Kaniewska Ewa, Sielicka Alicja, Sarathchandra Padmini, Pelikant-Małecka Iwona, Olkowicz Mariola, Słomińska Ewa M, Chester Adrian H, Yacoub Magdi H, Smoleński Ryszad T
a Department of Biochemistry , Medical University of Gdansk , Gdansk , Poland.
Nucleosides Nucleotides Nucleic Acids. 2014;33(4-6):305-12. doi: 10.1080/15257770.2014.885985.
Extracellular nucleotides control mechanisms such as thrombosis or inflammation that are important in several pathologies, including heart valve disease and calcification. Ectonucleoside triphosphate diphosphohydrolase 1 (eNTPD1, CD39) and ecto-5'-nucleotidase (e5NT, CD73) are ectoenzymes that convert adenosine triphosphate to adenosine diphosphate, adenosine monophosphate and finally to adenosine. Changes in activities of these enzymes influence extracellular nucleotide concentrations and therefore could be involved in valve pathology. This study aimed to analyze type of cells, specific area, level of expression and biochemical function of CD39 and CD73 in pig aortic valves. Samples were collected from aortic valves of domestic pigs. Histological sections were cut from paraffin embedded tissue blocks. Following incubation with primary antibody against CD39 or CD73, washing and secondary goat anti-rabbit secondary antibodies, slides were viewed with NanoZoomer scanner. Substantial expression CD39 and CD73 was observed in two main types of valve cells: endothelial and valve interstitial cells. Subsequently, biochemical function of CD39 and CD73 was evaluated in cells cultured from pig aortic valve. Breakdown of extracellular nucleotides added to cell medium was analyzed with high performance liquid chromatography. In the interstitial cells, the CD73 products formation was much faster than in endothelium, while for the CD39 activity this relation was opposite. Expression and high concentration of CD39 and CD73 products in endothelium are expected, but presence of CD73 in valve interstitial cells is a surprise. We conclude that CD39 and CD73 and their enzymatic activities that convert extracellular nucleotides are highly expressed and could have special function in the valve.
细胞外核苷酸可调控诸如血栓形成或炎症等机制,这些机制在包括心脏瓣膜疾病和钙化在内的多种病理状况中具有重要意义。胞外核苷酸三磷酸二磷酸水解酶1(eNTPD1,CD39)和胞外5'-核苷酸酶(e5NT,CD73)是将三磷酸腺苷依次转化为二磷酸腺苷、一磷酸腺苷并最终转化为腺苷的胞外酶。这些酶活性的变化会影响细胞外核苷酸浓度,因此可能与瓣膜病理状况有关。本研究旨在分析猪主动脉瓣膜中CD39和CD73的细胞类型、特定区域、表达水平及生化功能。样本取自家猪的主动脉瓣膜。从石蜡包埋的组织块上切取组织学切片。在用抗CD39或CD73的一抗孵育、洗涤并使用山羊抗兔二抗后,用NanoZoomer扫描仪观察玻片。在两种主要类型的瓣膜细胞,即内皮细胞和瓣膜间质细胞中观察到了CD39和CD73的大量表达。随后,在从猪主动脉瓣膜培养的细胞中评估了CD39和CD73的生化功能。用高效液相色谱法分析添加到细胞培养基中的细胞外核苷酸的分解情况。在间质细胞中,CD73产物的形成比在内皮细胞中快得多,而对于CD39活性,这种关系则相反。内皮细胞中CD39和CD73产物的表达及高浓度是预期的,但瓣膜间质细胞中存在CD73则令人惊讶。我们得出结论,CD39和CD73及其将细胞外核苷酸转化的酶活性高度表达,并且可能在瓣膜中具有特殊功能。