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秀丽隐杆线虫生殖系中增殖与减数分裂发育决定的多途径调控

Multi-pathway control of the proliferation versus meiotic development decision in the Caenorhabditis elegans germline.

作者信息

Hansen Dave, Hubbard E Jane Albert, Schedl Tim

机构信息

Department of Genetics, Washington University School of Medicine, St. Louis, MO 63110, USA.

出版信息

Dev Biol. 2004 Apr 15;268(2):342-57. doi: 10.1016/j.ydbio.2003.12.023.

Abstract

An important event in the development of the germline is the initiation of meiotic development. In Caenorhabditis elegans, the conserved GLP-1/Notch signaling pathway regulates the proliferative versus meiotic entry decision, at least in part, by spatially inhibiting genes in the gld-1 and gld-2 parallel pathways, which are proposed to either inhibit proliferation and/or promote meiotic development. Mutations that cause constitutive activation of the GLP-1 pathway, or inactivation of both the gld-1 and gld-2 parallel pathways, result in a tumorous germline in which all cells are thought to be proliferative. Here, to analyze proliferation and meiotic entry in wild-type and mutant tumorous germlines, we use anti-REC-8 and anti-HIM-3 specific antibodies as markers, which under our fixation conditions, stain proliferative and meiotic cells, respectively. Using these makers in wild-type animals, we find that the border of the switch from proliferation to meiotic entry is staggered in late-larval and adult germlines. In wild-type adults, the switch occurs between 19 and 26 cell diameters from the distal end, on average. Our analysis of mutants reveals that tumorous germlines that form when GLP-1 is constitutively active are completely proliferative, while tumors due to inactivation of the gld-1 and gld-2 pathways show evidence of meiotic entry. Genetic and time course studies suggest that a third pathway may exist, parallel to the GLD-1 and GLD-2 pathways, that promotes meiotic development.

摘要

生殖系发育过程中的一个重要事件是减数分裂发育的启动。在秀丽隐杆线虫中,保守的GLP-1/Notch信号通路至少部分地通过空间抑制gld-1和gld-2平行通路中的基因来调节增殖与减数分裂进入的决定,这些基因被认为要么抑制增殖和/或促进减数分裂发育。导致GLP-1通路组成型激活的突变,或gld-1和gld-2平行通路两者失活,会导致肿瘤性生殖系,其中所有细胞都被认为是增殖性的。在这里,为了分析野生型和突变型肿瘤性生殖系中的增殖和减数分裂进入,我们使用抗REC-8和抗HIM-3特异性抗体作为标记物,在我们的固定条件下,它们分别对增殖细胞和减数分裂细胞进行染色。在野生型动物中使用这些标记物,我们发现从增殖到减数分裂进入的转换边界在晚期幼虫和成虫生殖系中是交错的。在野生型成虫中,转换平均发生在距远端19至26个细胞直径之间。我们对突变体的分析表明,当GLP-1组成型激活时形成的肿瘤性生殖系完全是增殖性的,而由于gld-1和gld-2通路失活导致的肿瘤则显示出减数分裂进入的证据。遗传和时间进程研究表明,可能存在与GLD-1和GLD-2通路平行的第三条促进减数分裂发育的通路。

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