地中海Schmidtea mediterranea的卵发生涉及一种新的核膜重塑机制。

IF 2.5 3区 生物学 Q2 DEVELOPMENTAL BIOLOGY
Longhua Guo , Fengli Guo , Shasha Zhang , An Zeng , Kexi Yi , Melainia McClain , Claus-D. Kuhn , Tari Parmely , Alejandro Sánchez Alvarado
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引用次数: 0

摘要

真菌和后生动物定义的真核生物超群Ophisthokonts的细胞核在体细胞和生殖细胞中都具有双膜结构的稳定性。如此显著的结构保存强调了共同和古老的进化起源。然而,Ophisthokont核显示的拆卸和重组动力学差异很大。除了真菌的闭合有丝分裂和一些动物的开放有丝分裂外,对卵发生过程中核膜重塑动力学的进化知之甚少。在这里,我们发现了扁虫在形成卵母细胞时核膜重塑的一种新形式。从zygotene到中期II,核膜(NE)和外周内质网(ER)的大小都明显扩大,可能涉及从头膜合成。三维电子显微镜重建显示,NE在生发囊泡破裂后转化为许多双膜囊泡,其膜结构与哺乳动物卵母细胞中的NE双膜囊泡相似。这些囊泡缺乏核孔复合物和DNA,但却装载了核蛋白,包括一种涡虫同源的PIWI,一种在涡虫和其他生物中维持干细胞所必需的蛋白质。我们的数据为NE动力学的规范观点提供了一个新的模型,并表明NE重塑在涡虫卵发生中的重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Oogenesis involves a novel nuclear envelop remodeling mechanism in Schmidtea mediterranea

Oogenesis involves a novel nuclear envelop remodeling mechanism in Schmidtea mediterranea
The cell nuclei of Ophisthokonts, the eukaryotic supergroup defined by fungi and metazoans, is remarkable in the constancy of their double-membraned structure in both somatic and germ cells. Such remarkable structural conservation underscores common and ancient evolutionary origins. Yet, the dynamics of disassembly and reassembly displayed by Ophisthokont nuclei vary extensively. Besides closed mitosis in fungi and open mitosis in some animals, little is known about the evolution of nuclear envelope remodeling dynamics during oogenesis. Here, we uncovered a novel form of nuclear envelope remodeling as oocytes are formed in the flatworm Schmidtea mediterranea. From zygotene to metaphase II, both nuclear envelope (NE) and peripheral endoplasmic reticulum (ER) expand notably in size, likely involving de novo membrane synthesis. 3-D electron microscopy reconstructions demonstrated that the NE transforms itself into numerous double-membraned vesicles similar in membrane architecture to NE doublets in mammalian oocytes after germinal vesicle breakdown. The vesicles are devoid of nuclear pore complexes and DNA, yet are loaded with nuclear proteins, including a planarian homologue of PIWI, a protein essential for the maintenance of stem cells in this and other organisms. Our data contribute a new model to the canonical view of NE dynamics and suggest important roles of NE remodeling in planarian oogenesis.
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来源期刊
Developmental biology
Developmental biology 生物-发育生物学
CiteScore
5.30
自引率
3.70%
发文量
182
审稿时长
1.5 months
期刊介绍: Developmental Biology (DB) publishes original research on mechanisms of development, differentiation, and growth in animals and plants at the molecular, cellular, genetic and evolutionary levels. Areas of particular emphasis include transcriptional control mechanisms, embryonic patterning, cell-cell interactions, growth factors and signal transduction, and regulatory hierarchies in developing plants and animals.
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