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Ubiquitin-Mimicking Peptides Transfer Differentiates by E1 and E2 Enzymes

Ubiquitin and ubiquitin like proteins (UBLs) play key roles in eukaryotes. These proteins are attached to their target proteins through an E1-E2-E3 cascade and modify the functions of these proteins. Since the discovery of ubiquitin, several UBLs have been identified, including Nedd8, SUMO, ISG15, a...

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Autores principales: Jin, Bo, Wang, Jiayue, Liu, Xiangnan, Fang, Shuai, Jiang, Bo, Hofmann, Kay, Yin, Jun, Zhao, Bo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6136576/
https://www.ncbi.nlm.nih.gov/pubmed/30246024
http://dx.doi.org/10.1155/2018/6062520
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author Jin, Bo
Wang, Jiayue
Liu, Xiangnan
Fang, Shuai
Jiang, Bo
Hofmann, Kay
Yin, Jun
Zhao, Bo
author_facet Jin, Bo
Wang, Jiayue
Liu, Xiangnan
Fang, Shuai
Jiang, Bo
Hofmann, Kay
Yin, Jun
Zhao, Bo
author_sort Jin, Bo
collection PubMed
description Ubiquitin and ubiquitin like proteins (UBLs) play key roles in eukaryotes. These proteins are attached to their target proteins through an E1-E2-E3 cascade and modify the functions of these proteins. Since the discovery of ubiquitin, several UBLs have been identified, including Nedd8, SUMO, ISG15, and Atg8. Ubiquitin and UBLs share a similar three-dimensional structure: β-grasp fold and an X-X-[R/A/E/K]-X-X-[G/X]-G motif at the C-terminus. We have previously reported that ubiquitin, Nedd8, and SUMO mimicking peptides which all contain the conserved motif X-X-[R/A/E/K]-X-X-[G/X]-G still retained their reactivity toward their corresponding E1, E2, and E3 enzymes. In our current study, we investigated whether such C-terminal peptides could still be transferred onto related pathway enzymes to probe the function of these enzymes when they are fused with a protein. By bioinformatic search of protein databases, we selected eight proteins carrying the X-X-[R/A/E/K]-X-X-[G/X]-G motif at the C-terminus of the β-grasp fold. We synthesized the C-terminal sequences of these candidates as short peptides and found that three of them showed significant reactivity with the ubiquitin E1 enzyme Ube1. We next fused the three reactive short peptides to three different protein frames, including their respective native protein frames, a ubiquitin frame and a peptidyl carrier protein (PCP) frame, and measured the reactivities of these peptide-fused proteins with Ube1. Peptide-fused proteins on ubiquitin and PCP frames showed obvious reactivity with Ube1. However, when we measured E2 UbcH7 transfer, we found that the PCP-peptide fusions lost their reactivity with UbcH7. Taken together, these results suggested that the recognition of E2 enzymes with peptide-fused proteins depended not only on the C-terminal sequences of the ubiquitin-mimicking peptides, but also on the overall structures of the protein frames.
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spelling pubmed-61365762018-09-23 Ubiquitin-Mimicking Peptides Transfer Differentiates by E1 and E2 Enzymes Jin, Bo Wang, Jiayue Liu, Xiangnan Fang, Shuai Jiang, Bo Hofmann, Kay Yin, Jun Zhao, Bo Biomed Res Int Research Article Ubiquitin and ubiquitin like proteins (UBLs) play key roles in eukaryotes. These proteins are attached to their target proteins through an E1-E2-E3 cascade and modify the functions of these proteins. Since the discovery of ubiquitin, several UBLs have been identified, including Nedd8, SUMO, ISG15, and Atg8. Ubiquitin and UBLs share a similar three-dimensional structure: β-grasp fold and an X-X-[R/A/E/K]-X-X-[G/X]-G motif at the C-terminus. We have previously reported that ubiquitin, Nedd8, and SUMO mimicking peptides which all contain the conserved motif X-X-[R/A/E/K]-X-X-[G/X]-G still retained their reactivity toward their corresponding E1, E2, and E3 enzymes. In our current study, we investigated whether such C-terminal peptides could still be transferred onto related pathway enzymes to probe the function of these enzymes when they are fused with a protein. By bioinformatic search of protein databases, we selected eight proteins carrying the X-X-[R/A/E/K]-X-X-[G/X]-G motif at the C-terminus of the β-grasp fold. We synthesized the C-terminal sequences of these candidates as short peptides and found that three of them showed significant reactivity with the ubiquitin E1 enzyme Ube1. We next fused the three reactive short peptides to three different protein frames, including their respective native protein frames, a ubiquitin frame and a peptidyl carrier protein (PCP) frame, and measured the reactivities of these peptide-fused proteins with Ube1. Peptide-fused proteins on ubiquitin and PCP frames showed obvious reactivity with Ube1. However, when we measured E2 UbcH7 transfer, we found that the PCP-peptide fusions lost their reactivity with UbcH7. Taken together, these results suggested that the recognition of E2 enzymes with peptide-fused proteins depended not only on the C-terminal sequences of the ubiquitin-mimicking peptides, but also on the overall structures of the protein frames. Hindawi 2018-08-30 /pmc/articles/PMC6136576/ /pubmed/30246024 http://dx.doi.org/10.1155/2018/6062520 Text en Copyright © 2018 Bo Jin et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Jin, Bo
Wang, Jiayue
Liu, Xiangnan
Fang, Shuai
Jiang, Bo
Hofmann, Kay
Yin, Jun
Zhao, Bo
Ubiquitin-Mimicking Peptides Transfer Differentiates by E1 and E2 Enzymes
title Ubiquitin-Mimicking Peptides Transfer Differentiates by E1 and E2 Enzymes
title_full Ubiquitin-Mimicking Peptides Transfer Differentiates by E1 and E2 Enzymes
title_fullStr Ubiquitin-Mimicking Peptides Transfer Differentiates by E1 and E2 Enzymes
title_full_unstemmed Ubiquitin-Mimicking Peptides Transfer Differentiates by E1 and E2 Enzymes
title_short Ubiquitin-Mimicking Peptides Transfer Differentiates by E1 and E2 Enzymes
title_sort ubiquitin-mimicking peptides transfer differentiates by e1 and e2 enzymes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6136576/
https://www.ncbi.nlm.nih.gov/pubmed/30246024
http://dx.doi.org/10.1155/2018/6062520
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