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1.
Osteoarthritis Cartilage ; 24(7): 1263-73, 2016 07.
Artigo em Inglês | MEDLINE | ID: mdl-26853752

RESUMO

OBJECTIVE: Regulation of anabolic and catabolic factors is considered essential in maintaining the homoeostasis of healthy articular cartilage. In this study we investigated the influence of RNA binding proteins (RNABPs) in this process. DESIGN: Using small interfering RNA (siRNA), RNABP expression was knocked down in SW1353 chondrosarcoma cells and human articular chondrocytes. Gene expression and messenger RNA (mRNA) decay of anabolic (SOX9, Aggrecan) and catabolic (matrix metalloproteinase (MMP)13) factors were analysed using reverse transcription quantitative polymerase chain reaction (RT-qPCR). RNA-electromobility shift assays (EMSAs) were used to investigate RNABP interactions with the SOX9 mRNA 3' untranslated region (UTR). Immunohistochemical localisation of MMP13 and the RNABP human antigen R (HuR) was performed in E13.5 and E16.5 mouse embryo sections. RESULTS: SOX9 mRNA, mRNA half-life and protein expression were increased with siRNA targeting the RNABP tristetraprolin (TTP) in both HACs and SW1353s. TTP knockdown also stimulated aggrecan mRNA expression but did not affect its stability. RNA-EMSAs demonstrated that adenine uracil (AU)-rich elements in the SOX9 mRNA 3'UTR interacted with chondrocyte proteins with three specific elements interacting with TTP. HuR knockdown significantly increased MMP13 expression and also regulated the expression of a number of known transcriptional repressors of MMP13. HuR was ubiquitously expressed within mouse embryos yet displayed regional down-regulation within developing skeletal structures. CONCLUSION: This study demonstrates for the first time how RNABPs are able to affect the balance of anabolic and catabolic gene expression in human chondrocytes. The post-transcriptional mechanisms controlled by RNABPs present novel avenues of regulation and potential points of intervention for controlling the expression of SOX9 and MMP13 in chondrocytes.


Assuntos
Condrócitos , Animais , Cartilagem Articular , Células Cultivadas , Expressão Gênica , Regulação da Expressão Gênica , Humanos , Camundongos , Proteínas de Ligação a RNA
2.
Scand J Med Sci Sports ; 26(6): 684-93, 2016 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-26058332

RESUMO

Advancing age is a well-known risk factor for tendon disease. Energy-storing tendons [e.g., human Achilles, equine superficial digital flexor tendon (SDFT)] are particularly vulnerable and it is thought that injury occurs following an accumulation of micro-damage in the extracellular matrix (ECM). Several authors suggest that age-related micro-damage accumulates due to a failure of the aging cell population to maintain the ECM or an imbalance between anabolic and catabolic pathways. We hypothesized that ageing results in a decreased ability of tendon cells to synthesize matrix components and matrix-degrading enzymes, resulting in a reduced turnover of the ECM and a decreased ability to repair micro-damage. The SDFT was collected from horses aged 3-30 years with no signs of tendon injury. Cell synthetic and degradative ability was assessed at the mRNA and protein levels. Telomere length was measured as an additional marker of cell ageing. There was no decrease in cellularity or relative telomere length with increasing age, and no decline in mRNA or protein levels for matrix proteins or degradative enzymes. The results suggest that the mechanism for age-related tendon deterioration is not due to reduced cellularity or a loss of synthetic functionality and that alternative mechanisms should be considered.


Assuntos
Envelhecimento/metabolismo , Matriz Extracelular/fisiologia , Metaloproteinases da Matriz/metabolismo , Fragmentos de Peptídeos/biossíntese , Pró-Colágeno/biossíntese , Tendões/citologia , Tendões/metabolismo , Proteína ADAM12/genética , Proteína ADAM17/genética , Proteínas ADAMTS/genética , Envelhecimento/patologia , Animais , DNA/metabolismo , Cavalos , Metaloproteinases da Matriz/genética , RNA Mensageiro/metabolismo , Encurtamento do Telômero , Tendões/enzimologia , Inibidor Tecidual de Metaloproteinase-3/genética , Inibidores Teciduais de Metaloproteinases/genética , Inibidor Tecidual 4 de Metaloproteinase
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