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Impact of Arginine to Cysteine Mutations in Collagen II on Protein Secretion and Cell Survival

Inherited point mutations in collagen II in humans affecting mainly cartilage are broadly classified as chondrodysplasias. Most mutations occur in the glycine (Gly) of the Gly-X-Y repeats leading to destabilization of the triple helix. Arginine to cysteine substitutions that occur at either the X or...

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Autores principales: Chakkalakal, Salin A., Heilig, Juliane, Baumann, Ulrich, Paulsson, Mats, Zaucke, Frank
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5855763/
https://www.ncbi.nlm.nih.gov/pubmed/29439465
http://dx.doi.org/10.3390/ijms19020541
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author Chakkalakal, Salin A.
Heilig, Juliane
Baumann, Ulrich
Paulsson, Mats
Zaucke, Frank
author_facet Chakkalakal, Salin A.
Heilig, Juliane
Baumann, Ulrich
Paulsson, Mats
Zaucke, Frank
author_sort Chakkalakal, Salin A.
collection PubMed
description Inherited point mutations in collagen II in humans affecting mainly cartilage are broadly classified as chondrodysplasias. Most mutations occur in the glycine (Gly) of the Gly-X-Y repeats leading to destabilization of the triple helix. Arginine to cysteine substitutions that occur at either the X or Y position within the Gly-X-Y cause different phenotypes like Stickler syndrome and congenital spondyloepiphyseal dysplasia (SEDC). We investigated the consequences of arginine to cysteine substitutions (X or Y position within the Gly-X-Y) towards the N and C terminus of the triple helix. Protein expression and its secretion trafficking were analyzed. Substitutions R75C, R134C and R704C did not alter the thermal stability with respect to wild type; R740C and R789C proteins displayed significantly reduced melting temperatures (T(m)) affecting thermal stability. Additionally, R740C and R789C were susceptible to proteases; in cell culture, R789C protein was further cleaved by matrix metalloproteinases (MMPs) resulting in expression of only a truncated fragment affecting its secretion and intracellular retention. Retention of misfolded R740C and R789C proteins triggered an ER stress response leading to apoptosis of the expressing cells. Arginine to cysteine mutations towards the C-terminus of the triple helix had a deleterious effect, whereas mutations towards the N-terminus of the triple helix (R75C and R134C) and R704C had less impact.
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spelling pubmed-58557632018-03-20 Impact of Arginine to Cysteine Mutations in Collagen II on Protein Secretion and Cell Survival Chakkalakal, Salin A. Heilig, Juliane Baumann, Ulrich Paulsson, Mats Zaucke, Frank Int J Mol Sci Article Inherited point mutations in collagen II in humans affecting mainly cartilage are broadly classified as chondrodysplasias. Most mutations occur in the glycine (Gly) of the Gly-X-Y repeats leading to destabilization of the triple helix. Arginine to cysteine substitutions that occur at either the X or Y position within the Gly-X-Y cause different phenotypes like Stickler syndrome and congenital spondyloepiphyseal dysplasia (SEDC). We investigated the consequences of arginine to cysteine substitutions (X or Y position within the Gly-X-Y) towards the N and C terminus of the triple helix. Protein expression and its secretion trafficking were analyzed. Substitutions R75C, R134C and R704C did not alter the thermal stability with respect to wild type; R740C and R789C proteins displayed significantly reduced melting temperatures (T(m)) affecting thermal stability. Additionally, R740C and R789C were susceptible to proteases; in cell culture, R789C protein was further cleaved by matrix metalloproteinases (MMPs) resulting in expression of only a truncated fragment affecting its secretion and intracellular retention. Retention of misfolded R740C and R789C proteins triggered an ER stress response leading to apoptosis of the expressing cells. Arginine to cysteine mutations towards the C-terminus of the triple helix had a deleterious effect, whereas mutations towards the N-terminus of the triple helix (R75C and R134C) and R704C had less impact. MDPI 2018-02-11 /pmc/articles/PMC5855763/ /pubmed/29439465 http://dx.doi.org/10.3390/ijms19020541 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chakkalakal, Salin A.
Heilig, Juliane
Baumann, Ulrich
Paulsson, Mats
Zaucke, Frank
Impact of Arginine to Cysteine Mutations in Collagen II on Protein Secretion and Cell Survival
title Impact of Arginine to Cysteine Mutations in Collagen II on Protein Secretion and Cell Survival
title_full Impact of Arginine to Cysteine Mutations in Collagen II on Protein Secretion and Cell Survival
title_fullStr Impact of Arginine to Cysteine Mutations in Collagen II on Protein Secretion and Cell Survival
title_full_unstemmed Impact of Arginine to Cysteine Mutations in Collagen II on Protein Secretion and Cell Survival
title_short Impact of Arginine to Cysteine Mutations in Collagen II on Protein Secretion and Cell Survival
title_sort impact of arginine to cysteine mutations in collagen ii on protein secretion and cell survival
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5855763/
https://www.ncbi.nlm.nih.gov/pubmed/29439465
http://dx.doi.org/10.3390/ijms19020541
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