NCBP2-AS2 is a mitochondrial microprotein, regulates energy metabolism and neurogenesis, and is downregulated in Alzheimer's disease
Popova, S.; Bhattarai, P.; Yilmaz, E.; Lascu, D.; Kuo, J.-H.; Erdem, G.; Coban, B.; Michling, J.; Cosacak, M. I.; Tayran, H.; Kurth, T.; Schambony, A.; Buchholz, F.; Gentzel, M.; Kizil, C.
Show abstract
Microproteins, short functional peptides encoded by small genes, are emerging as critical regulators of cellular processes, yet their roles in mitochondrial function and neurodegeneration remain underexplored. In this study, we identify NCBP2-AS2 as an evolutionarily conserved mitochondrial microprotein with significant roles in energy metabolism and neurogenesis. Using a combination of cellular and molecular approaches, including CRISPR/Cas9 knockout models, stoichiometric co- immunoprecipitation, and advanced imaging techniques, we demonstrate that NCBP2-AS2 localizes to the inner mitochondrial space and interacts with translocase of the inner membrane (TIM) chaperones. These interactions suggest a role in ATPase subunit transport, supported by the observed reductions in ATPase subunit levels and impaired glucose metabolism in NCBP2-AS2-deficient cells. In zebrafish, NCBP2-AS2 knockout led to increased astroglial proliferation, microglial abundance, and enhanced neurogenesis, particularly under amyloid pathology. Notably, we show that NCBP2-AS2 expression is consistently downregulated in human Alzheimers disease brains and zebrafish amyloidosis models, suggesting a conserved role in neurodegenerative pathology. These findings reveal a novel link between mitochondrial protein transport, energy metabolism, and neural regeneration, positioning NCBP2-AS2 as a potential therapeutic target for mitigating mitochondrial dysfunction and promoting neurogenesis in neurodegenerative diseases such as Alzheimers disease.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- ERLIN1/2 scaffolds bridge TMUB1 and RNF170 and restrict cholesterol esterification to regulate the secretory pathway 96%
- A genome-wide CRISPR functional survey of the human phagocytosis molecular machinery 95%
- An integrated stress response-independent role of GCN2 prevents excessive ribosome biogenesis and mRNA translation 95%
Similar papers in this journal
- Uncharacterized protein c17orf80: a novel interactor of human mitochondrial nucleoids 96%
- Gain-of-function genetic screen of the kinome reveals BRSK2 as an inhibitor of the NRF2 transcription factor 95%
- Nuclear-injuries by aberrant dynein-forces defeat proteostatic purposes of Lewy Body Inclusions 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.