Literature DB >> 28507162

Lipophagy prevents activity-dependent neurodegeneration due to dihydroceramide accumulation in vivo.

Wei-Hung Jung1, Chung-Chih Liu1, Yu-Lian Yu1, Yu-Chin Chang1, Wen-Yu Lien1, Hsi-Chun Chao2, Shu-Yi Huang3, Ching-Hua Kuo2, Han-Chen Ho4, Chih-Chiang Chan5.   

Abstract

Dihydroceramide desaturases are evolutionarily conserved enzymes that convert dihydroceramide (dhCer) to ceramide (Cer). While elevated Cer levels cause neurodegenerative diseases, the neuronal activity of its direct precursor, dhCer, remains unclear. We show that knockout of the fly dhCer desaturase gene, infertile crescent (ifc), results in larval lethality with increased dhCer and decreased Cer levels. Light stimulation leads to ROS increase and apoptotic cell death in ifc-KO photoreceptors, resulting in activity-dependent neurodegeneration. Lipid-containing Atg8/LC3-positive puncta accumulate in ifc-KO photoreceptors, suggesting lipophagy activation. Further enhancing lipophagy reduces lipid droplet accumulation and rescues ifc-KO defects, indicating that lipophagy plays a protective role. Reducing dhCer synthesis prevents photoreceptor degeneration and rescues ifc-KO lethality, while supplementing downstream sphingolipids does not. These results pinpoint that dhCer accumulation is responsible for ifc-KO defects. Human dhCer desaturase rescues ifc-KO larval lethality, and rapamycin reverses defects caused by dhCer accumulation in human neuroblastoma cells, suggesting evolutionarily conserved functions. This study demonstrates a novel requirement for dhCer desaturase in neuronal maintenance in vivo and shows that lipophagy activation prevents activity-dependent degeneration caused by dhCer accumulation.
© 2017 The Authors.

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Keywords:  dihydroceramide; lipophagy; neurodegeneration; photoreceptors; sphingolipid

Mesh:

Substances:

Year:  2017        PMID: 28507162      PMCID: PMC5494533          DOI: 10.15252/embr.201643480

Source DB:  PubMed          Journal:  EMBO Rep        ISSN: 1469-221X            Impact factor:   8.807


  53 in total

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2.  Lipophagy prevents activity-dependent neurodegeneration due to dihydroceramide accumulation in vivo.

Authors:  Wei-Hung Jung; Chung-Chih Liu; Yu-Lian Yu; Yu-Chin Chang; Wen-Yu Lien; Hsi-Chun Chao; Shu-Yi Huang; Ching-Hua Kuo; Han-Chen Ho; Chih-Chiang Chan
Journal:  EMBO Rep       Date:  2017-05-15       Impact factor: 8.807

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