Cargando…

An alternative conformation of human TrpRS suggests a role of zinc in activating non-enzymatic function

Tryptophanyl-tRNA synthetase (TrpRS) in vertebrates contains a N-terminal extension in front of the catalytic core. Proteolytic removal of the N-terminal 93 amino acids gives rise to T2-TrpRS, which has potent anti-angiogenic activity mediated through its extracellular interaction with VE-cadherin....

Descripción completa

Detalles Bibliográficos
Autores principales: Xu, Xiaoling, Zhou, Huihao, Zhou, Quansheng, Hong, Fei, Vo, My-Nuong, Niu, Wanqiang, Wang, Zhiguo, Xiong, Xiaolin, Nakamura, Kanaha, Wakasugi, Keisuke, Schimmel, Paul, Yang, Xiang-Lei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6103731/
https://www.ncbi.nlm.nih.gov/pubmed/28910573
http://dx.doi.org/10.1080/15476286.2017.1377868
_version_ 1783349377326120960
author Xu, Xiaoling
Zhou, Huihao
Zhou, Quansheng
Hong, Fei
Vo, My-Nuong
Niu, Wanqiang
Wang, Zhiguo
Xiong, Xiaolin
Nakamura, Kanaha
Wakasugi, Keisuke
Schimmel, Paul
Yang, Xiang-Lei
author_facet Xu, Xiaoling
Zhou, Huihao
Zhou, Quansheng
Hong, Fei
Vo, My-Nuong
Niu, Wanqiang
Wang, Zhiguo
Xiong, Xiaolin
Nakamura, Kanaha
Wakasugi, Keisuke
Schimmel, Paul
Yang, Xiang-Lei
author_sort Xu, Xiaoling
collection PubMed
description Tryptophanyl-tRNA synthetase (TrpRS) in vertebrates contains a N-terminal extension in front of the catalytic core. Proteolytic removal of the N-terminal 93 amino acids gives rise to T2-TrpRS, which has potent anti-angiogenic activity mediated through its extracellular interaction with VE-cadherin. Zinc has been shown to have anti-angiogenic effects and can bind to human TrpRS. However, the connection between zinc and the anti-angiogenic function of TrpRS has not been explored. Here we report that zinc binding can induce structural relaxation in human TrpRS to facilitate the proteolytic generation of a T2-TrpRS-like fragment. The zinc-binding site is likely to be contained within T2-TrpRS, and the zinc-bound conformation of T2-TrpRS is mimicked by mutation H130R. We determined the crystal structure of H130R T2-TrpRS at 2.8 Å resolution, which reveals drastically different conformation from that of wild-type (WT) T2-TrpRS. The conformational change creates larger binding surfaces for VE-cadherin as suggested by molecular dynamic simulations. Surface plasmon resonance analysis indicates more than 50-fold increase in binding affinity of H130R T2-TrpRS for VE-cadherin, compared to WT T2-TrpRS. The enhanced interaction is also confirmed by a cell-based binding analysis. These results suggest that zinc plays an important role in activating TrpRS for angiogenesis regulation.
format Online
Article
Text
id pubmed-6103731
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Taylor & Francis
record_format MEDLINE/PubMed
spelling pubmed-61037312018-08-24 An alternative conformation of human TrpRS suggests a role of zinc in activating non-enzymatic function Xu, Xiaoling Zhou, Huihao Zhou, Quansheng Hong, Fei Vo, My-Nuong Niu, Wanqiang Wang, Zhiguo Xiong, Xiaolin Nakamura, Kanaha Wakasugi, Keisuke Schimmel, Paul Yang, Xiang-Lei RNA Biol Research Paper - Solicited Tryptophanyl-tRNA synthetase (TrpRS) in vertebrates contains a N-terminal extension in front of the catalytic core. Proteolytic removal of the N-terminal 93 amino acids gives rise to T2-TrpRS, which has potent anti-angiogenic activity mediated through its extracellular interaction with VE-cadherin. Zinc has been shown to have anti-angiogenic effects and can bind to human TrpRS. However, the connection between zinc and the anti-angiogenic function of TrpRS has not been explored. Here we report that zinc binding can induce structural relaxation in human TrpRS to facilitate the proteolytic generation of a T2-TrpRS-like fragment. The zinc-binding site is likely to be contained within T2-TrpRS, and the zinc-bound conformation of T2-TrpRS is mimicked by mutation H130R. We determined the crystal structure of H130R T2-TrpRS at 2.8 Å resolution, which reveals drastically different conformation from that of wild-type (WT) T2-TrpRS. The conformational change creates larger binding surfaces for VE-cadherin as suggested by molecular dynamic simulations. Surface plasmon resonance analysis indicates more than 50-fold increase in binding affinity of H130R T2-TrpRS for VE-cadherin, compared to WT T2-TrpRS. The enhanced interaction is also confirmed by a cell-based binding analysis. These results suggest that zinc plays an important role in activating TrpRS for angiogenesis regulation. Taylor & Francis 2017-11-03 /pmc/articles/PMC6103731/ /pubmed/28910573 http://dx.doi.org/10.1080/15476286.2017.1377868 Text en © 2018 The Author(s). Published with license by Taylor & Francis Group, LLC http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License (http://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited, and is not altered, transformed, or built upon in any way.
spellingShingle Research Paper - Solicited
Xu, Xiaoling
Zhou, Huihao
Zhou, Quansheng
Hong, Fei
Vo, My-Nuong
Niu, Wanqiang
Wang, Zhiguo
Xiong, Xiaolin
Nakamura, Kanaha
Wakasugi, Keisuke
Schimmel, Paul
Yang, Xiang-Lei
An alternative conformation of human TrpRS suggests a role of zinc in activating non-enzymatic function
title An alternative conformation of human TrpRS suggests a role of zinc in activating non-enzymatic function
title_full An alternative conformation of human TrpRS suggests a role of zinc in activating non-enzymatic function
title_fullStr An alternative conformation of human TrpRS suggests a role of zinc in activating non-enzymatic function
title_full_unstemmed An alternative conformation of human TrpRS suggests a role of zinc in activating non-enzymatic function
title_short An alternative conformation of human TrpRS suggests a role of zinc in activating non-enzymatic function
title_sort alternative conformation of human trprs suggests a role of zinc in activating non-enzymatic function
topic Research Paper - Solicited
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6103731/
https://www.ncbi.nlm.nih.gov/pubmed/28910573
http://dx.doi.org/10.1080/15476286.2017.1377868
work_keys_str_mv AT xuxiaoling analternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT zhouhuihao analternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT zhouquansheng analternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT hongfei analternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT vomynuong analternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT niuwanqiang analternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT wangzhiguo analternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT xiongxiaolin analternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT nakamurakanaha analternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT wakasugikeisuke analternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT schimmelpaul analternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT yangxianglei analternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT xuxiaoling alternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT zhouhuihao alternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT zhouquansheng alternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT hongfei alternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT vomynuong alternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT niuwanqiang alternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT wangzhiguo alternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT xiongxiaolin alternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT nakamurakanaha alternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT wakasugikeisuke alternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT schimmelpaul alternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction
AT yangxianglei alternativeconformationofhumantrprssuggestsaroleofzincinactivatingnonenzymaticfunction