轴浆运输
轴突变性
细胞生物学
小泡
生物
变性(医学)
平衡
线粒体
神经退行性变
化学
神经科学
信使核糖核酸
生物化学
医学
内科学
基因
膜
疾病
病理
作者
Raffaella De Pace,Saikat Ghosh,Veronica H. Ryan,Mira Sohn,Michal Jarník,Paniz Rezvan Sangsari,Nicole Y. Morgan,Ryan Dale,Michael E. Ward,Juan S. Bonifacino
标识
DOI:10.1038/s41593-024-01619-1
摘要
In neurons, RNA granules are transported along the axon for local translation away from the soma. Recent studies indicate that some of this transport involves hitchhiking of RNA granules on lysosome-related vesicles. In the present study, we leveraged the ability to prevent transport of these vesicles into the axon by knockout of the lysosome-kinesin adaptor BLOC-one-related complex (BORC) to identify a subset of axonal mRNAs that depend on lysosome-related vesicles for transport. We found that BORC knockout causes depletion of a large group of axonal mRNAs mainly encoding ribosomal and mitochondrial/oxidative phosphorylation proteins. This depletion results in mitochondrial defects and eventually leads to axonal degeneration in human induced pluripotent stem cell (iPSC)-derived and mouse neurons. Pathway analyses of the depleted mRNAs revealed a mechanistic connection of BORC deficiency with common neurodegenerative disorders. These results demonstrate that mRNA transport on lysosome-related vesicles is critical for the maintenance of axonal homeostasis and that its failure causes axonal degeneration.
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