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Notch Signaling during Ovarian Follicle Formation and Development.

机译:卵巢卵泡形成和发育过程中的Notch信号传导。

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摘要

Morphogenesis of the mammalian ovary requires the precise spatial and temporal organization and function of multiple cell types, which is coordinated by autocrine, juxtacrine, paracrine, and endocrine signaling mechanisms. In order to better understand the cellular movements and processes required for the development of the ovary, we used mouse lines that express fluorescent proteins in specific ovarian cell types, as well as multiple imaging modalities, to visualize the cellular organization and interactions during the formation, growth, maturation, ovulation, and luteinization of ovarian follicles. Further, we have applied these techniques to investigate the role of the Notch pathway, a highly conserved juxtacrine signaling system, during follicle histogenesis and development.;At birth, Notch active somatic cells are arranged in an intricate cage-like pattern around germ cell syncytia and can be observed sending projections around individual germ cells. Notch active cells are seen in close association with collagen fibrils, detected by second harmonic generation, which could potentially facilitate pregranulosa cell migration and cellular reorganization during follicle histogenesis. Time-lapse imaging of ex vivo cultured ovaries reveals diverse cellular behaviors, including ovigerous cord fragmentation, cell-cell interactions, cell migration, and germ cell apoptosis. Additionally, Notch active cells can be visualized within growing follicles, cumulus oocyte complexes, and corpora lutea, suggesting important roles for Notch signaling between the various cell types of these structures.;Complementary expression of the Notch ligand, Jagged1, in germ cells and the Notch receptor, Notch2, in pregranulosa cells, suggests a role for Notch signaling in mediating many of the cellular interactions during follicle assembly. In addition, increased expression of the Notch ligands, Jagged1 and Jagged2; the Notch receptor, Notch2; and the Notch target genes, Hes1 and Hey2 coincides with a significant increase in the fluorescent activity of a Notch reporter line. Histological examination of ovaries from mice with conditional deletion of Jagged1 within germ cells (J1KO) or Notch2 within granulosa cells (N2KO) reveals changes in follicle dynamics, including perturbations in the primordial follicle pool and antral follicle development. J1KO and N2KO ovaries also contain multi-oocytic follicles (MOFs), which represent a failure to resolve germ cell syncytia, and follicles with enlarged oocytes but lacking somatic cell growth, signifying a potential role of Notch signaling in follicle activation and the coordination of follicle development. We also observed decreased cell proliferation and increased apoptosis in the somatic cells of both conditional knockout lines. As a consequence of these defects, J1KO female mice are subfertile; however, N2KO female mice remain fertile. These studies demonstrate important functions for Jagged1 and Notch2 in the resolution of germ cell syncytia and the coordination of somatic and germ cell growth within follicles of the mouse ovary. New approaches in imaging and ex vivo culture of ovarian explants will undoubtedly provide new means by which to follow the identity and behavior of multiple cell types in the ovary in a dynamic fashion, facilitating investigations into the cellular interactions, processes, and organization necessary for follicle formation and development.
机译:哺乳动物卵巢的形态发生需要多种细胞类型的精确时空组织和功能,这由自分泌,并列分泌,旁分泌和内分泌信号传导机制协调。为了更好地了解卵巢发育所需的细胞运动和过程,我们使用了在特定卵巢细胞类型中表达荧光蛋白的小鼠品系以及多种成像方式,以观察形成过程中的细胞组织和相互作用,卵巢卵泡的生长,成熟,排卵和黄体化。此外,我们已应用这些技术来研究Notch途径(高度保守的邻分泌信号传导系统)在卵泡组织发生和发育过程中的作用。;出生时,Notch活性体细胞以复杂的笼状模式排列在生殖细胞合胞体周围并且可以观察到在单个生殖细胞周围发送投影。可以看到,通过二次谐波检测到,Notch活性细胞与胶原纤维紧密相关,可能在卵泡组织发生过程中促进颗粒前颗粒的迁移和细胞重组。体外培养卵巢的延时成像揭示了多种细胞行为,包括卵巢线断裂,细胞间相互作用,细胞迁移和生殖细胞凋亡。此外,Notch活性细胞可以在生长的卵泡,卵母细胞复合体和黄体中观察到,表明这些结构的各种细胞类型之间Notch信号传导的重要作用; Notch配体Jagged1在生殖细胞和生殖细胞中的互补表达。颗粒前颗粒细胞中的Notch受体Notch2提示Notch信号在卵泡组装过程中介导许多细胞相互作用中发挥作用。另外,Notch配体Jagged1和Jagged2的表达增加。 Notch受体Notch2; Notch靶基因Hes1和Hey2与Notch报告基因系的荧光活性显着增加相吻合。对小鼠卵巢进行组织学检查,发现生殖细胞内Jagged1(J1KO)或颗粒细胞内Notch2(N2KO)的条件缺失揭示了卵泡动力学的变化,包括原始卵泡池的扰动和肛门卵泡的发育。 J1KO和N2KO卵巢也含有多卵泡卵泡(MOF),代表无法解决生殖细胞合胞体,卵泡具有增大的卵母细胞但缺乏体细胞生长,表明Notch信号在卵泡活化和卵泡协调中的潜在作用发展。我们还观察到两种条件敲除系的体细胞中细胞增殖减少和凋亡增加。由于这些缺陷,J1KO雌性小鼠不育。但是,N2KO雌性小鼠仍能繁殖。这些研究证明了Jagged1和Notch2在解析生殖细胞合胞体以及协调小鼠卵巢卵泡内体细胞和生殖细胞生长方面的重要功能。卵巢外植体的成像和离体培养的新方法无疑将提供新的手段,以动态方式跟踪卵巢中多种细胞类型的身份和行为,从而有助于研究卵泡所必需的细胞相互作用,过程和组织形成和发展。

著录项

  • 作者

    Vanorny, Dallas Andrew.;

  • 作者单位

    Northwestern University.;

  • 授予单位 Northwestern University.;
  • 学科 Molecular biology.;Biology.;Physiology.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 495 p.
  • 总页数 495
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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