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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Transglutaminase activity in rabbit articular chondrocytes in culture
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Transglutaminase activity in rabbit articular chondrocytes in culture

机译:培养兔关节软骨细胞转谷氨酰胺酶活性

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In vivo, articular chondrocytes produce an important amount of extracellular matrix (cartilage) whose quality is impaired upon inflammation or aging leading to arthritis or arthrosis. Transglutaminases (EC 2.3.2.13) are a family of enzymes which have been shown to be involved in extracellular matrix stabilization, cell differentiation and possibly in initiation and propagation of inflammatory diseases. It is therefore of interest to study transglutaminase activity in chondrocytes. Transglutaminase activity was studied in rabbit articular chondrocytes in primary culture, where cells are in a well-differentiated state as assessed by collagen-type synthesis, as well as in subculture and in retinoic acid-treated cells, where cells are in a dedifferentiated state. Results showed that two different TGases activities are expressed in chondrocytes. One, down-regulated upon retinoic acid treatment of cells preferentially membrane bound and strongly activated upon trypsin treatment of cell lysates, is expressed at a high level in primary culture. The other one is up-regulated upon retinoic acid treatment, preferentially cytosolic and inactivated upon trypsin treatment of cell lysates. The rate of expression of the TGase down-regulated by RA seems to correlate with the differentiation state of the chondrocyte. This suggests that this TGase activity may have a physiological role in cartilage and merits further study.
机译:在体内,关节软骨细胞产生大量的细胞外基质(软骨),其质量会因炎症或衰老而导致关节炎或关节炎而受损。转谷氨酰胺酶(EC 2.3.2.13)是一类酶,已被证明与细胞外基质稳定,细胞分化有关,并可能与炎性疾病的发生和传播有关。因此,研究软骨细胞中的转谷氨酰胺酶活性是有意义的。转谷氨酰胺酶活性在原代培养的兔关节软骨细胞中进行了研究,该细胞通过胶原蛋白类型的合成评估处于良好分化状态,在继代培养和视黄酸处理的细胞中则处于去分化状态。结果表明,软骨细胞表达两种不同的TGase活性。一种在视黄酸处理后下调的细胞优先与膜结合,并在胰蛋白酶处理后将其强烈活化,在原代培养物中以高水平表达。另一种在视黄酸处理后上调,优先是细胞溶质,在胰蛋白酶处理细胞裂解物后失活。 RA下调的TGase的表达速率似乎与软骨细胞的分化状态相关。这表明这种TGase活性可能在软骨中具有生理作用,值得进一步研究。

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