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Structural insights into the nanomolar affinity of RING E3 ligase ZNRF1 for Ube2N and its functional implications

RING (Really Interesting New Gene) domains in ubiquitin RING E3 ligases exclusively engage ubiquitin (Ub)-loaded E2s to facilitate ubiquitination of their substrates. Despite such specificity, all RINGs characterized till date bind unloaded E2s with dissociation constants (K(d)s) in the micromolar t...

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Autores principales: Behera, Adaitya Prasad, Naskar, Pritam, Agarwal, Shubhangi, Banka, Prerana Agarwal, Poddar, Asim, Datta, Ajit B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5941314/
https://www.ncbi.nlm.nih.gov/pubmed/29626159
http://dx.doi.org/10.1042/BCJ20170909
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author Behera, Adaitya Prasad
Naskar, Pritam
Agarwal, Shubhangi
Banka, Prerana Agarwal
Poddar, Asim
Datta, Ajit B.
author_facet Behera, Adaitya Prasad
Naskar, Pritam
Agarwal, Shubhangi
Banka, Prerana Agarwal
Poddar, Asim
Datta, Ajit B.
author_sort Behera, Adaitya Prasad
collection PubMed
description RING (Really Interesting New Gene) domains in ubiquitin RING E3 ligases exclusively engage ubiquitin (Ub)-loaded E2s to facilitate ubiquitination of their substrates. Despite such specificity, all RINGs characterized till date bind unloaded E2s with dissociation constants (K(d)s) in the micromolar to the sub-millimolar range. Here, we show that the RING domain of E3 ligase ZNRF1, an essential E3 ligase implicated in diverse cellular pathways, binds Ube2N with a K(d) of ∼50 nM. This high-affinity interaction is exclusive for Ube2N as ZNRF1 interacts with Ube2D2 with a K(d) of ∼1 µM, alike few other E3s. The crystal structure of ZNRF1 C-terminal domain in complex with Ube2N coupled with mutational analyses reveals the molecular basis of this unusual affinity. We further demonstrate that the ubiquitination efficiency of ZNRF1 : E2 pairs correlates with their affinity. Intriguingly, as a consequence of its high E2 affinity, an excess of ZNRF1 inhibits Ube2N-mediated ubiquitination at concentrations ≥500 nM instead of showing enhanced ubiquitination. This suggests a novel mode of activity regulation of E3 ligases and emphasizes the importance of E3-E2 balance for the optimum activity. Based on our results, we propose that overexpression-based functional analyses on E3 ligases such as ZNRF1 must be approached with caution as enhanced cellular levels might result in aberrant modification activity.
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spelling pubmed-59413142018-05-15 Structural insights into the nanomolar affinity of RING E3 ligase ZNRF1 for Ube2N and its functional implications Behera, Adaitya Prasad Naskar, Pritam Agarwal, Shubhangi Banka, Prerana Agarwal Poddar, Asim Datta, Ajit B. Biochem J Research Articles RING (Really Interesting New Gene) domains in ubiquitin RING E3 ligases exclusively engage ubiquitin (Ub)-loaded E2s to facilitate ubiquitination of their substrates. Despite such specificity, all RINGs characterized till date bind unloaded E2s with dissociation constants (K(d)s) in the micromolar to the sub-millimolar range. Here, we show that the RING domain of E3 ligase ZNRF1, an essential E3 ligase implicated in diverse cellular pathways, binds Ube2N with a K(d) of ∼50 nM. This high-affinity interaction is exclusive for Ube2N as ZNRF1 interacts with Ube2D2 with a K(d) of ∼1 µM, alike few other E3s. The crystal structure of ZNRF1 C-terminal domain in complex with Ube2N coupled with mutational analyses reveals the molecular basis of this unusual affinity. We further demonstrate that the ubiquitination efficiency of ZNRF1 : E2 pairs correlates with their affinity. Intriguingly, as a consequence of its high E2 affinity, an excess of ZNRF1 inhibits Ube2N-mediated ubiquitination at concentrations ≥500 nM instead of showing enhanced ubiquitination. This suggests a novel mode of activity regulation of E3 ligases and emphasizes the importance of E3-E2 balance for the optimum activity. Based on our results, we propose that overexpression-based functional analyses on E3 ligases such as ZNRF1 must be approached with caution as enhanced cellular levels might result in aberrant modification activity. Portland Press Ltd. 2018-05-15 2018-05-09 /pmc/articles/PMC5941314/ /pubmed/29626159 http://dx.doi.org/10.1042/BCJ20170909 Text en © 2018 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Articles
Behera, Adaitya Prasad
Naskar, Pritam
Agarwal, Shubhangi
Banka, Prerana Agarwal
Poddar, Asim
Datta, Ajit B.
Structural insights into the nanomolar affinity of RING E3 ligase ZNRF1 for Ube2N and its functional implications
title Structural insights into the nanomolar affinity of RING E3 ligase ZNRF1 for Ube2N and its functional implications
title_full Structural insights into the nanomolar affinity of RING E3 ligase ZNRF1 for Ube2N and its functional implications
title_fullStr Structural insights into the nanomolar affinity of RING E3 ligase ZNRF1 for Ube2N and its functional implications
title_full_unstemmed Structural insights into the nanomolar affinity of RING E3 ligase ZNRF1 for Ube2N and its functional implications
title_short Structural insights into the nanomolar affinity of RING E3 ligase ZNRF1 for Ube2N and its functional implications
title_sort structural insights into the nanomolar affinity of ring e3 ligase znrf1 for ube2n and its functional implications
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5941314/
https://www.ncbi.nlm.nih.gov/pubmed/29626159
http://dx.doi.org/10.1042/BCJ20170909
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