The Stoichiometric Interaction of the Hsp90-Sgt1-Rar1 Complex by CD and SRCD Spectroscopy
While the molecular details by which Hsp90 interacts with Sgt1 and Rar1 were previously described the exact stoichiometric complex that is formed remains elusive. Several possibilities remain that include two asymmetric complexes, Sgt12-Hsp902-Rar12 (two molecules of Sgt1 and Rar1 and one Hsp90 dime...
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doaj-90deeaa77438458cad13a94859411b8f2020-11-24T22:15:57ZengFrontiers Media S.A.Frontiers in Molecular Biosciences2296-889X2018-01-01410.3389/fmolb.2017.00095329904The Stoichiometric Interaction of the Hsp90-Sgt1-Rar1 Complex by CD and SRCD SpectroscopyGiuliano Siligardi0Minghao Zhang1Chrisostomos Prodromou2Diamond Light Source Ltd., Didcot, United KingdomStructural genomics Consortium, Nuffield Department of Clinical Medicine, University of Oxford, Oxford, United KingdomGenome Damage and Stability Centre, School of Life Sciences, University of Sussex, Brighton, United KingdomWhile the molecular details by which Hsp90 interacts with Sgt1 and Rar1 were previously described the exact stoichiometric complex that is formed remains elusive. Several possibilities remain that include two asymmetric complexes, Sgt12-Hsp902-Rar12 (two molecules of Sgt1 and Rar1 and one Hsp90 dimer) or Sgt12-Hsp902-Rar11 (with a single Rar1 molecule) and an asymmetric complex (Sgt11-Hsp902-Rar11). The Hsp90-mediated activation of NLR receptors (Nucleotide-binding domain and Leucine-rich Repeat) in the innate immunity of both plants and animals is dependent on the co-chaperone Sgt1 and in plants on Rar1, a cysteine- and histidine-rich domain (CHORD)-containing protein. The exact stoichiometry of such a complex may have a direct impact on NLR protein oligomerization and thus ultimately on the mechanism by which NLRs are activated. CD spectroscopy was successfully used to determine the stoichiometry of a ternary protein complex among Hsp90, Sgt1, and Rar1 in the presence of excess ADP. The results indicated that a symmetric Sgt12-Hsp902-Rar11 complex was formed that could allow two NLR molecules to simultaneously bind. The stoichiometry of this complex has implications on, and might promote, the dimerization of NLR proteins following their activation.http://journal.frontiersin.org/article/10.3389/fmolb.2017.00095/fullHsp90Sgt1Rar1nod-like receptorsinnate immunityheat shock |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Giuliano Siligardi Minghao Zhang Chrisostomos Prodromou |
spellingShingle |
Giuliano Siligardi Minghao Zhang Chrisostomos Prodromou The Stoichiometric Interaction of the Hsp90-Sgt1-Rar1 Complex by CD and SRCD Spectroscopy Frontiers in Molecular Biosciences Hsp90 Sgt1 Rar1 nod-like receptors innate immunity heat shock |
author_facet |
Giuliano Siligardi Minghao Zhang Chrisostomos Prodromou |
author_sort |
Giuliano Siligardi |
title |
The Stoichiometric Interaction of the Hsp90-Sgt1-Rar1 Complex by CD and SRCD Spectroscopy |
title_short |
The Stoichiometric Interaction of the Hsp90-Sgt1-Rar1 Complex by CD and SRCD Spectroscopy |
title_full |
The Stoichiometric Interaction of the Hsp90-Sgt1-Rar1 Complex by CD and SRCD Spectroscopy |
title_fullStr |
The Stoichiometric Interaction of the Hsp90-Sgt1-Rar1 Complex by CD and SRCD Spectroscopy |
title_full_unstemmed |
The Stoichiometric Interaction of the Hsp90-Sgt1-Rar1 Complex by CD and SRCD Spectroscopy |
title_sort |
stoichiometric interaction of the hsp90-sgt1-rar1 complex by cd and srcd spectroscopy |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Molecular Biosciences |
issn |
2296-889X |
publishDate |
2018-01-01 |
description |
While the molecular details by which Hsp90 interacts with Sgt1 and Rar1 were previously described the exact stoichiometric complex that is formed remains elusive. Several possibilities remain that include two asymmetric complexes, Sgt12-Hsp902-Rar12 (two molecules of Sgt1 and Rar1 and one Hsp90 dimer) or Sgt12-Hsp902-Rar11 (with a single Rar1 molecule) and an asymmetric complex (Sgt11-Hsp902-Rar11). The Hsp90-mediated activation of NLR receptors (Nucleotide-binding domain and Leucine-rich Repeat) in the innate immunity of both plants and animals is dependent on the co-chaperone Sgt1 and in plants on Rar1, a cysteine- and histidine-rich domain (CHORD)-containing protein. The exact stoichiometry of such a complex may have a direct impact on NLR protein oligomerization and thus ultimately on the mechanism by which NLRs are activated. CD spectroscopy was successfully used to determine the stoichiometry of a ternary protein complex among Hsp90, Sgt1, and Rar1 in the presence of excess ADP. The results indicated that a symmetric Sgt12-Hsp902-Rar11 complex was formed that could allow two NLR molecules to simultaneously bind. The stoichiometry of this complex has implications on, and might promote, the dimerization of NLR proteins following their activation. |
topic |
Hsp90 Sgt1 Rar1 nod-like receptors innate immunity heat shock |
url |
http://journal.frontiersin.org/article/10.3389/fmolb.2017.00095/full |
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