Disruption of ER-mitochondria contact sites induces autophagy-dependent loss of P-bodies through the Ca2+-CaMKK2-AMPK pathway

被引:1
作者
More, Nikhil [1 ]
Joseph, Jomon [1 ]
机构
[1] SP Pune Univ Campus, BRIC Natl Ctr Cell Sci, Pune 411007, India
关键词
KEY WORDS; P-bodies; ER-mitochondria contact sites; Autophagy; Stress granules; CaMKK2; ENDOPLASMIC-RETICULUM; STRESS GRANULES; MESSENGER-RNA; CROSSROADS; MECHANISM; PROTEINS; REVEALS; ATPASE;
D O I
10.1242/jcs.263652
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
P-bodies (PBs) and stress granules (SGs) are conserved, non- membranous cytoplasmic condensates of RNA-protein complexes. PBs are implicated in post-transcriptional regulation of gene expression through mRNA decay, translational repression and/or storage. Although much is known about the de novo formation of PBs and SGs involving liquid-liquid phase separation through multiple protein-protein and protein-RNA interactions, their subcellular localization and turnover mechanisms are less understood. Here, we report the presence of a subpopulation of PBs and SGs that are in proximity to ER-mitochondria contact sites (ERMCSs) in mammalian cells. Disruption of ERMCSs, achieved through depletion of ER- mitochondria tethering proteins, leads to the disappearance of PBs but not SGs. This effect can be reversed by inhibiting autophagy through both genetic and pharmacological means. Additionally, we find that the disruption of ERMCSs leads to cytosolic Ca2+-induced activation of CaMKK2 and AMP-activated protein kinase (AMPK), ultimately resulting in an autophagy-dependent decrease in PB abundance. Collectively, our findings unveil a mechanism wherein disturbances in ERMCSs induce autophagy-dependent loss of PBs via activation of the Ca2+-CaMKK2-AMPK pathway, thus potentially linking the dynamics and functions of ERMCS with post-transcriptional gene regulation.
引用
收藏
页数:14
相关论文
共 13 条
[1]   ER-mitochondria contact sites; a multifaceted factory for Ca2+ signaling and lipid transport [J].
Sassano, Maria Livia ;
Felipe-Abrio, Blanca ;
Agostinis, Patrizia .
FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY, 2022, 10
[2]   Bufalin induces apoptosis and autophagy via the Ca2+/CaMKKβ/AMPK/Beclin1 signaling pathway in osteosarcoma cells [J].
Zheng, Ya-Dong ;
He, Zhen ;
Su, Zhu-Cheng ;
Wang, Hui ;
Jiang, Xiao-Hong ;
Fang, Xu ;
Lu, Sheng-Lin ;
Li, Yuan .
CELL BIOLOGY INTERNATIONAL, 2023, 47 (08) :1344-1353
[3]   Palmitoylated CKAP4 regulates mitochondrial functions through an interaction with VDAC2 at ER-mitochondria contact sites [J].
Harada, Takeshi ;
Sada, Ryota ;
Osugi, Yoshito ;
Matsumoto, Shinji ;
Matsuda, Tomoki ;
Hayashi-Nishino, Mitsuko ;
Nagai, Takeharu ;
Harada, Akihiro ;
Kikuchi, Akira .
JOURNAL OF CELL SCIENCE, 2020, 133 (21)
[4]   Ca2+ Regulates Autophagy Through CaMKKβ/AMPK/mTOR Signaling Pathway in Mechanical Spinal cord Injury: An in vitro Study [J].
Liu, Fu-Sheng ;
Jiang, Chang ;
Li, Zheng ;
Wang, Xiao-Bin ;
Li, Jing ;
Wang, Bing ;
Lv, Guo-Hua ;
Liu, Fu-Bing .
NEUROCHEMICAL RESEARCH, 2023, 48 (02) :447-457
[5]   Ca2+ Regulates Autophagy Through CaMKKβ/AMPK/mTOR Signaling Pathway in Mechanical Spinal cord Injury: An in vitro Study [J].
Fu-Sheng Liu ;
Chang Jiang ;
Zheng Li ;
Xiao-Bin Wang ;
Jing Li ;
Bing Wang ;
Guo-Hua Lv ;
Fu-Bing Liu .
Neurochemical Research, 2023, 48 :447-457
[6]   Propofol inhibited autophagy through Ca2+/CaMKKβ/AMPK/mTOR pathway in OGD/R-induced neuron injury [J].
Bei Sun ;
Hao Ou ;
Fei Ren ;
Ye Huan ;
Tao Zhong ;
Min Gao ;
Hongwei Cai .
Molecular Medicine, 2018, 24
[7]   Propofol inhibited autophagy through Ca2+/CaMKKβ/AMPK/mTOR pathway in OGD/R-induced neuron injury [J].
Sun, Bei ;
Ou, Hao ;
Ren, Fei ;
Huan, Ye ;
Zhong, Tao ;
Gao, Min ;
Cai, Hongwei .
MOLECULAR MEDICINE, 2018, 24
[8]   Polo Kinase Phosphorylates Miro to Control ER-Mitochondria Contact Sites and Mitochondrial Ca2+ Homeostasis in Neural Stem Cell Development [J].
Lee, Seongsoo ;
Lee, Kyu-Sun ;
Huh, Sungun ;
Liu, Song ;
Lee, Do-Yeon ;
Hong, Seung Hyun ;
Yu, Kweon ;
Lu, Bingwei .
DEVELOPMENTAL CELL, 2016, 37 (02) :174-189
[9]   JS']JS-K activates G2/M checkpoints through the DNA damage response and induces autophagy via CAMKKβ/AMPKα/mTOR pathway in bladder cancer cells [J].
Zhao, Yuwan ;
Lin, Shanhong ;
Zeng, Wenfeng ;
Lin, Xinghua ;
Qin, Xingzhang ;
Miu, Bailiang ;
Gao, Sheng ;
Wu, Haokai ;
Liu, Jianjun ;
Chen, Xiaojun .
JOURNAL OF CANCER, 2024, 15 (02) :343-355
[10]   SC-III3, a novel scopoletin derivative, induces autophagy of human hepatoma HepG2 cells through AMPK/mTOR signaling pathway by acting on mitochondria [J].
Zhao, Peng ;
Dou, Yannong ;
Chen, Li ;
Li, Linhu ;
Wei, Zhifeng ;
Yu, Juntao ;
Wu, Xin ;
Dai, Yue ;
Xia, Yufeng .
FITOTERAPIA, 2015, 104 :31-40