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首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >Proteoglycan breakdown from bovine nasal cartilage is increased, and from articular cartilage is decreased, by extracellular ATP
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Proteoglycan breakdown from bovine nasal cartilage is increased, and from articular cartilage is decreased, by extracellular ATP

机译:通过细胞外ATP,牛鼻软骨蛋白聚糖分解增加,关节软骨分解蛋白减少

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摘要

The addition of ATP, but not ADP or AMP, to the culture media of bovine nasal cartilage explants caused an acceleration in the rate of proteoglycan loss from the tissue. The ATP-stimulated loss of proteoglycan was not inhibited by the IL1-receptor antagonist protein, but was partially inhibited by the presence of ADP or AMP. The proteolytic events resulting from the presence of ATP were found to be similar to those following treatment with IL1, in that inhibitors of the cysteine-peptidase cathepsin B, serine-proteinases with trypsin-like specificity, and of some of the matrixins, could all prevent proteoglycan loss, which was mediated, at least in part, by the action of ‘aggrecanase'. In contrast to its effects on nasal cartilage, ATP inhibited basal and stimulated proteoglycan release from articular cartilage. Both ADP and AMP had no effect on proteoglycan release in articular cartilage but enhanced the response to ATP when added concurrently. We conclude that extracellular ATP, probably acting via P2-purinoceptors, stimulates proteoglycan breakdown from bovine nasal cartilage and thus, may have a role in diseases which primarily involve destruction of non-articular cartilage. Extracellular ATP has, in contrast, a chondroprotective effect on bovine articular cartilage.
机译:向牛鼻软骨外植体的培养基中添加ATP,但不添加ADP或AMP,导致组织中蛋白聚糖损失的速度加快。 ATP刺激的蛋白聚糖损失不受IL1受体拮抗剂蛋白的抑制,但被ADP或AMP的存在部分抑制。发现由ATP引起的蛋白水解事件与用IL1处理后的事件类似,这是因为半胱氨酸肽酶组织蛋白酶B抑制剂,具有胰蛋白酶样特异性的丝氨酸蛋白酶以及某些基质酶都可以防止蛋白聚糖损失,这种损失至少部分是由“ aggrecanase”的作用介导的。与它对鼻软骨的作用相反,ATP抑制了基底软骨的蛋白多糖刺激,并刺激了其从关节软骨中释放出来。 ADP和AMP对关节软骨中蛋白聚糖的释放均无影响,但同时添加时对ATP的反应增强。我们得出的结论是,细胞外ATP可能通过P2-嘌呤受体起作用,刺激牛鼻软骨蛋白聚糖分解,因此可能在主要涉及非关节软骨破坏的疾病中起作用。相反,细胞外ATP对牛关节软骨具有软骨保护作用。

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