| Literature DB >> 34040028 |
Subrata Kumar Shil1, Yoshiteru Kagawa2, Banlanjo Abdulaziz Umaru1, Fumika Nanto-Hara3, Hirofumi Miyazaki1, Yui Yamamoto4, Shuhei Kobayashi1, Chitose Suzuki5, Takaaki Abe5, Yuji Owada6.
Abstract
Altered function of mitochondrial respiratory chain in brain cells is related to many neurodegenerative diseases. NADH Dehydrogenase (Ubiquinone) Fe-S protein 4 (Ndufs4) is one of the subunits of mitochondrial complex I and its mutation in human is associated with Leigh syndrome. However, the molecular biological role of Ndufs4 in neuronal function is poorly understood. In this study, upon Ndufs4 expression confirmation in NeuN-positive neurons, and GFAP-positive astrocytes in WT mouse hippocampus, we found significant decrease of mitochondrial respiration in Ndufs4-KO mouse hippocampus. Although there was no change in the number of NeuN positive neurons in Ndufs4-KO hippocampus, the expression of synaptophysin, a presynaptic protein, was significantly decreased. To investigate the detailed mechanism, we silenced Ndufs4 in Neuro-2a cells and we observed shorter neurite lengths with decreased expression of synaptophysin. Furthermore, western blot analysis for phosphorylated extracellular regulated kinase (pERK) revealed that Ndufs4 silencing decreases the activity of ERK signalling. These results suggest that Ndufs4-modulated mitochondrial activity may be involved in neuroplasticity via regulating synaptophysin expression.Entities:
Year: 2021 PMID: 34040028 DOI: 10.1038/s41598-021-90127-4
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379