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Functional Subunits of Eukaryotic Chaperonin CCT/TRiC in Protein Folding

Molecular chaperones are a class of proteins responsible for proper folding of a large number of polypeptides in both prokaryotic and eukaryotic cells. Newly synthesized polypeptides are prone to nonspecific interactions, and many of them make toxic aggregates in absence of chaperones. The eukaryoti...

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Autores principales: Kabir, M. Anaul, Uddin, Wasim, Narayanan, Aswathy, Reddy, Praveen Kumar, Jairajpuri, M. Aman, Sherman, Fred, Ahmad, Zulfiqar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE-Hindawi Access to Research 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3268035/
https://www.ncbi.nlm.nih.gov/pubmed/22312474
http://dx.doi.org/10.4061/2011/843206
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author Kabir, M. Anaul
Uddin, Wasim
Narayanan, Aswathy
Reddy, Praveen Kumar
Jairajpuri, M. Aman
Sherman, Fred
Ahmad, Zulfiqar
author_facet Kabir, M. Anaul
Uddin, Wasim
Narayanan, Aswathy
Reddy, Praveen Kumar
Jairajpuri, M. Aman
Sherman, Fred
Ahmad, Zulfiqar
author_sort Kabir, M. Anaul
collection PubMed
description Molecular chaperones are a class of proteins responsible for proper folding of a large number of polypeptides in both prokaryotic and eukaryotic cells. Newly synthesized polypeptides are prone to nonspecific interactions, and many of them make toxic aggregates in absence of chaperones. The eukaryotic chaperonin CCT is a large, multisubunit, cylindrical structure having two identical rings stacked back to back. Each ring is composed of eight different but similar subunits and each subunit has three distinct domains. CCT assists folding of actin, tubulin, and numerous other cellular proteins in an ATP-dependent manner. The catalytic cooperativity of ATP binding/hydrolysis in CCT occurs in a sequential manner different from concerted cooperativity as shown for GroEL. Unlike GroEL, CCT does not have GroES-like cofactor, rather it has a built-in lid structure responsible for closing the central cavity. The CCT complex recognizes its substrates through diverse mechanisms involving hydrophobic or electrostatic interactions. Upstream factors like Hsp70 and Hsp90 also work in a concerted manner to transfer the substrate to CCT. Moreover, prefoldin, phosducin-like proteins, and Bag3 protein interact with CCT and modulate its function for the fine-tuning of protein folding process. Any misregulation of protein folding process leads to the formation of misfolded proteins or toxic aggregates which are linked to multiple pathological disorders.
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spelling pubmed-32680352012-02-06 Functional Subunits of Eukaryotic Chaperonin CCT/TRiC in Protein Folding Kabir, M. Anaul Uddin, Wasim Narayanan, Aswathy Reddy, Praveen Kumar Jairajpuri, M. Aman Sherman, Fred Ahmad, Zulfiqar J Amino Acids Review Article Molecular chaperones are a class of proteins responsible for proper folding of a large number of polypeptides in both prokaryotic and eukaryotic cells. Newly synthesized polypeptides are prone to nonspecific interactions, and many of them make toxic aggregates in absence of chaperones. The eukaryotic chaperonin CCT is a large, multisubunit, cylindrical structure having two identical rings stacked back to back. Each ring is composed of eight different but similar subunits and each subunit has three distinct domains. CCT assists folding of actin, tubulin, and numerous other cellular proteins in an ATP-dependent manner. The catalytic cooperativity of ATP binding/hydrolysis in CCT occurs in a sequential manner different from concerted cooperativity as shown for GroEL. Unlike GroEL, CCT does not have GroES-like cofactor, rather it has a built-in lid structure responsible for closing the central cavity. The CCT complex recognizes its substrates through diverse mechanisms involving hydrophobic or electrostatic interactions. Upstream factors like Hsp70 and Hsp90 also work in a concerted manner to transfer the substrate to CCT. Moreover, prefoldin, phosducin-like proteins, and Bag3 protein interact with CCT and modulate its function for the fine-tuning of protein folding process. Any misregulation of protein folding process leads to the formation of misfolded proteins or toxic aggregates which are linked to multiple pathological disorders. SAGE-Hindawi Access to Research 2011 2011-07-02 /pmc/articles/PMC3268035/ /pubmed/22312474 http://dx.doi.org/10.4061/2011/843206 Text en Copyright © 2011 M. Anaul Kabir et al. https://creativecommons.org/licenses/by/3.0/ 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 Review Article
Kabir, M. Anaul
Uddin, Wasim
Narayanan, Aswathy
Reddy, Praveen Kumar
Jairajpuri, M. Aman
Sherman, Fred
Ahmad, Zulfiqar
Functional Subunits of Eukaryotic Chaperonin CCT/TRiC in Protein Folding
title Functional Subunits of Eukaryotic Chaperonin CCT/TRiC in Protein Folding
title_full Functional Subunits of Eukaryotic Chaperonin CCT/TRiC in Protein Folding
title_fullStr Functional Subunits of Eukaryotic Chaperonin CCT/TRiC in Protein Folding
title_full_unstemmed Functional Subunits of Eukaryotic Chaperonin CCT/TRiC in Protein Folding
title_short Functional Subunits of Eukaryotic Chaperonin CCT/TRiC in Protein Folding
title_sort functional subunits of eukaryotic chaperonin cct/tric in protein folding
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3268035/
https://www.ncbi.nlm.nih.gov/pubmed/22312474
http://dx.doi.org/10.4061/2011/843206
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