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Truncated HSPB1 causes axonal neuropathy and impairs tolerance to unfolded protein stress

BACKGROUND: HSPB1 belongs to the family of small heat shock proteins (sHSP) that have importance in protection against unfolded protein stress, in cancer cells for escaping drug toxicity stress and in neurons for suppression of protein aggregates. sHSPs have a conserved α-crystalline domain (ACD), f...

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Autores principales: Ylikallio, Emil, Konovalova, Svetlana, Dhungana, Yogesh, Hilander, Taru, Junna, Nella, Partanen, Juhani V., Toppila, Jussi P., Auranen, Mari, Tyynismaa, Henna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4661565/
https://www.ncbi.nlm.nih.gov/pubmed/26675522
http://dx.doi.org/10.1016/j.bbacli.2015.03.002
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author Ylikallio, Emil
Konovalova, Svetlana
Dhungana, Yogesh
Hilander, Taru
Junna, Nella
Partanen, Juhani V.
Toppila, Jussi P.
Auranen, Mari
Tyynismaa, Henna
author_facet Ylikallio, Emil
Konovalova, Svetlana
Dhungana, Yogesh
Hilander, Taru
Junna, Nella
Partanen, Juhani V.
Toppila, Jussi P.
Auranen, Mari
Tyynismaa, Henna
author_sort Ylikallio, Emil
collection PubMed
description BACKGROUND: HSPB1 belongs to the family of small heat shock proteins (sHSP) that have importance in protection against unfolded protein stress, in cancer cells for escaping drug toxicity stress and in neurons for suppression of protein aggregates. sHSPs have a conserved α-crystalline domain (ACD), flanked by variable N- and C-termini, whose functions are not fully understood. Dominant missense variants in HSPB1, locating mostly to the ACD, have been linked to inherited neuropathy. METHODS: Patients underwent detailed clinical and neurophysiologic characterization. Disease causing variants were identified by exome or gene panel sequencing. Primary patient fibroblasts were used to investigate the effects of the dominant defective HSPB1 proteins. RESULTS: Frameshift variant predicting ablation of the entire C-terminus p.(Met169Cfs2*) of HSPB1 and a missense variant p.(Arg127Leu) were identified in patients with dominantly inherited motor-predominant axonal Charcot–Marie–Tooth neuropathy. We show that the truncated protein is stable and binds wild type HSPB1. Both mutations impaired the heat stress tolerance of the fibroblasts. This effect was particularly pronounced for the cells with the truncating variant, independent of heat-induced nuclear translocation and induction of global transcriptional heat response. Furthermore, the truncated HSPB1 increased cellular sensitivity to protein misfolding. CONCLUSION: Our results suggest that truncation of the non-conserved C-terminus impairs the function of HSPB1 in cellular stress response. GENERAL SIGNIFICANCE: sHSPs have important roles in prevention of protein aggregates that induce toxicity. We showed that C-terminal part of HSPB1 is critical for tolerance of unfolded protein stress, and when lacking causes axonal neuropathy in patients.
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spelling pubmed-46615652015-12-15 Truncated HSPB1 causes axonal neuropathy and impairs tolerance to unfolded protein stress Ylikallio, Emil Konovalova, Svetlana Dhungana, Yogesh Hilander, Taru Junna, Nella Partanen, Juhani V. Toppila, Jussi P. Auranen, Mari Tyynismaa, Henna BBA Clin Regular Article BACKGROUND: HSPB1 belongs to the family of small heat shock proteins (sHSP) that have importance in protection against unfolded protein stress, in cancer cells for escaping drug toxicity stress and in neurons for suppression of protein aggregates. sHSPs have a conserved α-crystalline domain (ACD), flanked by variable N- and C-termini, whose functions are not fully understood. Dominant missense variants in HSPB1, locating mostly to the ACD, have been linked to inherited neuropathy. METHODS: Patients underwent detailed clinical and neurophysiologic characterization. Disease causing variants were identified by exome or gene panel sequencing. Primary patient fibroblasts were used to investigate the effects of the dominant defective HSPB1 proteins. RESULTS: Frameshift variant predicting ablation of the entire C-terminus p.(Met169Cfs2*) of HSPB1 and a missense variant p.(Arg127Leu) were identified in patients with dominantly inherited motor-predominant axonal Charcot–Marie–Tooth neuropathy. We show that the truncated protein is stable and binds wild type HSPB1. Both mutations impaired the heat stress tolerance of the fibroblasts. This effect was particularly pronounced for the cells with the truncating variant, independent of heat-induced nuclear translocation and induction of global transcriptional heat response. Furthermore, the truncated HSPB1 increased cellular sensitivity to protein misfolding. CONCLUSION: Our results suggest that truncation of the non-conserved C-terminus impairs the function of HSPB1 in cellular stress response. GENERAL SIGNIFICANCE: sHSPs have important roles in prevention of protein aggregates that induce toxicity. We showed that C-terminal part of HSPB1 is critical for tolerance of unfolded protein stress, and when lacking causes axonal neuropathy in patients. Elsevier 2015-03-11 /pmc/articles/PMC4661565/ /pubmed/26675522 http://dx.doi.org/10.1016/j.bbacli.2015.03.002 Text en © 2015 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Regular Article
Ylikallio, Emil
Konovalova, Svetlana
Dhungana, Yogesh
Hilander, Taru
Junna, Nella
Partanen, Juhani V.
Toppila, Jussi P.
Auranen, Mari
Tyynismaa, Henna
Truncated HSPB1 causes axonal neuropathy and impairs tolerance to unfolded protein stress
title Truncated HSPB1 causes axonal neuropathy and impairs tolerance to unfolded protein stress
title_full Truncated HSPB1 causes axonal neuropathy and impairs tolerance to unfolded protein stress
title_fullStr Truncated HSPB1 causes axonal neuropathy and impairs tolerance to unfolded protein stress
title_full_unstemmed Truncated HSPB1 causes axonal neuropathy and impairs tolerance to unfolded protein stress
title_short Truncated HSPB1 causes axonal neuropathy and impairs tolerance to unfolded protein stress
title_sort truncated hspb1 causes axonal neuropathy and impairs tolerance to unfolded protein stress
topic Regular Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4661565/
https://www.ncbi.nlm.nih.gov/pubmed/26675522
http://dx.doi.org/10.1016/j.bbacli.2015.03.002
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