Stimulation of Fibronectin Matrix Assembly by Lysine Acetylation

Diabetic nephropathy, a devastating consequence of diabetes mellitus, is characterized by the accumulation of extracellular matrix (ECM) that disrupts the kidney’s filtration apparatus. Elevated glucose levels increase the deposition of a fibronectin (FN) matrix by mesangial cells, the primary matri...

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Main Authors: Maria E. Vega, Birgit Kastberger, Bernhard Wehrle-Haller, Jean E. Schwarzbauer
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Cells
Subjects:
Online Access:https://www.mdpi.com/2073-4409/9/3/655
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spelling doaj-a89544cf7af048cf84f362bded910d602020-11-25T03:03:25ZengMDPI AGCells2073-44092020-03-019365510.3390/cells9030655cells9030655Stimulation of Fibronectin Matrix Assembly by Lysine AcetylationMaria E. Vega0Birgit Kastberger1Bernhard Wehrle-Haller2Jean E. Schwarzbauer3Department of Molecular Biology, Princeton University, Princeton, NJ 08544, USADepartment of Cell Physiology and Metabolism, Centre Médical Universitaire, 1 Rue Michel-Servet, CMU, 1211 Geneva 4, SwitzerlandDepartment of Cell Physiology and Metabolism, Centre Médical Universitaire, 1 Rue Michel-Servet, CMU, 1211 Geneva 4, SwitzerlandDepartment of Molecular Biology, Princeton University, Princeton, NJ 08544, USADiabetic nephropathy, a devastating consequence of diabetes mellitus, is characterized by the accumulation of extracellular matrix (ECM) that disrupts the kidney’s filtration apparatus. Elevated glucose levels increase the deposition of a fibronectin (FN) matrix by mesangial cells, the primary matrix-producing cells of the kidney, and also increase acetyl-CoA leading to higher levels of lysine acetylation. Here, we investigated the connection between acetylation and the ECM and show that treatment of mesangial cells with deacetylase inhibitors increases both acetylation and FN matrix assembly compared to untreated cells. The matrix effects were linked to lysine 794 (K794) in the β1 integrin cytoplasmic domain based on studies of cells expressing acetylated (K794Q) and non-acetylated (K794R) mimetics. β1(K794Q) cells assembled significantly more FN matrix than wildtype β1 cells, while the non-acetylated β1(K794R) form was inactive. We show that mutation of K794 affects FN assembly by stimulating integrin-FN binding activity and cell contractility. Wildtype and β1(K794Q) cells but not β1(K794R) cells further increased their FN matrix when stimulated with deacetylase inhibitors indicating that increased acetylation on other proteins is required for maximum FN assembly. Thus, lysine acetylation provides a mechanism for glucose-induced fibrosis by up-regulation of FN matrix assembly.https://www.mdpi.com/2073-4409/9/3/655diabetic nephropathyextracellular matrixfibrosisfibronectinβ1 integrinkindlin-2
collection DOAJ
language English
format Article
sources DOAJ
author Maria E. Vega
Birgit Kastberger
Bernhard Wehrle-Haller
Jean E. Schwarzbauer
spellingShingle Maria E. Vega
Birgit Kastberger
Bernhard Wehrle-Haller
Jean E. Schwarzbauer
Stimulation of Fibronectin Matrix Assembly by Lysine Acetylation
Cells
diabetic nephropathy
extracellular matrix
fibrosis
fibronectin
β1 integrin
kindlin-2
author_facet Maria E. Vega
Birgit Kastberger
Bernhard Wehrle-Haller
Jean E. Schwarzbauer
author_sort Maria E. Vega
title Stimulation of Fibronectin Matrix Assembly by Lysine Acetylation
title_short Stimulation of Fibronectin Matrix Assembly by Lysine Acetylation
title_full Stimulation of Fibronectin Matrix Assembly by Lysine Acetylation
title_fullStr Stimulation of Fibronectin Matrix Assembly by Lysine Acetylation
title_full_unstemmed Stimulation of Fibronectin Matrix Assembly by Lysine Acetylation
title_sort stimulation of fibronectin matrix assembly by lysine acetylation
publisher MDPI AG
series Cells
issn 2073-4409
publishDate 2020-03-01
description Diabetic nephropathy, a devastating consequence of diabetes mellitus, is characterized by the accumulation of extracellular matrix (ECM) that disrupts the kidney’s filtration apparatus. Elevated glucose levels increase the deposition of a fibronectin (FN) matrix by mesangial cells, the primary matrix-producing cells of the kidney, and also increase acetyl-CoA leading to higher levels of lysine acetylation. Here, we investigated the connection between acetylation and the ECM and show that treatment of mesangial cells with deacetylase inhibitors increases both acetylation and FN matrix assembly compared to untreated cells. The matrix effects were linked to lysine 794 (K794) in the β1 integrin cytoplasmic domain based on studies of cells expressing acetylated (K794Q) and non-acetylated (K794R) mimetics. β1(K794Q) cells assembled significantly more FN matrix than wildtype β1 cells, while the non-acetylated β1(K794R) form was inactive. We show that mutation of K794 affects FN assembly by stimulating integrin-FN binding activity and cell contractility. Wildtype and β1(K794Q) cells but not β1(K794R) cells further increased their FN matrix when stimulated with deacetylase inhibitors indicating that increased acetylation on other proteins is required for maximum FN assembly. Thus, lysine acetylation provides a mechanism for glucose-induced fibrosis by up-regulation of FN matrix assembly.
topic diabetic nephropathy
extracellular matrix
fibrosis
fibronectin
β1 integrin
kindlin-2
url https://www.mdpi.com/2073-4409/9/3/655
work_keys_str_mv AT mariaevega stimulationoffibronectinmatrixassemblybylysineacetylation
AT birgitkastberger stimulationoffibronectinmatrixassemblybylysineacetylation
AT bernhardwehrlehaller stimulationoffibronectinmatrixassemblybylysineacetylation
AT jeaneschwarzbauer stimulationoffibronectinmatrixassemblybylysineacetylation
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