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Understanding the Functional Interplay between Mammalian Mitochondrial Hsp70 Chaperone Machine Components

Mitochondria biogenesis requires the import of several precursor proteins that are synthesized in the cytosol. The mitochondrial heat shock protein 70 (mtHsp70) machinery components are highly conserved among eukaryotes, including humans. However, the functional properties of human mtHsp70 machinery...

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Autores principales: Goswami, Arvind Vittal, Chittoor, Balasubramanyam, D'Silva, Patrick
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2885226/
https://www.ncbi.nlm.nih.gov/pubmed/20392697
http://dx.doi.org/10.1074/jbc.M110.105957
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author Goswami, Arvind Vittal
Chittoor, Balasubramanyam
D'Silva, Patrick
author_facet Goswami, Arvind Vittal
Chittoor, Balasubramanyam
D'Silva, Patrick
author_sort Goswami, Arvind Vittal
collection PubMed
description Mitochondria biogenesis requires the import of several precursor proteins that are synthesized in the cytosol. The mitochondrial heat shock protein 70 (mtHsp70) machinery components are highly conserved among eukaryotes, including humans. However, the functional properties of human mtHsp70 machinery components have not been characterized among all eukaryotic families. To study the functional interactions, we have reconstituted the components of the mtHsp70 chaperone machine (Hsp70/J-protein/GrpE/Hep) and systematically analyzed in vitro conditions for biochemical functions. We observed that the sequence-specific interaction of human mtHsp70 toward mitochondrial client proteins differs significantly from its yeast counterpart Ssc1. Interestingly, the helical lid of human mtHsp70 was found dispensable to the binding of P5 peptide as compared with the other Hsp70s. We observed that the two human mitochondrial matrix J-protein splice variants differentially regulate the mtHsp70 chaperone cycle. Strikingly, our results demonstrated that human Hsp70 escort protein (Hep) possesses a unique ability to stimulate the ATPase activity of mtHsp70 as well as to prevent the aggregation of unfolded client proteins similar to J-proteins. We observed that Hep binds with the C terminus of mtHsp70 in a full-length context and this interaction is distinctly different from unfolded client-specific or J-protein binding. In addition, we found that the interaction of Hep at the C terminus of mtHsp70 is regulated by the helical lid region. However, the interaction of Hep at the ATPase domain of the human mtHsp70 is mutually exclusive with J-proteins, thus promoting a similar conformational change that leads to ATPase stimulation. Additionally, we highlight the biochemical defects of the mtHsp70 mutant (G489E) associated with a myelodysplastic syndrome.
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spelling pubmed-28852262010-06-17 Understanding the Functional Interplay between Mammalian Mitochondrial Hsp70 Chaperone Machine Components Goswami, Arvind Vittal Chittoor, Balasubramanyam D'Silva, Patrick J Biol Chem Molecular Bases of Disease Mitochondria biogenesis requires the import of several precursor proteins that are synthesized in the cytosol. The mitochondrial heat shock protein 70 (mtHsp70) machinery components are highly conserved among eukaryotes, including humans. However, the functional properties of human mtHsp70 machinery components have not been characterized among all eukaryotic families. To study the functional interactions, we have reconstituted the components of the mtHsp70 chaperone machine (Hsp70/J-protein/GrpE/Hep) and systematically analyzed in vitro conditions for biochemical functions. We observed that the sequence-specific interaction of human mtHsp70 toward mitochondrial client proteins differs significantly from its yeast counterpart Ssc1. Interestingly, the helical lid of human mtHsp70 was found dispensable to the binding of P5 peptide as compared with the other Hsp70s. We observed that the two human mitochondrial matrix J-protein splice variants differentially regulate the mtHsp70 chaperone cycle. Strikingly, our results demonstrated that human Hsp70 escort protein (Hep) possesses a unique ability to stimulate the ATPase activity of mtHsp70 as well as to prevent the aggregation of unfolded client proteins similar to J-proteins. We observed that Hep binds with the C terminus of mtHsp70 in a full-length context and this interaction is distinctly different from unfolded client-specific or J-protein binding. In addition, we found that the interaction of Hep at the C terminus of mtHsp70 is regulated by the helical lid region. However, the interaction of Hep at the ATPase domain of the human mtHsp70 is mutually exclusive with J-proteins, thus promoting a similar conformational change that leads to ATPase stimulation. Additionally, we highlight the biochemical defects of the mtHsp70 mutant (G489E) associated with a myelodysplastic syndrome. American Society for Biochemistry and Molecular Biology 2010-06-18 2010-04-14 /pmc/articles/PMC2885226/ /pubmed/20392697 http://dx.doi.org/10.1074/jbc.M110.105957 Text en © 2010 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Molecular Bases of Disease
Goswami, Arvind Vittal
Chittoor, Balasubramanyam
D'Silva, Patrick
Understanding the Functional Interplay between Mammalian Mitochondrial Hsp70 Chaperone Machine Components
title Understanding the Functional Interplay between Mammalian Mitochondrial Hsp70 Chaperone Machine Components
title_full Understanding the Functional Interplay between Mammalian Mitochondrial Hsp70 Chaperone Machine Components
title_fullStr Understanding the Functional Interplay between Mammalian Mitochondrial Hsp70 Chaperone Machine Components
title_full_unstemmed Understanding the Functional Interplay between Mammalian Mitochondrial Hsp70 Chaperone Machine Components
title_short Understanding the Functional Interplay between Mammalian Mitochondrial Hsp70 Chaperone Machine Components
title_sort understanding the functional interplay between mammalian mitochondrial hsp70 chaperone machine components
topic Molecular Bases of Disease
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2885226/
https://www.ncbi.nlm.nih.gov/pubmed/20392697
http://dx.doi.org/10.1074/jbc.M110.105957
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