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Molecular Biology of Mammalian Gametogenesis, Fertilization and Early Development

Molecular Biology of Mammalian Gametogenesis, Fertilization and Early Development
哺乳动物配子发生、受精和早期发育的分子生物学
批准号:
10697715
负责人:
JURRIEN DEAN
金额:
$346.04万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至

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中文摘要
翻译
促性腺发生:在第一次减数分裂的前期,雌性生殖细胞形成卵泡,在卵泡中,它们被新生儿卵巢中的体细胞包围。这些卵泡在减数分裂期间生长和不对称的细胞分裂确保排卵的卵子含有成功发育所必需的母体因子。出生后的男性生殖细胞在睾丸内维持一个精原细胞干细胞生态位,从中选择一组进行减数分裂,并在精子发生过程中转化为成熟精子。目前的研究主要包括:1)生殖细胞特异性外泌体rna酶在确保卵子成熟和早期发育中的作用;2)维持精原细胞干细胞所需的男性生殖细胞因子;3)精子发生所需的粗线素pirna。
英文摘要
Gonadogenesis: Female germ cells arrested at the prophase of the first meiotic division form follicles in which they are surrounded by somatic cells in the neonatal ovary. These follicles grow and asymmetrical cell division during meiosis ensures that ovulated eggs contain maternal factors necessary for successful development. Post-natal male germ cells maintain a spermatogonia stem cell niche within the testis from which cohorts are selected to undergo meiosis and are transmogrified into mature spermatozoa during spermiogenesis. Current studies investigate the roles of: 1) germ cell specific exosome RNases in ensuring egg maturation and early development; 2) male germ cell factors required for maintenance of spermatogonia stem cells; and 3) pachytene piRNAs required for spermiogenesis. Fertilization: The taxon-specificity of sperm-egg recognition in mammals that results in monospermic fertilization is mediated primarily by the zona pellucida, an extracellular matrix surrounding ovulated eggs. Although a simple structure of 3-4 glycoproteins, the molecular basis of sperm binding to the zona pellucida has been controversial. Current studies investigate: 1) molecular requirements to support taxon-specific sperm-egg recognition on the surface of the zona pellucida; 2) mechanism that result in acrosome exocytosis necessary for subsequent gamete fusion; and 3) the processes by which post-fertilization polyspermy is prevented. Early Development: Transcription that terminates during meiotic maturation in mouse eggs resumes only after robust activation of the embryonic genome of the two-cell embryo. This interregnum dictates a role for stored maternal factors in directing early development. Using gene-edited mice, the role of individual or complexes of maternal factor(s) is studied in these processes. Current research investigates: 1) a germ-cell specific initiation factor required for translation and zygotic gene activation; 2) loss of persistent, pervasive transcription essential for oocyte maturation and fertility; and 3) degradation of a maternal transcription inhibitor required for preimplantation cell differentiation.
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Molecular Biology of the Oocyte
Molecular Biology of the Oocyte
Maternal Effect Genes in Mammalian Embryogenesis
Molecular Biology of Mammalian Gametogenesis, Fertilization and Early Development
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