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Comparative analysis of the coordinated motion of Hsp70s from different organelles observed by single-molecule three-color FRET.
Voith von Voithenberg, Lena; Barth, Anders; Trauschke, Vanessa; Demarco, Benjamin; Tyagi, Swati; Koehler, Christine; Lemke, Edward A; Lamb, Don C.
Afiliação
  • Voith von Voithenberg L; Fakultät für Chemie und Biochemie, Department Physikalische Chemie, Center for Nanoscience, Center for Integrated Protein Science Munich, Nanosystem Initiative Munich, Ludwig-Maximilians-Universität, 81377 Munich, Germany.
  • Barth A; Fakultät für Chemie und Biochemie, Department Physikalische Chemie, Center for Nanoscience, Center for Integrated Protein Science Munich, Nanosystem Initiative Munich, Ludwig-Maximilians-Universität, 81377 Munich, Germany.
  • Trauschke V; Fakultät für Chemie und Biochemie, Department Physikalische Chemie, Center for Nanoscience, Center for Integrated Protein Science Munich, Nanosystem Initiative Munich, Ludwig-Maximilians-Universität, 81377 Munich, Germany.
  • Demarco B; Fakultät für Chemie und Biochemie, Department Physikalische Chemie, Center for Nanoscience, Center for Integrated Protein Science Munich, Nanosystem Initiative Munich, Ludwig-Maximilians-Universität, 81377 Munich, Germany.
  • Tyagi S; Structural and Computational Biology Unit, European Molecular Biology Laboratory, 69117 Heidelberg, Germany.
  • Koehler C; Structural and Computational Biology Unit, European Molecular Biology Laboratory, 69117 Heidelberg, Germany.
  • Lemke EA; Biocentre, Johannes Gutenberg-University Mainz, 55128 Mainz, Germany.
  • Lamb DC; Institute for Molecular Biology gGmbH, 55128 Mainz, Germany.
Proc Natl Acad Sci U S A ; 118(33)2021 08 17.
Article em En | MEDLINE | ID: mdl-34389669
ABSTRACT
Cellular function depends on the correct folding of proteins inside the cell. Heat-shock proteins 70 (Hsp70s), being among the first molecular chaperones binding to nascently translated proteins, aid in protein folding and transport. They undergo large, coordinated intra- and interdomain structural rearrangements mediated by allosteric interactions. Here, we applied a three-color single-molecule Förster resonance energy transfer (FRET) combined with three-color photon distribution analysis to compare the conformational cycle of the Hsp70 chaperones DnaK, Ssc1, and BiP. By capturing three distances simultaneously, we can identify coordinated structural changes during the functional cycle. Besides the known conformations of the Hsp70s with docked domains and open lid and undocked domains with closed lid, we observed additional intermediate conformations and distance broadening, suggesting flexibility of the Hsp70s in adopting the states in a coordinated fashion. Interestingly, the difference of this distance broadening varied between DnaK, Ssc1, and BiP. Study of their conformational cycle in the presence of substrate peptide and nucleotide exchange factors strengthened the observation of additional conformational intermediates, with BiP showing coordinated changes more clearly compared to DnaK and Ssc1. Additionally, DnaK and BiP were found to differ in their selectivity for nucleotide analogs, suggesting variability in the recognition mechanism of their nucleotide-binding domains for the different nucleotides. By using three-color FRET, we overcome the limitations of the usual single-distance approach in single-molecule FRET, allowing us to characterize the conformational space of proteins in higher detail.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Organelas / Proteínas de Choque Térmico HSP70 / Transferência Ressonante de Energia de Fluorescência / Imagem Individual de Molécula Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Organelas / Proteínas de Choque Térmico HSP70 / Transferência Ressonante de Energia de Fluorescência / Imagem Individual de Molécula Idioma: En Ano de publicação: 2021 Tipo de documento: Article