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Solution Structure of the SGTA Dimerisation Domain and Investigation of Its Interactions with the Ubiquitin-Like Domains of BAG6 and UBL4A

BACKGROUND: The BAG6 complex resides in the cytosol and acts as a sorting point to target diverse hydrophobic protein substrates along their appropriate paths, including proteasomal degradation and ER membrane insertion. Composed of a trimeric complex of BAG6, TRC35 and UBL4A, the BAG6 complex is cl...

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Autores principales: Darby, John F., Krysztofinska, Ewelina M., Simpson, Peter J., Simon, Aline C., Leznicki, Pawel, Sriskandarajah, Newran, Bishop, David S., Hale, Lisa R., Alfano, Caterina, Conte, Maria R., Martínez-Lumbreras, Santiago, Thapaliya, Arjun, High, Stephen, Isaacson, Rivka L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4240585/
https://www.ncbi.nlm.nih.gov/pubmed/25415308
http://dx.doi.org/10.1371/journal.pone.0113281
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author Darby, John F.
Krysztofinska, Ewelina M.
Simpson, Peter J.
Simon, Aline C.
Leznicki, Pawel
Sriskandarajah, Newran
Bishop, David S.
Hale, Lisa R.
Alfano, Caterina
Conte, Maria R.
Martínez-Lumbreras, Santiago
Thapaliya, Arjun
High, Stephen
Isaacson, Rivka L.
author_facet Darby, John F.
Krysztofinska, Ewelina M.
Simpson, Peter J.
Simon, Aline C.
Leznicki, Pawel
Sriskandarajah, Newran
Bishop, David S.
Hale, Lisa R.
Alfano, Caterina
Conte, Maria R.
Martínez-Lumbreras, Santiago
Thapaliya, Arjun
High, Stephen
Isaacson, Rivka L.
author_sort Darby, John F.
collection PubMed
description BACKGROUND: The BAG6 complex resides in the cytosol and acts as a sorting point to target diverse hydrophobic protein substrates along their appropriate paths, including proteasomal degradation and ER membrane insertion. Composed of a trimeric complex of BAG6, TRC35 and UBL4A, the BAG6 complex is closely associated with SGTA, a co-chaperone from which it can obtain hydrophobic substrates. METHODOLOGY AND PRINCIPAL FINDINGS: SGTA consists of an N-terminal dimerisation domain (SGTA_NT), a central tetratricopeptide repeat (TPR) domain, and a glutamine rich region towards the C-terminus. Here we solve a solution structure of the SGTA dimerisation domain and use biophysical techniques to investigate its interaction with two different UBL domains from the BAG6 complex. The SGTA_NT structure is a dimer with a tight hydrophobic interface connecting two sets of four alpha helices. Using a combination of NMR chemical shift perturbation, isothermal titration calorimetry (ITC) and microscale thermophoresis (MST) experiments we have biochemically characterised the interactions of SGTA with components of the BAG6 complex, the ubiquitin-like domain (UBL) containing proteins UBL4A and BAG6. We demonstrate that the UBL domains from UBL4A and BAG6 directly compete for binding to SGTA at the same site. Using a combination of structural and interaction data we have implemented the HADDOCK protein-protein interaction docking tool to generate models of the SGTA-UBL complexes. SIGNIFICANCE: This atomic level information contributes to our understanding of the way in which hydrophobic proteins have their fate decided by the collaboration between SGTA and the BAG6 complex.
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spelling pubmed-42405852014-11-26 Solution Structure of the SGTA Dimerisation Domain and Investigation of Its Interactions with the Ubiquitin-Like Domains of BAG6 and UBL4A Darby, John F. Krysztofinska, Ewelina M. Simpson, Peter J. Simon, Aline C. Leznicki, Pawel Sriskandarajah, Newran Bishop, David S. Hale, Lisa R. Alfano, Caterina Conte, Maria R. Martínez-Lumbreras, Santiago Thapaliya, Arjun High, Stephen Isaacson, Rivka L. PLoS One Research Article BACKGROUND: The BAG6 complex resides in the cytosol and acts as a sorting point to target diverse hydrophobic protein substrates along their appropriate paths, including proteasomal degradation and ER membrane insertion. Composed of a trimeric complex of BAG6, TRC35 and UBL4A, the BAG6 complex is closely associated with SGTA, a co-chaperone from which it can obtain hydrophobic substrates. METHODOLOGY AND PRINCIPAL FINDINGS: SGTA consists of an N-terminal dimerisation domain (SGTA_NT), a central tetratricopeptide repeat (TPR) domain, and a glutamine rich region towards the C-terminus. Here we solve a solution structure of the SGTA dimerisation domain and use biophysical techniques to investigate its interaction with two different UBL domains from the BAG6 complex. The SGTA_NT structure is a dimer with a tight hydrophobic interface connecting two sets of four alpha helices. Using a combination of NMR chemical shift perturbation, isothermal titration calorimetry (ITC) and microscale thermophoresis (MST) experiments we have biochemically characterised the interactions of SGTA with components of the BAG6 complex, the ubiquitin-like domain (UBL) containing proteins UBL4A and BAG6. We demonstrate that the UBL domains from UBL4A and BAG6 directly compete for binding to SGTA at the same site. Using a combination of structural and interaction data we have implemented the HADDOCK protein-protein interaction docking tool to generate models of the SGTA-UBL complexes. SIGNIFICANCE: This atomic level information contributes to our understanding of the way in which hydrophobic proteins have their fate decided by the collaboration between SGTA and the BAG6 complex. Public Library of Science 2014-11-21 /pmc/articles/PMC4240585/ /pubmed/25415308 http://dx.doi.org/10.1371/journal.pone.0113281 Text en © 2014 Darby et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Darby, John F.
Krysztofinska, Ewelina M.
Simpson, Peter J.
Simon, Aline C.
Leznicki, Pawel
Sriskandarajah, Newran
Bishop, David S.
Hale, Lisa R.
Alfano, Caterina
Conte, Maria R.
Martínez-Lumbreras, Santiago
Thapaliya, Arjun
High, Stephen
Isaacson, Rivka L.
Solution Structure of the SGTA Dimerisation Domain and Investigation of Its Interactions with the Ubiquitin-Like Domains of BAG6 and UBL4A
title Solution Structure of the SGTA Dimerisation Domain and Investigation of Its Interactions with the Ubiquitin-Like Domains of BAG6 and UBL4A
title_full Solution Structure of the SGTA Dimerisation Domain and Investigation of Its Interactions with the Ubiquitin-Like Domains of BAG6 and UBL4A
title_fullStr Solution Structure of the SGTA Dimerisation Domain and Investigation of Its Interactions with the Ubiquitin-Like Domains of BAG6 and UBL4A
title_full_unstemmed Solution Structure of the SGTA Dimerisation Domain and Investigation of Its Interactions with the Ubiquitin-Like Domains of BAG6 and UBL4A
title_short Solution Structure of the SGTA Dimerisation Domain and Investigation of Its Interactions with the Ubiquitin-Like Domains of BAG6 and UBL4A
title_sort solution structure of the sgta dimerisation domain and investigation of its interactions with the ubiquitin-like domains of bag6 and ubl4a
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4240585/
https://www.ncbi.nlm.nih.gov/pubmed/25415308
http://dx.doi.org/10.1371/journal.pone.0113281
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