Proteomics

Dataset Information

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NRBF2 orchestrates autophagic flux and adult hippocampal neurogenesis in chronic stress-induced depression


ABSTRACT: By precisely dissected LC-MS/MS for proteomics and phosphoproteomics, we found that deletion of NRBF2 disrupts neurogenesis-related protein network in the DG, such as neurogenesis, cell development, cell morphogenesis, cellular homeostasis, and synaptic plasticity.

INSTRUMENT(S): Q Exactive

ORGANISM(S): Mus Musculus (mouse)

TISSUE(S): Brain

SUBMITTER: Shaoqi Zhang  

LAB HEAD: Jian-Guo Chen

PROVIDER: PXD034382 | Pride | 2023-10-24

REPOSITORIES: Pride

Dataset's files

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Action DRS
WD152PRMNT_MIX1.raw Raw
WD152PRMNT_MIX2.raw Raw
WD152PRMNT_MIX3.raw Raw
WD152PRMNT_MIX4.raw Raw
WD152TPST_Fr1.raw Raw
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Publications

Cell type-specific NRBF2 orchestrates autophagic flux and adult hippocampal neurogenesis in chronic stress-induced depression.

Zhang Shao-Qi SQ   Deng Qiao Q   Zhu Qi Q   Hu Zhuang-Li ZL   Long Li-Hong LH   Wu Peng-Fei PF   He Jin-Gang JG   Chen Hong-Sheng HS   Yue Zhenyu Z   Lu Jia-Hong JH   Wang Fang F   Chen Jian-Guo JG  

Cell discovery 20230829 1


Dysfunctional autophagy and impairment of adult hippocampal neurogenesis (AHN) each contribute to the pathogenesis of major depressive disorder (MDD). However, whether dysfunctional autophagy is linked to aberrant AHN underlying MDD remains unclear. Here we demonstrate that the expression of nuclear receptor binding factor 2 (NRBF2), a component of autophagy-associated PIK3C3/VPS34-containing phosphatidylinositol 3-kinase complex, is attenuated in the dentate gyrus (DG) under chronic stress. NRB  ...[more]

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