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自噬诱导剂导致拟南芥根中自噬体的短暂积累。

Autophagy inducers lead to transient accumulation of autophagosomes in Arabidopsis roots.

机构信息

Department of Biological Sciences, Pusan National University, 63 Beon-gil 2, Busandaehag-ro, Geumjeong-gu, Busan, 46241, Republic of Korea.

出版信息

Plant Cell Rep. 2022 Feb;41(2):463-471. doi: 10.1007/s00299-021-02821-2. Epub 2022 Jan 3.

Abstract

This study reveals that plant roots show a rapid termination of autophagy induction, offering a plant model for studying how excessive autophagy is deterred. In eukaryotes, autophagy is an intracellular mechanism that is important for recycling nutrients by degrading various macromolecules and organelles in vacuoles and lysosomes. Autophagy is induced when the nutrient supply to plant cells is limited. The protein kinase target of rapamycin (TOR) complex negatively regulates autophagy when nutrients are present in adequate amounts. The TOR inhibitor AZD8055 is an autophagy inducer that is useful for studying starvation-induced autophagy in plant cells. The mechanism by which AZD8055 increases the autophagic flux in plant cells has not been studied in detail. Here, we show that AZD8055-induced autophagy requires phosphatidylinositol 3-kinase activity and canonical AUTOPHAGY-RELATED (ATG) genes in Arabidopsis thaliana. Autophagic flux rapidly increased in seedlings treated with AZD8055. Unexpectedly, autophagy induction was transient in root cells and terminated earlier than in cotyledon cells. Transient induction is partly caused by a temporary effect of AZD8055 on phagophore initiation. These findings indicate a TOR-independent mechanism for terminating autophagy induction, thereby paving the way for elucidating how excess autophagy is prevented in plant roots.

摘要

这项研究揭示了植物根系表现出快速终止自噬诱导的现象,为研究如何阻止过度自噬提供了植物模型。在真核生物中,自噬是一种重要的细胞内机制,通过在液泡和溶酶体中降解各种大分子和细胞器来回收营养物质。当植物细胞的营养供应受到限制时,自噬就会被诱导。在有足够营养物质存在的情况下,雷帕霉素靶蛋白(TOR)复合物的蛋白激酶会负调控自噬。TOR 抑制剂 AZD8055 是一种自噬诱导剂,可用于研究植物细胞中的饥饿诱导自噬。AZD8055 增加植物细胞自噬流的机制尚未得到详细研究。在这里,我们表明 AZD8055 诱导的自噬需要拟南芥中的磷脂酰肌醇 3-激酶活性和规范的自噬相关(ATG)基因。用 AZD8055 处理的幼苗中,自噬通量迅速增加。出乎意料的是,根细胞中的自噬诱导是短暂的,比子叶细胞更早终止。这种短暂的诱导部分是由于 AZD8055 对吞噬体起始的暂时影响。这些发现表明了一种 TOR 独立的终止自噬诱导的机制,从而为阐明植物根系中如何防止过度自噬铺平了道路。

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