Cargando…

The importance of the compact disordered state in the fuzzy interactions between intrinsically disordered proteins

The intrinsically disordered C-terminal domain (CTD) of protein 4.1G is able to specifically bind a 26-residue intrinsically disordered region of NuMA, forming a dynamic fuzzy complex. As one of a few cases of extremely fuzzy interactions between two intrinsically disordered proteins/regions (IDPs/I...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Dan, Wu, Shaowen, Wang, Dongdong, Song, Xingyu, Yang, Maohua, Zhang, Wolun, Huang, Shaohui, Weng, Jingwei, Liu, Zhijun, Wang, Wenning
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8864705/
https://www.ncbi.nlm.nih.gov/pubmed/35310482
http://dx.doi.org/10.1039/d1sc06825c
_version_ 1784655511786881024
author Wang, Dan
Wu, Shaowen
Wang, Dongdong
Song, Xingyu
Yang, Maohua
Zhang, Wolun
Huang, Shaohui
Weng, Jingwei
Liu, Zhijun
Wang, Wenning
author_facet Wang, Dan
Wu, Shaowen
Wang, Dongdong
Song, Xingyu
Yang, Maohua
Zhang, Wolun
Huang, Shaohui
Weng, Jingwei
Liu, Zhijun
Wang, Wenning
author_sort Wang, Dan
collection PubMed
description The intrinsically disordered C-terminal domain (CTD) of protein 4.1G is able to specifically bind a 26-residue intrinsically disordered region of NuMA, forming a dynamic fuzzy complex. As one of a few cases of extremely fuzzy interactions between two intrinsically disordered proteins/regions (IDPs/IDRs) without induced folding, the principle of the binding is unknown. Here, we combined experimental and computational methods to explore the detailed mechanism of the interaction between 4.1G-CTD and NuMA. MD simulations suggest that the kinetic hub states in the structure ensemble of 4.1G-CTD are favorable in the fuzzy complex. The feature of these hub states is that the binding ‘hot spot’ motifs βA and βB exhibit β strand propensities and are well packed to each other. The binding between 4.1G-CTD and NuMA is disrupted at low pH, which changes the intramolecular packing of 4.1G-CTD and weakens the packing between βA and βB motifs. Low pH conditions also lead to increased hydrodynamic radius and acceleration of backbone dynamics of 4.1G-CTD. All these results underscore the importance of tertiary structural arrangements and overall compactness of 4.1G-CTD in its binding to NuMA, i.e. the compact disordered state of 4.1G-CTD is crucial for binding. Different from the short linear motifs (SLiMs) that are often found to mediate IDP interactions, 4.1G-CTD functions as an intrinsically disordered domain (IDD), which is a functional and structural unit similar to conventional protein domains. This work sheds light on the molecular recognition mechanism of IDPs/IDRs and expands the conventional structure-function paradigm in protein biochemistry.
format Online
Article
Text
id pubmed-8864705
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-88647052022-03-17 The importance of the compact disordered state in the fuzzy interactions between intrinsically disordered proteins Wang, Dan Wu, Shaowen Wang, Dongdong Song, Xingyu Yang, Maohua Zhang, Wolun Huang, Shaohui Weng, Jingwei Liu, Zhijun Wang, Wenning Chem Sci Chemistry The intrinsically disordered C-terminal domain (CTD) of protein 4.1G is able to specifically bind a 26-residue intrinsically disordered region of NuMA, forming a dynamic fuzzy complex. As one of a few cases of extremely fuzzy interactions between two intrinsically disordered proteins/regions (IDPs/IDRs) without induced folding, the principle of the binding is unknown. Here, we combined experimental and computational methods to explore the detailed mechanism of the interaction between 4.1G-CTD and NuMA. MD simulations suggest that the kinetic hub states in the structure ensemble of 4.1G-CTD are favorable in the fuzzy complex. The feature of these hub states is that the binding ‘hot spot’ motifs βA and βB exhibit β strand propensities and are well packed to each other. The binding between 4.1G-CTD and NuMA is disrupted at low pH, which changes the intramolecular packing of 4.1G-CTD and weakens the packing between βA and βB motifs. Low pH conditions also lead to increased hydrodynamic radius and acceleration of backbone dynamics of 4.1G-CTD. All these results underscore the importance of tertiary structural arrangements and overall compactness of 4.1G-CTD in its binding to NuMA, i.e. the compact disordered state of 4.1G-CTD is crucial for binding. Different from the short linear motifs (SLiMs) that are often found to mediate IDP interactions, 4.1G-CTD functions as an intrinsically disordered domain (IDD), which is a functional and structural unit similar to conventional protein domains. This work sheds light on the molecular recognition mechanism of IDPs/IDRs and expands the conventional structure-function paradigm in protein biochemistry. The Royal Society of Chemistry 2022-01-28 /pmc/articles/PMC8864705/ /pubmed/35310482 http://dx.doi.org/10.1039/d1sc06825c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wang, Dan
Wu, Shaowen
Wang, Dongdong
Song, Xingyu
Yang, Maohua
Zhang, Wolun
Huang, Shaohui
Weng, Jingwei
Liu, Zhijun
Wang, Wenning
The importance of the compact disordered state in the fuzzy interactions between intrinsically disordered proteins
title The importance of the compact disordered state in the fuzzy interactions between intrinsically disordered proteins
title_full The importance of the compact disordered state in the fuzzy interactions between intrinsically disordered proteins
title_fullStr The importance of the compact disordered state in the fuzzy interactions between intrinsically disordered proteins
title_full_unstemmed The importance of the compact disordered state in the fuzzy interactions between intrinsically disordered proteins
title_short The importance of the compact disordered state in the fuzzy interactions between intrinsically disordered proteins
title_sort importance of the compact disordered state in the fuzzy interactions between intrinsically disordered proteins
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8864705/
https://www.ncbi.nlm.nih.gov/pubmed/35310482
http://dx.doi.org/10.1039/d1sc06825c
work_keys_str_mv AT wangdan theimportanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT wushaowen theimportanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT wangdongdong theimportanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT songxingyu theimportanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT yangmaohua theimportanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT zhangwolun theimportanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT huangshaohui theimportanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT wengjingwei theimportanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT liuzhijun theimportanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT wangwenning theimportanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT wangdan importanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT wushaowen importanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT wangdongdong importanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT songxingyu importanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT yangmaohua importanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT zhangwolun importanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT huangshaohui importanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT wengjingwei importanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT liuzhijun importanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins
AT wangwenning importanceofthecompactdisorderedstateinthefuzzyinteractionsbetweenintrinsicallydisorderedproteins