子发生过程中基于阶段的蛋白质变化的一个有趣模型。通过纳升液相色谱-电喷雾串联质谱(nanoLC-ESI-MS/MS)分析了与生发微环境以及含有精原细胞的精囊肿(A区)、含有精母细胞的精囊肿(B区)、含有年轻精子细胞的精囊肿(C区)和含有晚期精子细胞的精囊肿(D区)相对应的四个睾丸区域的蛋白质组。还进行了基因本体论和京都基因与基因组百科全书(KEGG)注释。总共鉴定出3346个多个蛋白质组。区域特异性蛋白质分析分别突出了A区、D区、C区和D区中的RNA加工、染色体相关过程、纤毛组织和纤毛活动。对具有区域依赖性丰度的蛋白质的分析揭示了与细胞应激、蛋白酶体介导的泛素依赖性降解、转录后调控和细胞内稳态调控相关的过程。我们的结果还表明,一些蛋白质,如铜蓝蛋白、视黄醛结合蛋白、妊娠区蛋白、PA28β或Cullin-RING连接酶5复合物,以及一些未表征的蛋白质在精子发生过程中的作用值得进一步探索。最后,对这种鲨鱼物种的研究使人们能够在精子发生调控的进化背景下整合这些数据。质谱数据可通过iProX整合蛋白质组资源(https://www.iprox.cn/)免费获取以供重用。