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Antifibrotic factor KLF4 is repressed by the miR-10/TFAP2A/TBX5 axis in dermal fibroblasts: insights from twins discordant for systemic sclerosis.
Malaab, Maya; Renaud, Ludivine; Takamura, Naoko; Zimmerman, Kip D; da Silveira, Willian A; Ramos, Paula S; Haddad, Sandra; Peters-Golden, Marc; Penke, Loka R; Wolf, Bethany; Hardiman, Gary; Langefeld, Carl D; Medsger, Thomas A; Feghali-Bostwick, Carol A.
  • Malaab M; Medicine, Medical University of South Carolina, Charleston, South Carolina, USA.
  • Renaud L; Medicine, Medical University of South Carolina, Charleston, South Carolina, USA.
  • Takamura N; Medicine, Medical University of South Carolina, Charleston, South Carolina, USA.
  • Zimmerman KD; Biostatistical Sciences and Center for Public Health Genomics, Wake Forest School of Medicine, Winston-Salem, North Carolina, USA.
  • da Silveira WA; School of Biological Sciences, Institute for Global Food Security, Queen's University Belfast, Belfast, UK.
  • Ramos PS; Medicine, Medical University of South Carolina, Charleston, South Carolina, USA.
  • Haddad S; Public Health Sciences, Medical University of South Carolina, Charleston, South Carolina, USA.
  • Peters-Golden M; Science, Bay Path University, Longmeadow, Massachusetts, USA.
  • Penke LR; Internal Medicine, University of Michigan Michigan Medicine, Ann Arbor, Michigan, USA.
  • Wolf B; Internal Medicine, University of Michigan Michigan Medicine, Ann Arbor, Michigan, USA.
  • Hardiman G; Public Health Sciences, Medical University of South Carolina, Charleston, South Carolina, USA.
  • Langefeld CD; School of Biological Sciences, Institute for Global Food Security, Queen's University Belfast, Belfast, UK.
  • Medsger TA; Biostatistical Sciences and Center for Public Health Genomics, Wake Forest School of Medicine, Winston-Salem, North Carolina, USA.
  • Feghali-Bostwick CA; Medicine, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania, USA.
Ann Rheum Dis ; 81(2): 268-277, 2022 02.
Article en En | MEDLINE | ID: mdl-34750102
OBJECTIVES: Systemic sclerosis (SSc) is a complex disease of unknown aetiology in which inflammation and fibrosis lead to multiple organ damage. There is currently no effective therapy that can halt the progression of fibrosis or reverse it, thus studies that provide novel insights into disease pathogenesis and identify novel potential therapeutic targets are critically needed. METHODS: We used global gene expression and genome-wide DNA methylation analyses of dermal fibroblasts (dFBs) from a unique cohort of twins discordant for SSc to identify molecular features of this pathology. We validated the findings using in vitro, ex vivo and in vivo models. RESULTS: Our results revealed distinct differentially expressed and methylated genes, including several transcription factors involved in stem cell differentiation and developmental programmes (KLF4, TBX5, TFAP2A and homeobox genes) and the microRNAs miR-10a and miR-10b which target several of these deregulated genes. We show that KLF4 expression is reduced in SSc dFBs and its expression is repressed by TBX5 and TFAP2A. We also show that KLF4 is antifibrotic, and its conditional knockout in fibroblasts promotes a fibrotic phenotype. CONCLUSIONS: Our data support a role for epigenetic dysregulation in mediating SSc susceptibility in dFBs, illustrating the intricate interplay between CpG methylation, miRNAs and transcription factors in SSc pathogenesis, and highlighting the potential for future use of epigenetic modifiers as therapies.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Esclerodermia Sistémica / Piel / Regulación de la Expresión Génica / Fibroblastos / Factor 4 Similar a Kruppel Tipo de estudio: Prognostic_studies Límite: Humans Idioma: En Año: 2022 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Esclerodermia Sistémica / Piel / Regulación de la Expresión Génica / Fibroblastos / Factor 4 Similar a Kruppel Tipo de estudio: Prognostic_studies Límite: Humans Idioma: En Año: 2022 Tipo del documento: Article