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METACASPASE9 modulates autophagy to confine cell death to the target cells during Arabidopsis vascular xylem differentiation

机译:METACASPASE9调节自噬以限制拟南芥属血管木质部分化过程中靶细胞的死亡

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We uncovered that the level of autophagy in plant cells undergoing programmed cell death determines the fate of the surrounding cells. Our approach consisted of using Arabidopsis thaliana cell cultures capable of differentiating into two different cell types: vascular tracheary elements (TEs) that undergo programmed cell death (PCD) and protoplast autolysis, and parenchymatic non-TEs that remain alive. The TE cell type displayed higher levels of autophagy when expression of the TE-specific METACASPASE9 ( MC9 ) was reduced using RNAi ( MC9 -RNAi). Misregulation of autophagy in the MC9 -RNAi TEs coincided with ectopic death of the non-TEs, implying the existence of an autophagy-dependent intercellular signalling from within the TEs towards the non-TEs. Viability of the non-TEs was restored when AUTOPHAGY2 ( ATG2 ) was downregulated specifically in MC9 -RNAi TEs, demonstrating the importance of autophagy in the spatial confinement of cell death. Our results suggest that other eukaryotic cells undergoing PCD might also need to tightly regulate their level of autophagy to avoid detrimental consequences for the surrounding cells.
机译:我们发现,经历程序性细胞死亡的植物细胞中自噬的水平决定了周围细胞的命运。我们的方法包括使用能够分化为两种不同细胞类型的拟南芥细胞培养物:经历程序性细胞死亡(PCD)和原生质体自溶的血管气管元件(TEs),以及仍然存活的实质性非TEs。当使用RNAi(MC9 -RNAi)降低TE特异性METACASPASE9(MC9)的表达时,TE细胞类型显示出更高的自噬水平。 MC9 -RNAi TEs中自噬的错误调节与非TEs的异位死亡相吻合,这意味着存在从TE内向非TEs的自噬依赖性细胞间信号传导。当在MC9 -RNAi TEs中特异性下调AUTOPHAGY2(ATG2)时,非TE的活力得以恢复,这表明自噬在细胞死亡的空间限制中的重要性。我们的研究结果表明,其他经历PCD的真核细胞也可能需要严格调节其自噬水平,以避免对周围细胞造成不利影响。

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