NMR CHARACTERIZATION OF SELF-ASSOCIATION DOMAINS PROMOTED BY INTERACTIONS WITH LC8 HUB PROTEIN

Most proteins in interaction networks have a small number of partners, while a few, called hubs, participate in a large number of interactions and play a central role in cell homeostasis. One highly conserved hub is a protein called LC8 that was originally identified as an essential component of the...

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Main Authors: Elisar Barbar, Afua Nyarko
Format: Article
Language:English
Published: Elsevier 2014-02-01
Series:Computational and Structural Biotechnology Journal
Online Access:http://www.sciencedirect.com/science/article/pii/S2001037014600064
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spelling doaj-caf71efc9456431c93cd0515ea2fc21a2020-11-24T22:18:49ZengElsevierComputational and Structural Biotechnology Journal2001-03702014-02-0191411010.5936/csbj.201402003NMR CHARACTERIZATION OF SELF-ASSOCIATION DOMAINS PROMOTED BY INTERACTIONS WITH LC8 HUB PROTEINElisar Barbar0Afua Nyarko1Department of Biochemistry and Biophysics, Oregon State University, Corvallis, Oregon 97331, United StatesDepartment of Biochemistry and Biophysics, Oregon State University, Corvallis, Oregon 97331, United StatesMost proteins in interaction networks have a small number of partners, while a few, called hubs, participate in a large number of interactions and play a central role in cell homeostasis. One highly conserved hub is a protein called LC8 that was originally identified as an essential component of the multi-subunit complex dynein but later shown to be also critical in multiple protein complexes in diverse systems. What is intriguing about this hub protein is that it does not passively bind its various partners but emerging evidence suggests that LC8 acts as a dimerization engine that promotes self-association and/or higher order organization of its primarily disordered monomeric partners. This structural organization process does not require ATP but is triggered by long-range allosteric regulation initiated by LC8 binding a pair of disordered chains forming a bivalent or polybivalent scaffold. This review focuses on the role of LC8 in promoting self-association of two of its binding partners, a dynein intermediate chain and a non dynein protein called Swallow.http://www.sciencedirect.com/science/article/pii/S2001037014600064
collection DOAJ
language English
format Article
sources DOAJ
author Elisar Barbar
Afua Nyarko
spellingShingle Elisar Barbar
Afua Nyarko
NMR CHARACTERIZATION OF SELF-ASSOCIATION DOMAINS PROMOTED BY INTERACTIONS WITH LC8 HUB PROTEIN
Computational and Structural Biotechnology Journal
author_facet Elisar Barbar
Afua Nyarko
author_sort Elisar Barbar
title NMR CHARACTERIZATION OF SELF-ASSOCIATION DOMAINS PROMOTED BY INTERACTIONS WITH LC8 HUB PROTEIN
title_short NMR CHARACTERIZATION OF SELF-ASSOCIATION DOMAINS PROMOTED BY INTERACTIONS WITH LC8 HUB PROTEIN
title_full NMR CHARACTERIZATION OF SELF-ASSOCIATION DOMAINS PROMOTED BY INTERACTIONS WITH LC8 HUB PROTEIN
title_fullStr NMR CHARACTERIZATION OF SELF-ASSOCIATION DOMAINS PROMOTED BY INTERACTIONS WITH LC8 HUB PROTEIN
title_full_unstemmed NMR CHARACTERIZATION OF SELF-ASSOCIATION DOMAINS PROMOTED BY INTERACTIONS WITH LC8 HUB PROTEIN
title_sort nmr characterization of self-association domains promoted by interactions with lc8 hub protein
publisher Elsevier
series Computational and Structural Biotechnology Journal
issn 2001-0370
publishDate 2014-02-01
description Most proteins in interaction networks have a small number of partners, while a few, called hubs, participate in a large number of interactions and play a central role in cell homeostasis. One highly conserved hub is a protein called LC8 that was originally identified as an essential component of the multi-subunit complex dynein but later shown to be also critical in multiple protein complexes in diverse systems. What is intriguing about this hub protein is that it does not passively bind its various partners but emerging evidence suggests that LC8 acts as a dimerization engine that promotes self-association and/or higher order organization of its primarily disordered monomeric partners. This structural organization process does not require ATP but is triggered by long-range allosteric regulation initiated by LC8 binding a pair of disordered chains forming a bivalent or polybivalent scaffold. This review focuses on the role of LC8 in promoting self-association of two of its binding partners, a dynein intermediate chain and a non dynein protein called Swallow.
url http://www.sciencedirect.com/science/article/pii/S2001037014600064
work_keys_str_mv AT elisarbarbar nmrcharacterizationofselfassociationdomainspromotedbyinteractionswithlc8hubprotein
AT afuanyarko nmrcharacterizationofselfassociationdomainspromotedbyinteractionswithlc8hubprotein
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