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哺乳动物卵母细胞生长和分化过程中的大规模染色质形态功能变化。

Large-scale chromatin morpho-functional changes during mammalian oocyte growth and differentiation.

机构信息

Reproductive and Developmental Biology Laboratory, Department of Health, Animal Science and Food Safety, University of Milan, Milan, Italy.

出版信息

Eur J Histochem. 2012 Aug 10;56(3):e37. doi: 10.4081/ejh.2012.e37.

Abstract

Mammalian oocyte development is characterized by impressive changes in chromatin structure and function within the germinal vesicle (GV). These changes are crucial to confer the oocyte with meiotic and developmental competencies. In cow, oocytes collected from early and middle antral follicles present four patterns of chromatin configuration, from GV0 to GV3, and its progressive condensation has been related to the achievement of developmental potential. During oogenesis, follicular cells are essential for the acquisition of meiotic and developmental competencies and communicate with the oocyte by paracrine and gap junction mediated mechanisms. We recently analyzed the role of gap junction communications (GJC) on chromatin remodeling process during the specific phase of folliculogenesis that coincides with the transcriptional silencing and sequential acquisition of meiotic and developmental capabilities. Our studies demonstrated that GJC between germinal and somatic compartments plays a fundamental role in the regulation of chromatin remodeling and transcription activities during the final oocyte differentiation, throughout cAMP dependent mechanism(s).

摘要

哺乳动物卵母细胞的发育过程中,其染色质结构和功能在生发泡(GV)中发生显著变化。这些变化对于赋予卵母细胞减数分裂和发育能力至关重要。在奶牛中,从早期和中期窦卵泡中采集的卵母细胞呈现出四种染色质构型模式,从 GV0 到 GV3,其逐渐浓缩与发育潜能的实现有关。在卵子发生过程中,卵泡细胞对于获得减数分裂和发育能力至关重要,并通过旁分泌和间隙连接介导的机制与卵母细胞进行通讯。我们最近分析了间隙连接通讯(GJC)在与转录沉默和顺序获得减数分裂和发育能力相一致的卵泡发生特定阶段对染色质重塑过程的作用。我们的研究表明,生殖细胞和体细胞区室之间的 GJC 通过 cAMP 依赖的机制在卵母细胞最终分化过程中对染色质重塑和转录活性的调节中起着基础性作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcdd/3493983/d36f739a0ccc/ejh-2012-3-e37-g001.jpg

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