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Publication : Calmodulin regulates MGRN1-GP78 interaction mediated ubiquitin proteasomal degradation system.

First Author  Mukherjee R Year  2019
Journal  FASEB J Volume  33
Issue  2 Pages  1927-1945
PubMed ID  30230921 Mgi Jnum  J:285995
Mgi Id  MGI:6387402 Doi  10.1096/fj.201701413RRR
Citation  Mukherjee R, et al. (2019) Calmodulin regulates MGRN1-GP78 interaction mediated ubiquitin proteasomal degradation system. FASEB J 33(2):1927-1945
abstractText  The mechanism by which the endoplasmic reticulum (ER) ubiquitin ligases sense stress to potentiate their activity is poorly understood. GP78, an ER E3 ligase, is best known for its role in ER-associated protein degradation, although its activity is also linked to mitophagy, ER-mitochondria junctions, and MAPK signaling, thus highlighting the importance of understanding its regulation. In healthy cells, Mahogunin really interesting new gene (RING) finger 1 (MGRN1) interacts with GP78 and proteasomally degrades it to alleviate mitophagy. Here, we identify calmodulin (CaM) as the adapter protein that senses fluctuating cytosolic Ca(2+) levels and modulates the Ca(2+)-dependent MGRN1-GP78 interactions. When stress elevates cytosolic Ca(2+) levels in cultured and primary neuronal cells, CaM binds to both E3 ligases and inhibits their interaction. Molecular docking, simulation, and biophysical studies show that CaM interacts with both proteins with different affinities and binding modes. The physiological impact of this interaction switch manifests in the regulation of ER-associated protein degradation, ER-mitochondria junctions, and relative distribution of smooth ER and rough ER.-Mukherjee, R., Bhattacharya, A., Sau, A., Basu, S., Chakrabarti, S., Chakrabarti, O. Calmodulin regulates MGRN1-GP78 interaction mediated ubiquitin proteasomal degradation system.
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