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Diabetes Mellitus-Induced Long Noncoding RNA Dnm3os Regulates Macrophage Functions and Inflammation via Nuclear Mechanisms.
Das, Sadhan; Reddy, Marpadga A; Senapati, Parijat; Stapleton, Kenneth; Lanting, Linda; Wang, Mei; Amaram, Vishnu; Ganguly, Rituparna; Zhang, Lingxiao; Devaraj, Sridevi; Schones, Dustin E; Natarajan, Rama.
Afiliação
  • Das S; From the Department of Diabetes Complications and Metabolism, Beckman Research Institute of City of Hope, Duarte, CA (S. Das, M.A.R., P.S., K.S., L.L., M.W., V.A., R.G., L.Z., D.E.S., R.N.).
  • Reddy MA; From the Department of Diabetes Complications and Metabolism, Beckman Research Institute of City of Hope, Duarte, CA (S. Das, M.A.R., P.S., K.S., L.L., M.W., V.A., R.G., L.Z., D.E.S., R.N.).
  • Senapati P; From the Department of Diabetes Complications and Metabolism, Beckman Research Institute of City of Hope, Duarte, CA (S. Das, M.A.R., P.S., K.S., L.L., M.W., V.A., R.G., L.Z., D.E.S., R.N.).
  • Stapleton K; From the Department of Diabetes Complications and Metabolism, Beckman Research Institute of City of Hope, Duarte, CA (S. Das, M.A.R., P.S., K.S., L.L., M.W., V.A., R.G., L.Z., D.E.S., R.N.).
  • Lanting L; From the Department of Diabetes Complications and Metabolism, Beckman Research Institute of City of Hope, Duarte, CA (S. Das, M.A.R., P.S., K.S., L.L., M.W., V.A., R.G., L.Z., D.E.S., R.N.).
  • Wang M; From the Department of Diabetes Complications and Metabolism, Beckman Research Institute of City of Hope, Duarte, CA (S. Das, M.A.R., P.S., K.S., L.L., M.W., V.A., R.G., L.Z., D.E.S., R.N.).
  • Amaram V; From the Department of Diabetes Complications and Metabolism, Beckman Research Institute of City of Hope, Duarte, CA (S. Das, M.A.R., P.S., K.S., L.L., M.W., V.A., R.G., L.Z., D.E.S., R.N.).
  • Ganguly R; From the Department of Diabetes Complications and Metabolism, Beckman Research Institute of City of Hope, Duarte, CA (S. Das, M.A.R., P.S., K.S., L.L., M.W., V.A., R.G., L.Z., D.E.S., R.N.).
  • Zhang L; From the Department of Diabetes Complications and Metabolism, Beckman Research Institute of City of Hope, Duarte, CA (S. Das, M.A.R., P.S., K.S., L.L., M.W., V.A., R.G., L.Z., D.E.S., R.N.).
  • Devaraj S; Department of Pathology and Immunology, Texas Children's Hospital, Houston (S. Devaraj).
  • Schones DE; From the Department of Diabetes Complications and Metabolism, Beckman Research Institute of City of Hope, Duarte, CA (S. Das, M.A.R., P.S., K.S., L.L., M.W., V.A., R.G., L.Z., D.E.S., R.N.).
  • Natarajan R; From the Department of Diabetes Complications and Metabolism, Beckman Research Institute of City of Hope, Duarte, CA (S. Das, M.A.R., P.S., K.S., L.L., M.W., V.A., R.G., L.Z., D.E.S., R.N.).
Arterioscler Thromb Vasc Biol ; 38(8): 1806-1820, 2018 08.
Article em En | MEDLINE | ID: mdl-29930005
ABSTRACT
Objective- Macrophages play key roles in inflammation and diabetic vascular complications. Emerging evidence implicates long noncoding RNAs in inflammation, but their role in macrophage dysfunction associated with inflammatory diabetic complications is unclear and was therefore investigated in this study. Approach and Results- RNA-sequencing and real-time quantitative PCR demonstrated that a long noncoding RNA Dnm3os (dynamin 3 opposite strand) is upregulated in bone marrow-derived macrophages from type 2 diabetic db/db mice, diet-induced insulin-resistant mice, and diabetic ApoE-/- mice, as well as in monocytes from type 2 diabetic patients relative to controls. Diabetic conditions (high glucose and palmitic acid) induced Dnm3os in mouse and human macrophages. Promoter reporter analysis and chromatin immunoprecipitation assays demonstrated that diabetic conditions induce Dnm3os via NF-κB activation. RNA fluorescence in situ hybridization and real-time quantitative PCRs of subcellular fractions demonstrated nuclear localization and chromatin enrichment of Dnm3os in macrophages. Stable overexpression of Dnm3os in macrophages altered global histone modifications and upregulated inflammation and immune response genes and phagocytosis. Conversely, RNAi-mediated knockdown of Dnm3os attenuated these responses. RNA pull-down assays with macrophage nuclear lysates identified nucleolin and ILF-2 (interleukin enhancer-binding factor 2) as protein binding partners of Dnm3os, which was further confirmed by RNA fluorescence in situ hybridization immunofluorescence. Furthermore, nucleolin levels were decreased in diabetic conditions, and its knockdown enhanced Dnm3os-induced inflammatory gene expression and histone H3K9-acetylation at their promoters. Conclusions- These results demonstrate novel mechanisms involving upregulation of long noncoding RNA Dnm3os, disruption of its interaction with nucleolin, and epigenetic modifications at target genes that promote macrophage inflammatory phenotype in diabetes mellitus. The data could lead to long noncoding RNA-based therapies for inflammatory diabetes mellitus complications.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Núcleo Celular / Diabetes Mellitus Experimental / Diabetes Mellitus Tipo 1 / Diabetes Mellitus Tipo 2 / RNA Longo não Codificante / Inflamação / Ativação de Macrófagos / Macrófagos Tipo de estudo: Observational_studies / Prognostic_studies / Risk_factors_studies Limite: Animals / Female / Humans / Male Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Núcleo Celular / Diabetes Mellitus Experimental / Diabetes Mellitus Tipo 1 / Diabetes Mellitus Tipo 2 / RNA Longo não Codificante / Inflamação / Ativação de Macrófagos / Macrófagos Tipo de estudo: Observational_studies / Prognostic_studies / Risk_factors_studies Limite: Animals / Female / Humans / Male Idioma: En Ano de publicação: 2018 Tipo de documento: Article