Literature DB >> 30466509

Constitutional absence of epithelial integrin α3 impacts the composition of the cellular microenvironment of ILNEB keratinocytes.

Yinghong He1, Kerstin Thriene1, Melanie Boerries2, Ingrid Hausser3, Claus-Werner Franzke1, Hauke Busch4, Joern Dengjel5, Cristina Has6.   

Abstract

Integrin α3β1, a major epidermal adhesion receptor is critical for organization of the basement membrane during development and wound healing. Integrin α3 deficiency leads to interstitial lung disease, nephrotic syndrome and epidermolysis bullosa (ILNEB), an autosomal recessive multiorgan disease characterized by basement membrane abnormalities in skin, lung and kidney. The pathogenetic chains from ITGA3 mutation to tissue abnormalities are still unclear. Although integrin α3 was reported to regulate multiple extracellular proteins, the composition of the extracellular compartment of integrin α3-negative keratinocytes has not been resolved so far. In a comprehensive approach, quantitative proteomics of deposited extracellular matrix, conditioned cultured media as well as of the intracellular compartment of keratinocytes isolated from an ILNEB patient and from normal skin were performed. By mass spectrometry-based proteomics, 167 proteins corresponding to the GO terms "extracellular" and "cell adhesion", or included in the "human matrisome" were identified in the deposited extracellular matrix, and 217 in the conditioned media of normal human keratinocytes. In the absence of integrin α3, 33% and 26% respectively were dysregulated. Dysregulated proteins were functionally related to integrin α3 or were known interaction partners. The results show that in the absence of integrin α3 ILNEB keratinocytes produce a fibronectin-rich microenvironment and make use of fibronectin-binding integrin subunits αv and α5. The most important results were validated in monolayer and organotypic coculture models. Finally, the in vivo relevance of the most dysregulated components was demonstrated by immunostainings of skin, kidney and lung samples of three ILNEB patients.
Copyright © 2018 International Society of Matrix Biology. Published by Elsevier B.V. All rights reserved.

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Keywords:  Basement membrane; Epidermolysis bullosa; Extracellular matrix; Fibronectin; Genodermatosis; Integrin α3; Keratinocyte; Proteomics

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Year:  2018        PMID: 30466509     DOI: 10.1016/j.matbio.2018.07.001

Source DB:  PubMed          Journal:  Matrix Biol        ISSN: 0945-053X            Impact factor:   11.583


  3 in total

1.  Epidermal Integrin α3β1 Regulates Tumor-Derived Proteases BMP-1, Matrix Metalloprotease-9, and Matrix Metalloprotease-3.

Authors:  Whitney M Longmate; Rakshitha Pandulal Miskin; Livingston Van De Water; C Michael DiPersio
Journal:  JID Innov       Date:  2021-04-30

2.  Integrin α3 negative podocytes: A gene expression study.

Authors:  L H Frommherz; S B Sayar; Y Wang; L K Trefzer; Y He; J Leppert; P Eßer; C Has
Journal:  Matrix Biol Plus       Date:  2022-08-11

3.  Comparative use of CRISPR and RNAi to modulate integrin α3β1 in triple negative breast cancer cells reveals that some pro-invasive/pro-metastatic α3β1 functions are independent of global regulation of the transcriptome.

Authors:  James Kenney; Abibatou Ndoye; John M Lamar; C Michael DiPersio
Journal:  PLoS One       Date:  2021-07-16       Impact factor: 3.240

  3 in total

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