关键词: Apoptosis Autophagy Oxidative stress TMEM59 TMEM59L

Mesh : Animals Anxiety / pathology Apoptosis / drug effects Autophagy / drug effects Autophagy-Related Protein 5 / metabolism Autophagy-Related Proteins Behavior, Animal Carrier Proteins / metabolism Caspase 3 / metabolism Dependovirus / metabolism Depression / pathology Down-Regulation / drug effects Gene Knockdown Techniques HEK293 Cells HeLa Cells Humans Hydrogen Peroxide / toxicity Membrane Proteins / metabolism Memory / drug effects Mice, Inbred C57BL Nerve Tissue Proteins / metabolism Neurons / drug effects metabolism pathology Neuroprotection / drug effects Oxidative Stress / drug effects Protein Binding / drug effects Protein Transport / drug effects

来  源:   DOI:10.1007/s12035-016-9997-9   PDF(Sci-hub)

Abstract:
TMEM59L is a newly identified brain-specific membrane-anchored protein with unknown functions. Herein we found that both TMEM59L and its homolog, TMEM59, are localized in Golgi and endosomes. However, in contrast to a ubiquitous and relatively stable temporal expression of TMEM59, TMEM59L expression was limited in neurons and increased during development. We also found that both TMEM59L and TMEM59 interacted with ATG5 and ATG16L1, and that overexpression of them triggered cell autophagy. However, overexpression of TMEM59L induced intrinsic caspase-dependent apoptosis more dramatically than TMEM59. In addition, downregulation of TMEM59L prevented neuronal cell death and caspase-3 activation caused by hydrogen peroxide insults and reduced the lipidation of LC3B. Finally, we found that AAV-mediated knockdown of TMEM59L in mice significantly ameliorated caspase-3 activation, increased mouse duration in the open arm during elevated plus maze test, reduced mouse immobility time during forced swim test, and enhanced mouse memory during Y-maze and Morris water maze tests. Together, our study indicates that TMEM59L is a pro-apoptotic neuronal protein involved in animal behaviors such as anxiety, depression, and memory, and that TMEM59L downregulation protects neurons against oxidative stress.
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