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      Insights into archaeal chaperone machinery: a network-based approach

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          Abstract

          Molecular chaperones are a diverse group of proteins that ensure proteome integrity by helping the proteins fold correctly and maintain their native state, thus preventing their misfolding and subsequent aggregation. The chaperone machinery of archaeal organisms has been thought to closely resemble that found in humans, at least in terms of constituent players. Very few studies have been ventured into system-level analysis of chaperones and their functioning in archaeal cells. In this study, we attempted such an analysis of chaperone-assisted protein folding in archaeal organisms through network approach using Picrophilus torridus as model system. The study revealed that DnaK protein of Hsp70 system acts as hub in protein-protein interaction network. However, DnaK protein was present only in a subset of archaeal organisms and absent from many archaea, especially members of Crenarchaeota phylum. Therefore, a similar network was created for another archaeal organism, Sulfolobus solfataricus, a member of Crenarchaeota. The chaperone network of S. solfataricus suggested that thermosomes played an integral part of hub proteins in archaeal organisms, where DnaK was absent. We further compared the chaperone network of archaea with that found in eukaryotic systems, by creating a similar network for Homo sapiens. In the human chaperone network, the UBC protein, a part of ubiquitination system, was the most important module, and interestingly, this system is known to be absent in archaeal organisms. Comprehensive comparison of these networks leads to several interesting conclusions regarding similarities and differences within archaeal chaperone machinery in comparison to humans.

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          The online version of this article (10.1007/s12192-018-0933-y) contains supplementary material, which is available to authorized users.

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          Author and article information

          Contributors
          +91-11-24157364 , manishagoel@south.du.ac.in
          Journal
          Cell Stress Chaperones
          Cell Stress Chaperones
          Cell Stress & Chaperones
          Springer Netherlands (Dordrecht )
          1355-8145
          1466-1268
          3 September 2018
          November 2018
          : 23
          : 6
          : 1257-1274
          Affiliations
          [1 ] ISNI 0000 0001 2109 4999, GRID grid.8195.5, Department of Biophysics, , University of Delhi South Campus, ; Benito Jurarez Road, New Delhi, 110021 India
          [2 ] ISNI 000000040459992X, GRID grid.5645.2, Department of Molecular Genetics, , Erasmus University Medical Center, ; Rotterdam, The Netherlands
          [3 ] ISNI 0000 0004 1936 8606, GRID grid.26790.3a, Center for Computational Science, , University of Miami, ; Miami, FL USA
          Article
          PMC6237683 PMC6237683 6237683 933
          10.1007/s12192-018-0933-y
          6237683
          30178307
          7b69db28-bc76-41f1-b3d1-67853858e480
          © Cell Stress Society International 2018
          History
          : 14 June 2018
          : 3 August 2018
          : 20 August 2018
          Categories
          Original Paper
          Custom metadata
          © Cell Stress Society International 2018

          Protein-protein interactions,Networks,Chaperones,Protein folding,Archaea

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