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Substitutions for arginine at position 780 in triple helical domain of the α1(I) chain alter folding of the type I procollagen molecule and cause osteogenesis imperfecta

OI is a clinically and genetically heterogeneous disorder characterized by bone fragility. More than 90% of patients are heterozygous for mutations in type I collagen genes, COL1A1 and COL1A2, and a common mutation is substitution for an obligatory glycine in the triple helical Gly-X-Y repeats. Few...

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Autores principales: Makareeva, Elena, Sun, Guoli, Mirigian, Lynn S., Mertz, Edward L., Vera, Juan C., Espinoza, Nydea A., Yang, Kathleen, Chen, Diana, Klein, Teri E., Byers, Peter H., Leikin, Sergey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6039012/
https://www.ncbi.nlm.nih.gov/pubmed/29990383
http://dx.doi.org/10.1371/journal.pone.0200264
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author Makareeva, Elena
Sun, Guoli
Mirigian, Lynn S.
Mertz, Edward L.
Vera, Juan C.
Espinoza, Nydea A.
Yang, Kathleen
Chen, Diana
Klein, Teri E.
Byers, Peter H.
Leikin, Sergey
author_facet Makareeva, Elena
Sun, Guoli
Mirigian, Lynn S.
Mertz, Edward L.
Vera, Juan C.
Espinoza, Nydea A.
Yang, Kathleen
Chen, Diana
Klein, Teri E.
Byers, Peter H.
Leikin, Sergey
author_sort Makareeva, Elena
collection PubMed
description OI is a clinically and genetically heterogeneous disorder characterized by bone fragility. More than 90% of patients are heterozygous for mutations in type I collagen genes, COL1A1 and COL1A2, and a common mutation is substitution for an obligatory glycine in the triple helical Gly-X-Y repeats. Few non-glycine substitutions in the triple helical domain have been reported; most result in Y-position substitutions of arginine by cysteine. Here, we investigated leucine and cysteine substitutions for one Y-position arginine, p.Arg958 (Arg780 in the triple helical domain) of proα1(I) chains that cause mild OI. We compared their effects with two substitutions for glycine located in close proximity. Like substitutions for glycine, those for arginine reduced the denaturation temperature of the whole molecule and caused asymmetric posttranslational overmodification of the chains. Circular dichroism and increased susceptibility to cleavage by MMP1, MMP2 and catalytic domain of MMP1 revealed significant destabilization of the triple helix near the collagenase cleavage site. On a cellular level, we observed slower triple helix folding and intracellular collagen retention, which disturbed the Endoplasmic Reticulum function and affected matrix deposition. Molecular dynamic modeling suggested that Arg780 substitutions disrupt the triple helix structure and folding by eliminating hydrogen bonds of arginine side chains, in addition to preventing HSP47 binding. The pathogenic effects of these non-glycine substitutions in bone are probably caused mostly by procollagen misfolding and its downstream effects.
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spelling pubmed-60390122018-07-19 Substitutions for arginine at position 780 in triple helical domain of the α1(I) chain alter folding of the type I procollagen molecule and cause osteogenesis imperfecta Makareeva, Elena Sun, Guoli Mirigian, Lynn S. Mertz, Edward L. Vera, Juan C. Espinoza, Nydea A. Yang, Kathleen Chen, Diana Klein, Teri E. Byers, Peter H. Leikin, Sergey PLoS One Research Article OI is a clinically and genetically heterogeneous disorder characterized by bone fragility. More than 90% of patients are heterozygous for mutations in type I collagen genes, COL1A1 and COL1A2, and a common mutation is substitution for an obligatory glycine in the triple helical Gly-X-Y repeats. Few non-glycine substitutions in the triple helical domain have been reported; most result in Y-position substitutions of arginine by cysteine. Here, we investigated leucine and cysteine substitutions for one Y-position arginine, p.Arg958 (Arg780 in the triple helical domain) of proα1(I) chains that cause mild OI. We compared their effects with two substitutions for glycine located in close proximity. Like substitutions for glycine, those for arginine reduced the denaturation temperature of the whole molecule and caused asymmetric posttranslational overmodification of the chains. Circular dichroism and increased susceptibility to cleavage by MMP1, MMP2 and catalytic domain of MMP1 revealed significant destabilization of the triple helix near the collagenase cleavage site. On a cellular level, we observed slower triple helix folding and intracellular collagen retention, which disturbed the Endoplasmic Reticulum function and affected matrix deposition. Molecular dynamic modeling suggested that Arg780 substitutions disrupt the triple helix structure and folding by eliminating hydrogen bonds of arginine side chains, in addition to preventing HSP47 binding. The pathogenic effects of these non-glycine substitutions in bone are probably caused mostly by procollagen misfolding and its downstream effects. Public Library of Science 2018-07-10 /pmc/articles/PMC6039012/ /pubmed/29990383 http://dx.doi.org/10.1371/journal.pone.0200264 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Makareeva, Elena
Sun, Guoli
Mirigian, Lynn S.
Mertz, Edward L.
Vera, Juan C.
Espinoza, Nydea A.
Yang, Kathleen
Chen, Diana
Klein, Teri E.
Byers, Peter H.
Leikin, Sergey
Substitutions for arginine at position 780 in triple helical domain of the α1(I) chain alter folding of the type I procollagen molecule and cause osteogenesis imperfecta
title Substitutions for arginine at position 780 in triple helical domain of the α1(I) chain alter folding of the type I procollagen molecule and cause osteogenesis imperfecta
title_full Substitutions for arginine at position 780 in triple helical domain of the α1(I) chain alter folding of the type I procollagen molecule and cause osteogenesis imperfecta
title_fullStr Substitutions for arginine at position 780 in triple helical domain of the α1(I) chain alter folding of the type I procollagen molecule and cause osteogenesis imperfecta
title_full_unstemmed Substitutions for arginine at position 780 in triple helical domain of the α1(I) chain alter folding of the type I procollagen molecule and cause osteogenesis imperfecta
title_short Substitutions for arginine at position 780 in triple helical domain of the α1(I) chain alter folding of the type I procollagen molecule and cause osteogenesis imperfecta
title_sort substitutions for arginine at position 780 in triple helical domain of the α1(i) chain alter folding of the type i procollagen molecule and cause osteogenesis imperfecta
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6039012/
https://www.ncbi.nlm.nih.gov/pubmed/29990383
http://dx.doi.org/10.1371/journal.pone.0200264
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