Sandbox Reserved 1507

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Hsp70 is a family of proteins. They chaperone plenty of cellular proteins and their role is to help the good folding of proteins by preventing aggregation and degradation and help protein transport across membranes.
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Hsp70 is a family of proteins. They chaperone plenty of cellular proteins and their role is to help the good folding of proteins by preventing aggregation and degradation and help protein transport across membranes. <ref> DOI: 10.1126/science.1068408 </ref>
Hsp70 is composed of two chains and is 382 nucleotides long. It’s molecular weight is 70 kDa. It can be linked to different ligands such as ATP and ions like potassium or magnesium. <ref>DOI 10.1016/j.cell.2008.05.022</ref>
Hsp70 is composed of two chains and is 382 nucleotides long. It’s molecular weight is 70 kDa. It can be linked to different ligands such as ATP and ions like potassium or magnesium. <ref>DOI 10.1016/j.cell.2008.05.022</ref>
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The aim of the NBD is to regulate the activity of PDB for the substrate binding and release.
The aim of the NBD is to regulate the activity of PDB for the substrate binding and release.
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Conformational cycle of Hsp70s <ref> doi: 10.3389/fmolb.2015.00058 </ref>
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[[Image:Hsp70.jpg | thumb ]]
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[[Image:Hsp70.jpg | thumb | Conformational cycle of Hsp70s <ref> doi: 10.3389/fmolb.2015.00058 </ref> ]]
Hsp70s recognizes a short degenerate sequence motif, present in most polypeptides.
Hsp70s recognizes a short degenerate sequence motif, present in most polypeptides.
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The Hsp110 family is composed of two proteins Sse1p and Sse2p. Sse1p is constitutively expressed while the production of Sse2p is stress dependant.
The Hsp110 family is composed of two proteins Sse1p and Sse2p. Sse1p is constitutively expressed while the production of Sse2p is stress dependant.
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Hsp110 proteins are homologous to Hsp70. The general domain organisation of Sse1p ressemble to one of the canonical Hsp70s. They are composed of different domains: a N-terminal actin type Nucleotide-Binding Domain, a ß sandwich domain and a C-terminal 3 helix bundle domain (3HBD).
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Hsp110 proteins <ref> DOI: 10.1515/hsz-2018-0209 </ref> are homologous to Hsp70. The general domain organisation of Sse1p ressemble to one of the canonical Hsp70s. They are composed of different domains: a N-terminal actin type Nucleotide-Binding Domain, a ß sandwich domain and a C-terminal 3 helix bundle domain (3HBD).
All the interaction with the NBD of Hsp70 is located along the NBD and 3HBD of the Sse1p. The interaction with Hsp70 only causes minor changes in its conformation.
All the interaction with the NBD of Hsp70 is located along the NBD and 3HBD of the Sse1p. The interaction with Hsp70 only causes minor changes in its conformation.
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In the activity cycle of Hsp70, unfolded protein are recruited by Hsp70 with the help of J-domain proteins. J-domain proteins binding triggers the ATP hydrolysis in Hsp70 protein. The transformation of ATP into ADP leads to important conformational changes : the PDB domain of Hsp70 adopts a close conformation and binds tightly to the substrate. It’s at this step that intervene Sse1ps. They interact both with Hsp70 and the unfolded protein. The interaction of both the unfolded protein and the chaperone might promote the formation of the complex.
In the activity cycle of Hsp70, unfolded protein are recruited by Hsp70 with the help of J-domain proteins. J-domain proteins binding triggers the ATP hydrolysis in Hsp70 protein. The transformation of ATP into ADP leads to important conformational changes : the PDB domain of Hsp70 adopts a close conformation and binds tightly to the substrate. It’s at this step that intervene Sse1ps. They interact both with Hsp70 and the unfolded protein. The interaction of both the unfolded protein and the chaperone might promote the formation of the complex.
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The Hsp70’s PDB which is tightly linked with Sse1p ATP-bound NBD is considered to be the part of the protein helping in the remodelling of misfolded proteins. During this step Hsp70 ADP is liberated. It is the formation of a new bond between Hsp70 and an other ATP that may trigger the dissociation of the complex and the partial or complete folding of the protein. If the protein has not been completely folded, it can bind again to Hsp70 for a new folding cycle <ref> doi:10.1038/sj.emboj.7601138 </ref>.
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The Hsp70’s PDB which is tightly linked with Sse1p ATP-bound NBD is considered to be the part of the protein helping in the remodelling of misfolded proteins. During this step Hsp70 ADP is liberated. It is the formation of a new bond between Hsp70 and an other ATP that may trigger the dissociation of the complex and the partial or complete folding of the protein. If the protein has not been completely folded, it can bind again to Hsp70 for a new folding cycle.
When interacting with Hsp70, Sse1p’s NBD is bound with ATP. It’s NBD and 3HBD are tightly interacting with the NBD of the Hsp70.
When interacting with Hsp70, Sse1p’s NBD is bound with ATP. It’s NBD and 3HBD are tightly interacting with the NBD of the Hsp70.
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</StructureSection>
</StructureSection>
== References ==
== References ==
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<references>

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This Sandbox is Reserved from 06/12/2018, through 30/06/2019 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1480 through Sandbox Reserved 1543.
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3D2F, Crystal structure of a complex of Sse1p and Hsp70

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References

  1. Hartl FU, Hayer-Hartl M. Molecular chaperones in the cytosol: from nascent chain to folded protein. Science. 2002 Mar 8;295(5561):1852-8. doi: 10.1126/science.1068408. PMID:11884745 doi:http://dx.doi.org/10.1126/science.1068408
  2. Polier S, Dragovic Z, Hartl FU, Bracher A. Structural basis for the cooperation of Hsp70 and Hsp110 chaperones in protein folding. Cell. 2008 Jun 13;133(6):1068-79. PMID:18555782 doi:10.1016/j.cell.2008.05.022
  3. Mayer MP, Kityk R. Insights into the molecular mechanism of allostery in Hsp70s. Front Mol Biosci. 2015 Oct 20;2:58. doi: 10.3389/fmolb.2015.00058. eCollection, 2015. PMID:26539440 doi:http://dx.doi.org/10.3389/fmolb.2015.00058
  4. Yakubu UM, Morano KA. Roles of the nucleotide exchange factor and chaperone Hsp110 in cellular proteostasis and diseases of protein misfolding. Biol Chem. 2018 Sep 25;399(10):1215-1221. doi: 10.1515/hsz-2018-0209. PMID:29908125 doi:http://dx.doi.org/10.1515/hsz-2018-0209
  5. Polier S, Dragovic Z, Hartl FU, Bracher A. Structural basis for the cooperation of Hsp70 and Hsp110 chaperones in protein folding. Cell. 2008 Jun 13;133(6):1068-79. PMID:18555782 doi:10.1016/j.cell.2008.05.022
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