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Structure–Function Analysis of the Non-Muscle Myosin Light Chain Kinase (nmMLCK) Isoform by NMR Spectroscopy and Molecular Modeling: Influence of MYLK Variants

The MYLK gene encodes the multifunctional enzyme, myosin light chain kinase (MLCK), involved in isoform-specific non-muscle and smooth muscle contraction and regulation of vascular permeability during inflammation. Three MYLK SNPs (P21H, S147P, V261A) alter the N-terminal amino acid sequence of the...

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Autores principales: Shen, Kui, Ramirez, Benjamin, Mapes, Brandon, Shen, Grace R., Gokhale, Vijay, Brown, Mary E., Santarsiero, Bernard, Ishii, Yoshitaka, Dudek, Steven M., Wang, Ting, Garcia, Joe G. N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4482139/
https://www.ncbi.nlm.nih.gov/pubmed/26111161
http://dx.doi.org/10.1371/journal.pone.0130515
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author Shen, Kui
Ramirez, Benjamin
Mapes, Brandon
Shen, Grace R.
Gokhale, Vijay
Brown, Mary E.
Santarsiero, Bernard
Ishii, Yoshitaka
Dudek, Steven M.
Wang, Ting
Garcia, Joe G. N.
author_facet Shen, Kui
Ramirez, Benjamin
Mapes, Brandon
Shen, Grace R.
Gokhale, Vijay
Brown, Mary E.
Santarsiero, Bernard
Ishii, Yoshitaka
Dudek, Steven M.
Wang, Ting
Garcia, Joe G. N.
author_sort Shen, Kui
collection PubMed
description The MYLK gene encodes the multifunctional enzyme, myosin light chain kinase (MLCK), involved in isoform-specific non-muscle and smooth muscle contraction and regulation of vascular permeability during inflammation. Three MYLK SNPs (P21H, S147P, V261A) alter the N-terminal amino acid sequence of the non-muscle isoform of MLCK (nmMLCK) and are highly associated with susceptibility to acute lung injury (ALI) and asthma, especially in individuals of African descent. To understand the functional effects of SNP associations, we examined the N-terminal segments of nmMLCK by (1)H-(15)N heteronuclear single quantum correlation (HSQC) spectroscopy, a 2-D NMR technique, and by in silico molecular modeling. Both NMR analysis and molecular modeling indicated SNP localization to loops that connect the immunoglobulin-like domains of nmMLCK, consistent with minimal structural changes evoked by these SNPs. Molecular modeling analysis identified protein-protein interaction motifs adversely affected by these MYLK SNPs including binding by the scaffold protein 14-3-3, results confirmed by immunoprecipitation and western blot studies. These structure-function studies suggest novel mechanisms for nmMLCK regulation, which may confirm MYLK as a candidate gene in inflammatory lung disease and advance knowledge of the genetic underpinning of lung-related health disparities.
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spelling pubmed-44821392015-07-01 Structure–Function Analysis of the Non-Muscle Myosin Light Chain Kinase (nmMLCK) Isoform by NMR Spectroscopy and Molecular Modeling: Influence of MYLK Variants Shen, Kui Ramirez, Benjamin Mapes, Brandon Shen, Grace R. Gokhale, Vijay Brown, Mary E. Santarsiero, Bernard Ishii, Yoshitaka Dudek, Steven M. Wang, Ting Garcia, Joe G. N. PLoS One Research Article The MYLK gene encodes the multifunctional enzyme, myosin light chain kinase (MLCK), involved in isoform-specific non-muscle and smooth muscle contraction and regulation of vascular permeability during inflammation. Three MYLK SNPs (P21H, S147P, V261A) alter the N-terminal amino acid sequence of the non-muscle isoform of MLCK (nmMLCK) and are highly associated with susceptibility to acute lung injury (ALI) and asthma, especially in individuals of African descent. To understand the functional effects of SNP associations, we examined the N-terminal segments of nmMLCK by (1)H-(15)N heteronuclear single quantum correlation (HSQC) spectroscopy, a 2-D NMR technique, and by in silico molecular modeling. Both NMR analysis and molecular modeling indicated SNP localization to loops that connect the immunoglobulin-like domains of nmMLCK, consistent with minimal structural changes evoked by these SNPs. Molecular modeling analysis identified protein-protein interaction motifs adversely affected by these MYLK SNPs including binding by the scaffold protein 14-3-3, results confirmed by immunoprecipitation and western blot studies. These structure-function studies suggest novel mechanisms for nmMLCK regulation, which may confirm MYLK as a candidate gene in inflammatory lung disease and advance knowledge of the genetic underpinning of lung-related health disparities. Public Library of Science 2015-06-25 /pmc/articles/PMC4482139/ /pubmed/26111161 http://dx.doi.org/10.1371/journal.pone.0130515 Text en © 2015 Shen et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Shen, Kui
Ramirez, Benjamin
Mapes, Brandon
Shen, Grace R.
Gokhale, Vijay
Brown, Mary E.
Santarsiero, Bernard
Ishii, Yoshitaka
Dudek, Steven M.
Wang, Ting
Garcia, Joe G. N.
Structure–Function Analysis of the Non-Muscle Myosin Light Chain Kinase (nmMLCK) Isoform by NMR Spectroscopy and Molecular Modeling: Influence of MYLK Variants
title Structure–Function Analysis of the Non-Muscle Myosin Light Chain Kinase (nmMLCK) Isoform by NMR Spectroscopy and Molecular Modeling: Influence of MYLK Variants
title_full Structure–Function Analysis of the Non-Muscle Myosin Light Chain Kinase (nmMLCK) Isoform by NMR Spectroscopy and Molecular Modeling: Influence of MYLK Variants
title_fullStr Structure–Function Analysis of the Non-Muscle Myosin Light Chain Kinase (nmMLCK) Isoform by NMR Spectroscopy and Molecular Modeling: Influence of MYLK Variants
title_full_unstemmed Structure–Function Analysis of the Non-Muscle Myosin Light Chain Kinase (nmMLCK) Isoform by NMR Spectroscopy and Molecular Modeling: Influence of MYLK Variants
title_short Structure–Function Analysis of the Non-Muscle Myosin Light Chain Kinase (nmMLCK) Isoform by NMR Spectroscopy and Molecular Modeling: Influence of MYLK Variants
title_sort structure–function analysis of the non-muscle myosin light chain kinase (nmmlck) isoform by nmr spectroscopy and molecular modeling: influence of mylk variants
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4482139/
https://www.ncbi.nlm.nih.gov/pubmed/26111161
http://dx.doi.org/10.1371/journal.pone.0130515
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