Ma Xin, Wang Meng, Wang Jinglei, Zhang Qian, Pu Sisi, Wang Rui, Yu Sijiu, Wang Libin, Pan Yangyang
College of Veterinary Medicine, Gansu Agricultural University, Lanzhou 730070, China.
Gansu Province Livestock Embryo Engineering Research Center, Lanzhou 730070, China.
Animals (Basel). 2023 Jun 23;13(13):2085. doi: 10.3390/ani13132085.
The aim of this study was to investigate protein regulation at different time points during the in vitro maturation of yak oocytes. Yak oocytes at GV, MI, and MII stages were collected during in vitro maturation, and differential proteomics sequencing was performed using iTRAQ technology. GO functional classification indicated that the differential proteins were closely associated with biological processes such as "metabolic processes", and molecular events such as "binding" molecular-function-related categories were active. KOG analysis showed that energy-metabolism-related activities were vigorous during oocyte development from the GV phase to MI phase, and genetic material preparation activities were more active when oocytes developed from the MI stage to MII stage. KEGG pathway analysis showed that the PPAR metabolic pathway, Hippo signaling pathway, and ECM-receptor interaction and metabolic pathway were enriched from the GV to the MI stages. The PI3K-Akt, TGF-β, and phagosome pathways were enriched from the MI stage to the MII stage. These results indicate that transient dynamic changes occurred in the proteome during the maturation of yak oocytes, and the physiological functions mediated by these were also different. The accurate identification of the differential proteins in the three stages of GV, MI, and MII was helpful in further analyzing the molecular regulatory mechanism of yak oocyte maturation.
本研究旨在探讨牦牛卵母细胞体外成熟过程中不同时间点的蛋白质调控情况。在体外成熟过程中收集处于GV、MI和MII期的牦牛卵母细胞,并使用iTRAQ技术进行差异蛋白质组学测序。GO功能分类表明,差异蛋白质与“代谢过程”等生物学过程密切相关,与“结合”等分子功能相关类别的分子事件活跃。KOG分析表明,从GV期到MI期的卵母细胞发育过程中,能量代谢相关活动活跃,而从MI期到MII期的卵母细胞发育过程中,遗传物质准备活动更为活跃。KEGG通路分析表明,从GV期到MI期,PPAR代谢通路、Hippo信号通路以及ECM-受体相互作用和代谢通路富集。从MI期到MII期,PI3K-Akt、TGF-β和吞噬体通路富集。这些结果表明,牦牛卵母细胞成熟过程中蛋白质组发生了瞬时动态变化,且其所介导的生理功能也有所不同。准确鉴定GV、MI和MII三个阶段的差异蛋白质有助于进一步分析牦牛卵母细胞成熟的分子调控机制。