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氨基酸剥夺诱导的自噬通量与氮饥饿诱导的大自噬不同。

Induction of autophagic flux by amino acid deprivation is distinct from nitrogen starvation-induced macroautophagy.

机构信息

Institute of Biochemistry, Food Science and Nutrition, Robert H. Smith Faculty of Agriculture, Food, and Environment, Hebrew University of Jerusalem, Rehovot, Israel.

出版信息

Autophagy. 2010 Oct;6(7):879-90. doi: 10.4161/auto.6.7.12753. Epub 2010 Oct 22.

Abstract

A number of signaling mechanisms have been implicated in the regulation of autophagic trafficking. TOR kinase activity, cAMP levels, and the GAAC pathway have all been suggested to be involved. Here, we closely analyzed the stimuli that underlie induction of autophagic trafficking in Saccharomyces cerevisiae. We find evidence for the existence of a novel aspect of the autophagic pathway that is regulated by intracellular amino acids, uncoupled from extracellular nutrient levels, and is absolutely dependent on Gcn2 and Gcn4. This requirement for Gcn2 and Gcn4 distinguishes amino-acid starvation induced autophagy from classic macroautophagy: Macroautophagic flux in response to nitrogen starvation is only partly diminished in gcn2Δ and gcn4Δ cells. However this maintenance of autophagic flux in gcn mutants during nitrogen starvation reflects the formation of larger numbers of smaller autophagosomes. We report that gcn2Δ and gcn4Δ cells are defective in the induction of Atg8 and Atg4 upon starvation, and this defect results, during total nitrogen starvation, in the formation of abnormally small autophagosomes, although overall autophagic flux remains close to normal due to a compensatory increase in the overall number of autophagosomes.

摘要

许多信号机制被牵涉到自噬小体运输的调控中。TOR 激酶活性、cAMP 水平和 GAAC 途径都被认为参与其中。在这里,我们仔细分析了诱导酿酒酵母自噬小体运输的刺激因素。我们发现了一种新的自噬途径的存在证据,该途径受细胞内氨基酸调控,与细胞外营养水平无关,并且绝对依赖于 Gcn2 和 Gcn4。这种对 Gcn2 和 Gcn4 的需求将氨基酸饥饿诱导的自噬与经典的巨自噬区分开来:在 gcn2Δ 和 gcn4Δ 细胞中,氮饥饿引起的巨自噬通量只有部分减少。然而,gcn 突变体在氮饥饿期间维持自噬通量反映了形成更大数量的较小自噬体。我们报告 gcn2Δ 和 gcn4Δ 细胞在饥饿时不能诱导 Atg8 和 Atg4 的形成,并且这种缺陷导致在总氮饥饿期间形成异常小的自噬体,尽管由于自噬体总数的代偿性增加,整体自噬通量仍接近正常。

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