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Inheritance of a Nuclear PIWI from Pluripotent Stem Cells by Somatic Descendants Ensures Differentiation by Silencing Transposons in Planarian

机译:体细胞后代从多能干细胞中继承核PIWI,可通过沉默转座子中的转座子来确保分化。

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摘要

Differentiation of pluripotent stem cells (PSCs) requires transposon silencing throughout the process. PIWIs, best known as key factors in germline transposon silencing, are also known to act in somatic differentiation of planarian PSCs (neoblasts). However, how PIWIs control the latter process remains elusive. Here, using Dugesia japonica, we show that a nuclear PIWI, DjPiwiB, was bound to PIWI-interacting RNAs (generally key mediators of PIWI-dependent transposon silencing), and was detected in not only neoblasts but also their descendant somatic cells, which do not express piwi. In contrast, cytoplasmic DjPiwiA and DjPiwiC were detected only in neoblasts, in accord with their transcription there. DjPiwiB was indispensable for regeneration, but dispensable for transposon silencing in neoblasts. However, transposons were derepressed at the onset of differentiation in DjPiwiB-knockdown planarians. Thus, DjPiwiB appears to be inherited by descendant somatic cells of neoblasts to ensure transposon silencing in those cells, which are unable to produce PIWI proteins.
机译:多能干细胞(PSC)的分化需要整个过程中的转座子沉默。 PIWI是众所周知的种系转座子沉默的关键因素,也已知在涡虫PSC(成胚细胞)的体细胞分化中起作用。但是,PIWI如何控制后面的过程仍然难以捉摸。在这里,我们使用日本杜鹃(Dugesia japonica),表明核PIWI DjPiwiB与PIWI相互作用的RNAs(通常是PIWI依赖性转座子沉默的关键介体)结合,不仅在成胚细胞中而且在其子代体细胞中也被检测到不表达piwi。相反,仅在成胚细胞中检测到细胞质的DjPiwiA和DjPiwiC,与其在那里的转录一致。 DjPiwiB对于再生是必不可少的,但对于成胚细胞中的转座子沉默则必不可少。然而,转座子在DjPiwiB-nockdown涡虫的分化开始时被抑制。因此,DjPiwiB似乎是成胚细胞的后代体细胞所继承,以确保那些不能产生PIWI蛋白的细胞中的转座子沉默。

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