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缺失 Putzig 会通过诱导细胞死亡和形成新的类似巢的微环境来阻碍生殖细胞的发育。

Loss of putzig in the germline impedes germ cell development by inducing cell death and new niche like microenvironments.

机构信息

Institute of Genetics (240), University of Hohenheim, 70599, Stuttgart, Germany.

出版信息

Sci Rep. 2019 Jun 24;9(1):9108. doi: 10.1038/s41598-019-45655-5.

Abstract

Germline stem cell development and differentiation is tightly controlled by the surrounding somatic cells of the stem cell niche. In Drosophila females, cells of the niche emit various signals including Dpp and Wg to balance stem cell renewal and differentiation. Here, we show that the gene pzg is autonomously required in cells of the germline to sustain the interplay between niche and stem cells. Loss of pzg impairs stem cell differentiation and provokes the death of cells in the germarium. As a consequence of pzg loss, increased growth signalling activity predominantly of Dpp and Wg/Wnt, was observed, eventually disrupting the balance of germ cell self-renewal and differentiation. Whereas in the soma, apoptosis-induced compensatory growth is well established, the induction of self-renewal signals during oogenesis cannot compensate for dying germ cells, albeit inducing a new niche-like microenvironment. Instead, they impair the further development of germ cells and cause in addition a forward and feedback loop of cell death.

摘要

生殖干细胞的发育和分化受到其所在干细胞龛的周围体细胞的严格控制。在雌性果蝇中,龛细胞会发出各种信号,包括 Dpp 和 Wg,以平衡干细胞的更新和分化。在这里,我们表明,基因 pzg 在生殖细胞中是自主需要的,以维持龛细胞和干细胞之间的相互作用。pzg 的缺失会损害干细胞的分化,并引发生殖细胞中的细胞死亡。由于 pzg 的缺失,观察到 Dpp 和 Wg/Wnt 的生长信号活性增加,最终破坏了生殖细胞自我更新和分化的平衡。虽然在体细胞中,凋亡诱导的代偿性生长是成熟的,但在卵子发生过程中诱导自我更新信号不能补偿死亡的生殖细胞,尽管它诱导了一个新的龛样微环境。相反,它们会损害生殖细胞的进一步发育,并导致细胞死亡的前馈和反馈循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d90d/6591254/66e1decbda6b/41598_2019_45655_Fig1_HTML.jpg

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