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Publication : Regulation of BMP4/Dpp retrotranslocation and signaling by deglycosylation.

First Author  Galeone A Year  2020
Journal  Elife Volume  9
PubMed ID  32720893 Mgi Jnum  J:313458
Mgi Id  MGI:6795113 Doi  10.7554/eLife.55596
Citation  Galeone A, et al. (2020) Regulation of BMP4/Dpp retrotranslocation and signaling by deglycosylation. Elife 9:e55596
abstractText  During endoplasmic reticulum-associated degradation (ERAD), the cytoplasmic enzyme N-glycanase 1 (NGLY1) is proposed to remove N-glycans from misfolded N-glycoproteins after their retrotranslocation from the ER to the cytosol. We previously reported that NGLY1 regulates Drosophila BMP signaling in a tissue-specific manner (Galeone et al., 2017). Here, we establish the Drosophila Dpp and its mouse ortholog BMP4 as biologically relevant targets of NGLY1 and find, unexpectedly, that NGLY1-mediated deglycosylation of misfolded BMP4 is required for its retrotranslocation. Accumulation of misfolded BMP4 in the ER results in ER stress and prompts the ER recruitment of NGLY1. The ER-associated NGLY1 then deglycosylates misfolded BMP4 molecules to promote their retrotranslocation and proteasomal degradation, thereby allowing properly-folded BMP4 molecules to proceed through the secretory pathway and activate signaling in other cells. Our study redefines the role of NGLY1 during ERAD and suggests that impaired BMP4 signaling might underlie some of the NGLY1 deficiency patient phenotypes.
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