Literature DB >> 32301006

Mutations in HspB1 and hereditary neuropathies.

Lydia K Muranova1, Maria V Sudnitsyna1, Sergei V Strelkov2, Nikolai B Gusev3.   

Abstract

Charcot-Marie-Tooth (CMT) disease is major hereditary neuropathy. CMT has been linked to mutations in a range of proteins, including the small heat shock protein HspB1. Here we review the properties of several HspB1 mutants associated with CMT. In vitro, mutations in the N-terminal domain lead to a formation of larger HspB1 oligomers when compared with the wild-type (WT) protein. These mutants are resistant to phosphorylation-induced dissociation and reveal lower chaperone-like activity than the WT on a range of model substrates. Mutations in the α-crystallin domain lead to the formation of yet larger HspB1 oligomers tending to dissociate at low protein concentration and having variable chaperone-like activity. Mutations in the conservative IPV motif within the C-terminal domain induce the formation of very large oligomers with low chaperone-like activity. Most mutants interact with a partner small heat shock protein, HspB6, in a manner different from that of the WT protein. The link between the altered physico-chemical properties and the pathological CMT phenotype is a subject of discussion. Certain HspB1 mutations appear to have an effect on cytoskeletal elements such as intermediate filaments and/or microtubules, and by this means damage the axonal transport. In addition, mutations of HspB1 can affect the metabolism in astroglia and indirectly modulate the viability of motor neurons. While the mechanisms of pathological mutations in HspB1 are likely to vary greatly across different mutations, further in vitro and in vivo studies are required for a better understanding of the CMT disease at molecular level.

Entities:  

Keywords:  Chaperone-like activity; Congenital diseases; Mutations; Oligomeric structure; Protein phosphorylation; Protein-protein interactions; Small heat shock proteins

Mesh:

Substances:

Year:  2020        PMID: 32301006      PMCID: PMC7332652          DOI: 10.1007/s12192-020-01099-9

Source DB:  PubMed          Journal:  Cell Stress Chaperones        ISSN: 1355-8145            Impact factor:   3.667


  90 in total

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Authors:  Aura T Chávez Zobel; Anne Loranger; Normand Marceau; Jimmy R Thériault; Herman Lambert; Jacques Landry
Journal:  Hum Mol Genet       Date:  2003-07-01       Impact factor: 6.150

3.  Independent evolution of the core domain and its flanking sequences in small heat shock proteins.

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Authors:  Michelle Heirbaut; Frederik Lermyte; Esther M Martin; Steven Beelen; Frank Sobott; Sergei V Strelkov; Stephen D Weeks
Journal:  J Biol Chem       Date:  2017-05-09       Impact factor: 5.157

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Journal:  Biochim Biophys Acta       Date:  2008-12-03

8.  The human genome encodes 10 alpha-crystallin-related small heat shock proteins: HspB1-10.

Authors:  Guido Kappé; Erik Franck; Pauline Verschuure; Wilbert C Boelens; Jack A M Leunissen; Wilfried W de Jong
Journal:  Cell Stress Chaperones       Date:  2003       Impact factor: 3.667

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Review 6.  Insights Into the Role of Heat Shock Protein 27 in the Development of Neurodegeneration.

Authors:  Bianka A Holguin; Zacariah L Hildenbrand; Ricardo A Bernal
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7.  Human HspB1, HspB3, HspB5 and HspB8: Shaping these disease factors during vertebrate evolution.

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Review 9.  Homeostatic Roles of the Proteostasis Network in Dendrites.

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  9 in total

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