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Conserved and divergent chaperoning effects of Hsp60/10 chaperonins on protein folding landscapes

The GroEL/ES chaperonin cavity surface charge properties, especially the negative charges, play an important role in its capacity to assist intracavity protein folding. Remarkably, the larger fraction of GroEL/ES negative charges are not conserved among different bacterial species, resulting in a la...

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Autores principales: Sadat, Anwar, Tiwari, Satyam, Sunidhi, S., Chaphalkar, Aseem, Kochar, Manisha, Ali, Mudassar, Zaidi, Zainab, Sharma, Akanksha, Verma, Kanika, Narayana Rao, Kannan Boosi, Tripathi, Manjul, Ghosh, Asmita, Gautam, Deepika, Atul, Ray, Arjun, Mapa, Koyeli, Chakraborty, Kausik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9170145/
https://www.ncbi.nlm.nih.gov/pubmed/35486698
http://dx.doi.org/10.1073/pnas.2118465119
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author Sadat, Anwar
Tiwari, Satyam
Sunidhi, S.
Chaphalkar, Aseem
Kochar, Manisha
Ali, Mudassar
Zaidi, Zainab
Sharma, Akanksha
Verma, Kanika
Narayana Rao, Kannan Boosi
Tripathi, Manjul
Ghosh, Asmita
Gautam, Deepika
Atul,
Ray, Arjun
Mapa, Koyeli
Chakraborty, Kausik
author_facet Sadat, Anwar
Tiwari, Satyam
Sunidhi, S.
Chaphalkar, Aseem
Kochar, Manisha
Ali, Mudassar
Zaidi, Zainab
Sharma, Akanksha
Verma, Kanika
Narayana Rao, Kannan Boosi
Tripathi, Manjul
Ghosh, Asmita
Gautam, Deepika
Atul,
Ray, Arjun
Mapa, Koyeli
Chakraborty, Kausik
author_sort Sadat, Anwar
collection PubMed
description The GroEL/ES chaperonin cavity surface charge properties, especially the negative charges, play an important role in its capacity to assist intracavity protein folding. Remarkably, the larger fraction of GroEL/ES negative charges are not conserved among different bacterial species, resulting in a large variation in negative-charge density in the GroEL/ES cavity across prokaryotes. Intriguingly, eukaryotic GroEL/ES homologs have the lowest negative-charge density in the chaperonin cavity. This prompted us to investigate if GroEL’s chaperoning mechanism changed during evolution. Using a model in vivo GroEL/ES substrate, we show that the ability of GroEL/ES to buffer entropic traps in the folding pathway of its substrate was partially dependent upon the negative-charge density inside its cavity. While this activity of GroEL/ES was found to be essential for Escherichia coli, it has been perfected in some organisms and diminished in others. However, irrespective of their charges, all the tested homologs retained their ability to regulate polypeptide chain collapse and remove enthalpic traps from folding pathways. The ability of these GroEL/ES homologs to buffer mutational variations in a model substrate correlated with their negative-charge density. Thus, Hsp60/10 chaperonins in different organisms may have changed to accommodate a different spectrum of mutations on their substrates.
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spelling pubmed-91701452022-06-07 Conserved and divergent chaperoning effects of Hsp60/10 chaperonins on protein folding landscapes Sadat, Anwar Tiwari, Satyam Sunidhi, S. Chaphalkar, Aseem Kochar, Manisha Ali, Mudassar Zaidi, Zainab Sharma, Akanksha Verma, Kanika Narayana Rao, Kannan Boosi Tripathi, Manjul Ghosh, Asmita Gautam, Deepika Atul, Ray, Arjun Mapa, Koyeli Chakraborty, Kausik Proc Natl Acad Sci U S A Biological Sciences The GroEL/ES chaperonin cavity surface charge properties, especially the negative charges, play an important role in its capacity to assist intracavity protein folding. Remarkably, the larger fraction of GroEL/ES negative charges are not conserved among different bacterial species, resulting in a large variation in negative-charge density in the GroEL/ES cavity across prokaryotes. Intriguingly, eukaryotic GroEL/ES homologs have the lowest negative-charge density in the chaperonin cavity. This prompted us to investigate if GroEL’s chaperoning mechanism changed during evolution. Using a model in vivo GroEL/ES substrate, we show that the ability of GroEL/ES to buffer entropic traps in the folding pathway of its substrate was partially dependent upon the negative-charge density inside its cavity. While this activity of GroEL/ES was found to be essential for Escherichia coli, it has been perfected in some organisms and diminished in others. However, irrespective of their charges, all the tested homologs retained their ability to regulate polypeptide chain collapse and remove enthalpic traps from folding pathways. The ability of these GroEL/ES homologs to buffer mutational variations in a model substrate correlated with their negative-charge density. Thus, Hsp60/10 chaperonins in different organisms may have changed to accommodate a different spectrum of mutations on their substrates. National Academy of Sciences 2022-04-29 2022-05-03 /pmc/articles/PMC9170145/ /pubmed/35486698 http://dx.doi.org/10.1073/pnas.2118465119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Sadat, Anwar
Tiwari, Satyam
Sunidhi, S.
Chaphalkar, Aseem
Kochar, Manisha
Ali, Mudassar
Zaidi, Zainab
Sharma, Akanksha
Verma, Kanika
Narayana Rao, Kannan Boosi
Tripathi, Manjul
Ghosh, Asmita
Gautam, Deepika
Atul,
Ray, Arjun
Mapa, Koyeli
Chakraborty, Kausik
Conserved and divergent chaperoning effects of Hsp60/10 chaperonins on protein folding landscapes
title Conserved and divergent chaperoning effects of Hsp60/10 chaperonins on protein folding landscapes
title_full Conserved and divergent chaperoning effects of Hsp60/10 chaperonins on protein folding landscapes
title_fullStr Conserved and divergent chaperoning effects of Hsp60/10 chaperonins on protein folding landscapes
title_full_unstemmed Conserved and divergent chaperoning effects of Hsp60/10 chaperonins on protein folding landscapes
title_short Conserved and divergent chaperoning effects of Hsp60/10 chaperonins on protein folding landscapes
title_sort conserved and divergent chaperoning effects of hsp60/10 chaperonins on protein folding landscapes
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9170145/
https://www.ncbi.nlm.nih.gov/pubmed/35486698
http://dx.doi.org/10.1073/pnas.2118465119
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