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Fission yeast autophagy induced by nitrogen starvation generates a nitrogen source that drives adaptation processes.

机译:由氮饥饿引起的裂变酵母自噬产生了氮源,该氮源驱动适应过程。

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摘要

Autophagy is a conserved bulk protein degradation process that is proposed to play a role in events that arise when organisms are forced to radically change their fate, including nutritional starvation, differentiation and development. In our present study, we have identified fission yeast autophagy as a bulk protein degradation process induced by the deprivation of environmental nitrogen, the effects of which are known to trigger sexual differentiation as an adaptive response. Autophagy-defective mutants were found to be sterile in the absence of environmental nitrogen, but could complete sexual differentiation when nitrogen was supplied, suggesting that the major function of autophagy is to provide a nitrogen source. In addition, the environmental nitrogen levels act as an autophagy "on/off" switch, whereas components essential for sexual differentiation were dispensable for this regulation. We propose that fission yeast autophagy functions to supply nitrogen and is activated when cells cannot accessexogenous nitrogen, thus ensuring that they can adapt and subsequently propagate.
机译:自噬是一种保守的大块蛋白质降解过程,被提议在生物被迫从根本上改变其命运的事件中发挥作用,包括营养饥饿,分化和发育。在我们目前的研究中,我们已经确定裂变酵母自噬是由于环境氮的剥夺而引起的大量蛋白质降解过程,已知其作用会触发性别分化作为适应性反应。发现自噬缺陷型突变体在没有环境氮的情况下是不育的,但是当提供氮时可以完成性别分化,这表明自噬的主要功能是提供氮源。另外,环境氮水平充当自噬的“开/关”开关,而性别分化必不可少的成分对此调节是必不可少的。我们建议裂变酵母自噬功能提供氮,并在细胞无法获取外源氮时被激活,从而确保它们能够适应并随后繁殖。

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