Adaptive autophagy reprogramming in Schwann cells during peripheral demyelination

被引:0
作者
Young Rae Jo
Yuna Oh
Young Hee Kim
Yoon Kyung Shin
Hye Ran Kim
Hana Go
Jaekyoon Shin
Hye Ji Park
Hyongjong Koh
Jong Kuk Kim
Jung Eun Shin
Kyung Eun Lee
Hwan Tae Park
机构
[1] Graduate School of Dong-A University,Peripheral Neuropathy Research Center (PNRC), Department of Molecular Neuroscience, College of Medicine, Department of Translational Biomedical Sciences
[2] Dong-A University,Advanced Analysis Center
[3] Korea Institute of Science and Technology (KIST),Department of Molecular and Cellular Biology, College of Medicine
[4] Sungkyunkwan University,Department of Pharmacology, College of Medicine
[5] Dong-A University,Department of Neurology
[6] College of Medicine,undefined
[7] Dong-A University,undefined
来源
Cellular and Molecular Life Sciences | 2023年 / 80卷
关键词
Autophagy; Demyelination; Demyelinating neuropathy; SQSTM1/p62; Wallerian degeneration;
D O I
暂无
中图分类号
学科分类号
摘要
The myelin sheath is an essential structure for the rapid transmission of electrical impulses through axons, and peripheral myelination is a well-programmed postnatal process of Schwann cells (SCs), the myelin-forming peripheral glia. SCs transdifferentiate into demyelinating SCs (DSCs) to remove the myelin sheath during Wallerian degeneration after axonal injury and demyelinating neuropathies, and macrophages are responsible for the degradation of myelin under both conditions. In this study, the mechanism by which DSCs acquire the ability of myelin exocytosis was investigated. Using serial ultrastructural evaluation, we found that autophagy-related gene 7-dependent formation of a “secretory phagophore (SP)” and tubular phagophore was necessary for exocytosis of large myelin chambers by DSCs. DSCs seemed to utilize myelin membranes for SP formation and employed p62/sequestosome-1 (p62) as an autophagy receptor for myelin excretion. In addition, the acquisition of the myelin exocytosis ability of DSCs was associated with the decrease in canonical autolysosomal flux and was demonstrated by p62 secretion. Finally, this SC demyelination mechanism appeared to also function in inflammatory demyelinating neuropathies. Our findings show a novel autophagy-mediated myelin clearance mechanism by DSCs in response to nerve damage.
引用
收藏
相关论文
共 120 条
[1]  
Mizushima N(2011)Autophagy: renovation of cells and tissues Cell 147 728-741
[2]  
Komatsu M(2021)Autophagy and ALS: mechanistic insights and therapeutic implications Autophagy 15 1682-1693
[3]  
Chua JP(2019)Autophagy-dependent secretion: mechanism, factors secreted, and disease implications Autophagy 133 228114-284
[4]  
De Calbiac H(2020)Autophagy and endocytosis—interconnections and interdependencies J Cell Sci 74 277-1085
[5]  
Kabashi E(2012)Regulation of presynaptic neurotransmission by macroautophagy Neuron 13 1084-965
[6]  
Barmada SJ(2017)Cellular and molecular mechanism for secretory autophagy Autophagy 16 956-822
[7]  
New J(2009)Vesicular trafficking and autophagosome formation Cell Death Differ 217 813-581
[8]  
Thomas SM(2018)Beyond self-eating: the control of nonautophagic functions and signaling pathways by autophagyrelated proteins J Cell Biol 67 571-17
[9]  
Birgisdottir ÅB(2019)The conceptual introduction of the “demyelinating Schwann cell” in peripheral demyelinating neuropathies Glia 28 7-742
[10]  
Johansen T(2014)Contrasting the glial response to axon injury in the central and peripheral nervous systems Dev Cell 64 730-168