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比较脊椎动物分析表明,老鼠原始卵母细胞中不存在巴尔比尼体。

Comparative analysis of vertebrates reveals that mouse primordial oocytes do not contain a Balbiani body.

机构信息

Centre for Genomic Regulation (CRG), The Barcelona Institute of Science and Technology, Dr Aiguader 88, Barcelona 08003, Spain.

Gynaecology Department, Institute Clinic of Gynaecology, Obstetrics and Neonatology, Hospital Clinic, Barcelona 08036, Spain.

出版信息

J Cell Sci. 2022 Dec 1;135(1). doi: 10.1242/jcs.259394. Epub 2022 Jan 10.

Abstract

Oocytes spend the majority of their lifetime in a primordial state. The cellular and molecular biology of primordial oocytes is largely unexplored; yet, it is necessary to study them to understand the mechanisms through which oocytes maintain cellular fitness for decades, and why they eventually fail with age. Here, we develop enabling methods for live-imaging-based comparative characterization of Xenopus, mouse and human primordial oocytes. We show that primordial oocytes in all three vertebrate species contain active mitochondria, Golgi and lysosomes. We further demonstrate that human and Xenopus oocytes have a Balbiani body characterized by a dense accumulation of mitochondria in their cytoplasm. However, despite previous reports, we did not find a Balbiani body in mouse oocytes. Instead, we demonstrate that what was previously used as a marker for the Balbiani body in mouse primordial oocytes is in fact a ring-shaped Golgi that is not functionally associated with oocyte dormancy. This study provides the first insights into the organization of the cytoplasm in mammalian primordial oocytes, and clarifies the relative advantages and limitations of choosing different model organisms for studying oocyte dormancy.

摘要

卵母细胞在其一生中的大部分时间都处于原始状态。原始卵母细胞的细胞和分子生物学在很大程度上尚未被探索;然而,研究它们对于理解卵母细胞如何维持数十年的细胞健康以及为什么它们最终会随着年龄的增长而失效是必要的。在这里,我们开发了基于活细胞成像的比较分析方法,用于研究非洲爪蟾、小鼠和人原始卵母细胞。我们发现,这三种脊椎动物的原始卵母细胞都含有活跃的线粒体、高尔基体和溶酶体。我们进一步证明,人和非洲爪蟾卵母细胞具有鲍尔氏体,其特征是细胞质中存在大量堆积的线粒体。然而,尽管有之前的报道,我们在小鼠卵母细胞中并没有发现鲍尔氏体。相反,我们证明了之前被用作小鼠原始卵母细胞鲍尔氏体标记的物质实际上是一个环形高尔基体,它与卵母细胞休眠没有功能上的关联。这项研究首次深入了解了哺乳动物原始卵母细胞细胞质的组织,并澄清了选择不同模型生物来研究卵母细胞休眠的相对优缺点。

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