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EDEM3 Domains Cooperate to Perform Its Overall Cell Functioning

EDEM3 recognizes and directs misfolded proteins to the ER-associated protein degradation (ERAD) process. EDEM3 was predicted to act as lectin or as a mannosidase because of its homology with the GH47 catalytic domain of the Man1B1, but the contribution of the other regions remained unresolved. Here,...

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Autores principales: Manica, Georgiana, Ghenea, Simona, Munteanu, Cristian V. A., Martin, Eliza C., Butnaru, Cristian, Surleac, Marius, Chiritoiu, Gabriela N., Alexandru, Petruta R., Petrescu, Andrei-Jose, Petrescu, Stefana M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7926307/
https://www.ncbi.nlm.nih.gov/pubmed/33671632
http://dx.doi.org/10.3390/ijms22042172
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author Manica, Georgiana
Ghenea, Simona
Munteanu, Cristian V. A.
Martin, Eliza C.
Butnaru, Cristian
Surleac, Marius
Chiritoiu, Gabriela N.
Alexandru, Petruta R.
Petrescu, Andrei-Jose
Petrescu, Stefana M.
author_facet Manica, Georgiana
Ghenea, Simona
Munteanu, Cristian V. A.
Martin, Eliza C.
Butnaru, Cristian
Surleac, Marius
Chiritoiu, Gabriela N.
Alexandru, Petruta R.
Petrescu, Andrei-Jose
Petrescu, Stefana M.
author_sort Manica, Georgiana
collection PubMed
description EDEM3 recognizes and directs misfolded proteins to the ER-associated protein degradation (ERAD) process. EDEM3 was predicted to act as lectin or as a mannosidase because of its homology with the GH47 catalytic domain of the Man1B1, but the contribution of the other regions remained unresolved. Here, we dissect the molecular determinants governing EDEM3 function and its cellular interactions. LC/MS analysis indicates very few stable ER interactors, suggesting EDEM3 availability for transient substrate interactions. Sequence analysis reveals that EDEM3 consists of four consecutive modules defined as GH47, intermediate (IMD), protease-associated (PA), and intrinsically disordered (IDD) domain. Using an EDEM3 knock-out cell line, we expressed EDEM3 and domain deletion mutants to address EDEM3 function. We find that the mannosidase domain provides substrate binding even in the absence of mannose trimming and requires the IMD domain for folding. The PA and IDD domains deletions do not impair the trimming, but specifically modulate the turnover of two misfolded proteins, NHK and the soluble tyrosinase mutant. Hence, we demonstrate that EDEM3 provides a unique ERAD timing to misfolded glycoproteins, not only by its mannose trimming activity, but also by the positive and negative feedback modulated by the protease-associated and intrinsically disordered domain, respectively.
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spelling pubmed-79263072021-03-04 EDEM3 Domains Cooperate to Perform Its Overall Cell Functioning Manica, Georgiana Ghenea, Simona Munteanu, Cristian V. A. Martin, Eliza C. Butnaru, Cristian Surleac, Marius Chiritoiu, Gabriela N. Alexandru, Petruta R. Petrescu, Andrei-Jose Petrescu, Stefana M. Int J Mol Sci Article EDEM3 recognizes and directs misfolded proteins to the ER-associated protein degradation (ERAD) process. EDEM3 was predicted to act as lectin or as a mannosidase because of its homology with the GH47 catalytic domain of the Man1B1, but the contribution of the other regions remained unresolved. Here, we dissect the molecular determinants governing EDEM3 function and its cellular interactions. LC/MS analysis indicates very few stable ER interactors, suggesting EDEM3 availability for transient substrate interactions. Sequence analysis reveals that EDEM3 consists of four consecutive modules defined as GH47, intermediate (IMD), protease-associated (PA), and intrinsically disordered (IDD) domain. Using an EDEM3 knock-out cell line, we expressed EDEM3 and domain deletion mutants to address EDEM3 function. We find that the mannosidase domain provides substrate binding even in the absence of mannose trimming and requires the IMD domain for folding. The PA and IDD domains deletions do not impair the trimming, but specifically modulate the turnover of two misfolded proteins, NHK and the soluble tyrosinase mutant. Hence, we demonstrate that EDEM3 provides a unique ERAD timing to misfolded glycoproteins, not only by its mannose trimming activity, but also by the positive and negative feedback modulated by the protease-associated and intrinsically disordered domain, respectively. MDPI 2021-02-22 /pmc/articles/PMC7926307/ /pubmed/33671632 http://dx.doi.org/10.3390/ijms22042172 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Manica, Georgiana
Ghenea, Simona
Munteanu, Cristian V. A.
Martin, Eliza C.
Butnaru, Cristian
Surleac, Marius
Chiritoiu, Gabriela N.
Alexandru, Petruta R.
Petrescu, Andrei-Jose
Petrescu, Stefana M.
EDEM3 Domains Cooperate to Perform Its Overall Cell Functioning
title EDEM3 Domains Cooperate to Perform Its Overall Cell Functioning
title_full EDEM3 Domains Cooperate to Perform Its Overall Cell Functioning
title_fullStr EDEM3 Domains Cooperate to Perform Its Overall Cell Functioning
title_full_unstemmed EDEM3 Domains Cooperate to Perform Its Overall Cell Functioning
title_short EDEM3 Domains Cooperate to Perform Its Overall Cell Functioning
title_sort edem3 domains cooperate to perform its overall cell functioning
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7926307/
https://www.ncbi.nlm.nih.gov/pubmed/33671632
http://dx.doi.org/10.3390/ijms22042172
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