Institute of Cytology of the Russian Academy of Sciences, 194064 St. Petersburg, Russia.
Clinical Institute of Reproductive Medicine, 620014 Yekaterinburg, Russia.
Int J Mol Sci. 2023 Jul 15;24(14):11517. doi: 10.3390/ijms241411517.
In the oocyte nucleus, called the germinal vesicle (GV) at the prolonged diplotene stage of the meiotic prophase, chromatin undergoes a global rearrangement, which is often accompanied by the cessation of its transcriptional activity. In many mammals, including mice and humans, chromatin condenses around a special nuclear organelle called the atypical nucleolus or formerly nucleolus-like body. Chromatin configuration is an important indicator of the quality of GV oocytes and largely predicts their ability to resume meiosis and successful embryonic development. In mice, GV oocytes are traditionally divided into the NSN (non-surrounded nucleolus) and SN (surrounded nucleolus) based on the specific chromatin configuration. The NSN-SN transition is a key event in mouse oogenesis and the main prerequisite for the normal development of the embryo. As for humans, there is no single nomenclature for the chromatin configuration at the GV stage. This often leads to discrepancies and misunderstandings, the overcoming of which should expand the scope of the application of mouse oocytes as a model for developing new methods for assessing and improving the quality of human oocytes. As a first approximation and with a certain proviso, the mouse NSN/SN classification can be used for the primary characterization of human GV oocytes. The task of this review is to analyze and discuss the existing classifications of chromatin configuration in mouse and human GV oocytes with an emphasis on transcriptional activity extinction at the end of oocyte growth.
在卵母细胞核中,在减数分裂前期的长时间二价体阶段,称为生发泡(GV),染色质经历了全面重排,通常伴随着其转录活性的停止。在许多哺乳动物中,包括小鼠和人类,染色质围绕一种特殊的核细胞器凝聚,这种细胞器称为非典型核仁或以前的核仁样体。染色质构型是 GV 卵母细胞质量的重要指标,在很大程度上预测了它们恢复减数分裂和成功胚胎发育的能力。在小鼠中,GV 卵母细胞传统上根据特定的染色质构型分为 NSN(无核仁包围)和 SN(核仁包围)。NSN-SN 转换是小鼠卵发生中的一个关键事件,也是胚胎正常发育的主要前提。至于人类,GV 阶段的染色质构型没有单一的命名法。这常常导致差异和误解,克服这些差异和误解应该扩大将小鼠卵母细胞作为开发评估和改善人类卵母细胞质量的新方法的模型的应用范围。作为一种初步的近似值,并带有一定的限制条件,可以使用小鼠的 NSN/SN 分类对人类 GV 卵母细胞进行初步特征描述。本综述的任务是分析和讨论现有的小鼠和人类 GV 卵母细胞染色质构型分类,重点是卵母细胞生长结束时转录活性的消失。