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      J-domain protein chaperone circuits in proteostasis and disease

      , , , ,
      Trends in Cell Biology
      Elsevier BV

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          Is Open Access

          AlphaFold Protein Structure Database: massively expanding the structural coverage of protein-sequence space with high-accuracy models

          The AlphaFold Protein Structure Database (AlphaFold DB, https://alphafold.ebi.ac.uk ) is an openly accessible, extensive database of high-accuracy protein-structure predictions. Powered by AlphaFold v2.0 of DeepMind, it has enabled an unprecedented expansion of the structural coverage of the known protein-sequence space. AlphaFold DB provides programmatic access to and interactive visualization of predicted atomic coordinates, per-residue and pairwise model-confidence estimates and predicted aligned errors. The initial release of AlphaFold DB contains over 360,000 predicted structures across 21 model-organism proteomes, which will soon be expanded to cover most of the (over 100 million) representative sequences from the UniRef90 data set.
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            The proteostasis network and its decline in ageing

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              The Hsp70 chaperone network

              The 70-kDa heat shock proteins (Hsp70s) are ubiquitous molecular chaperones that act in a large variety of cellular protein folding and remodelling processes. They function virtually at all stages of the life of proteins from synthesis to degradation and are thus crucial for maintaining protein homeostasis, with direct implications for human health. A large set of co-chaperones comprising J-domain proteins and nucleotide exchange factors regulate the ATPase cycle of Hsp70s, which is allosterically coupled to substrate binding and release. Moreover, Hsp70s cooperate with other cellular chaperone systems including Hsp90, Hsp60 chaperonins, small heat shock proteins and Hsp100 AAA+ disaggregases, together constituting a dynamic and functionally versatile network for protein folding, unfolding, regulation, targeting, aggregation and disaggregation, as well as degradation. In this Review we describe recent advances that have increased our understanding of the molecular mechanisms and working principles of the Hsp70 network. This knowledge showcases how the Hsp70 chaperone system controls diverse cellular functions, and offers new opportunities for the development of chemical compounds that modulate disease-related Hsp70 activities.
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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                Trends in Cell Biology
                Trends in Cell Biology
                Elsevier BV
                09628924
                June 2022
                June 2022
                Article
                10.1016/j.tcb.2022.05.004
                35729039
                328ff5d0-bc5d-417c-8ca0-6a8194afc37d
                © 2022

                https://www.elsevier.com/tdm/userlicense/1.0/

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