光激发CRY1与ATG8物理相互作用调节拟南芥中HY5的选择性自噬和光形态发生。

Lu Jiang,Shilong Zhang,Yuting Niu,Guangqiong Yang,Jiachen Zhao,Huishan Liu,Minyu Xiong,Lingyi Xie,Zhilei Mao,Tongtong Guo,Hong-Quan Yang,Wenxiu Wang
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引用次数: 0

摘要

隐色素是一种蓝光感受器,调节植物的各种光反应,包括光形态发生。自噬是一种受到严格控制的细胞内降解途径,在植物生长发育中起着至关重要的作用。CRY信号通过与phya - 1051 (SPA1)复合体的组成型光形态形成1 (COP1)-抑制因子相互作用,抑制26S蛋白酶体依赖的长下胚轴5 (HY5)降解。然而,CRY1是否通过调节HY5的自噬降解介导蓝光驱动的光形态发生调控尚不清楚。在这里,我们发现CRY1直接与拟南芥(拟南芥)中选择性自噬的关键角色ATG8以蓝光依赖的方式相互作用。ATG8和ATG5/ATG7基因作用于CRY1的下游,但在HY5的上游,调节光形态发生。在黑暗中,AUTOPHAGY-RELATED8 (ATG8)与HY5发生物理相互作用,促进其自噬降解,促进大脑形态形成。在蓝光下,CRY1-ATG8相互作用抑制ATG8-HY5相互作用,抑制ATG8和HY5向自噬体的核输出和共定位,抑制HY5在液泡中的降解。该研究揭示了cry1介导的蓝光信号如何调节HY5自噬,使植物能够根据光和养分的可用性微调光形态形成的发育。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photoexcited CRY1 physically interacts with ATG8 to regulate selective autophagy of HY5 and photomorphogenesis in Arabidopsis.
Cryptochromes (CRYs) are blue light photoreceptors that regulate various light responses in plants, including photomorphogenesis. Autophagy is a tightly controlled intracellular degradation pathway that plays a critical role in plant growth and development. CRY signaling inhibits the 26S proteasome-dependent degradation of LONG HYPOCOTYL 5 (HY5) through interactions with the CONSTITUTIVE PHOTOMORPHOGENIC1 (COP1)-SUPPRESSOR OF PHYA-105 1 (SPA1) complex. However, whether CRY1 mediates the blue light-driven regulation of photomorphogenesis by regulating the autophagic degradation of HY5 remains unclear. Here, we show that CRY1 directly interacts with ATG8, a key player in selective autophagy, in a blue light-dependent manner in Arabidopsis (Arabidopsis thaliana). ATG8 and ATG5/ATG7 act genetically downstream of CRY1, but upstream of HY5, to regulate photomorphogenesis. In darkness, AUTOPHAGY-RELATED8 (ATG8) physically interacts with HY5 to facilitate its autophagic degradation and promote skotomorphogenesis. Under blue light, the CRY1-ATG8 interaction inhibits the ATG8-HY5 interaction, suppressing the nuclear export and co-localization of ATG8 and HY5 to the autophagosome, and HY5 degradation in the vacuole. This study reveals how CRY1-mediated blue light signaling regulates HY5 autophagy, which enables plants to fine-tune photomorphogenic development in response to light and nutrient availability.
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