Sunic D, McNeil J D, Andress D L, Belford D A
Department of Medicine, Modbury Public Hospital, Smart Road, Modbury, SA 5092, Australia.
Biochim Biophys Acta. 1998 Nov 27;1425(3):567-76. doi: 10.1016/s0304-4165(98)00110-x.
We have previously demonstrated that ovine articular chondrocytes synthesise and release insulin-like growth factor binding protein-5 (IGFBP-5) which subsequently undergoes proteolysis in the tissue culture medium. The IGFBP-5 proteolytic activity has now been characterised and its substrate specificity analysed using recombinant IGFBP-5 and purified chondrocyte-derived IGFBPs. Iodinated human recombinant IGFBP-5 was incubated with chondrocyte culture or conditioned medium in the presence or absence of various inhibitors. Serine protease inhibitors aprotinin and heparin effectively inhibited the breakdown of IGFBP-5. Furthermore, insulin-like growth factor-I (IGF-I) but not its structural analogues with reduced affinity for IGFBP-5, was also able to partially protect IGFBP-5 from degradation indicating that the association of IGF with the binding protein was required for the inhibition of the proteolytic activity. The inflammatory cytokine interleukin-1 did not have any effect on IGFBP-5 proteolysis. The proteolytic activity appears to be IGFBP-5-specific since the incubation of chondrocyte-derived IGFBPs with chondrocyte conditioned medium resulted in the loss of IGFBP-5 while the levels of the other two IGFBPs (IGFBP-2 and a 24 kDa IGFBP) remained unchanged. In conclusion, we show that IGFBP-5 is specifically cleaved by a serine protease released by primary cultures of ovine articular chondrocytes and also demonstrate the ability of IGF-I to inhibit the proteolytic activity both in cell culture and in cell-free conditions.
我们先前已证明,绵羊关节软骨细胞能合成并释放胰岛素样生长因子结合蛋白-5(IGFBP-5),该蛋白随后在组织培养基中发生蛋白水解。现已对IGFBP-5的蛋白水解活性进行了表征,并使用重组IGFBP-5和纯化的软骨细胞衍生的IGFBPs分析了其底物特异性。将碘化的人重组IGFBP-5与软骨细胞培养物或条件培养基在存在或不存在各种抑制剂的情况下孵育。丝氨酸蛋白酶抑制剂抑肽酶和肝素可有效抑制IGFBP-5的降解。此外,胰岛素样生长因子-I(IGF-I)而非对IGFBP-5亲和力降低的其结构类似物,也能够部分保护IGFBP-5不被降解,这表明IGF与结合蛋白的结合是抑制蛋白水解活性所必需的。炎性细胞因子白细胞介素-1对IGFBP-5的蛋白水解没有任何影响。这种蛋白水解活性似乎具有IGFBP-5特异性,因为将软骨细胞衍生的IGFBPs与软骨细胞条件培养基孵育会导致IGFBP-5水平降低,而其他两种IGFBPs(IGFBP-2和一种24 kDa的IGFBP)的水平保持不变。总之,我们表明IGFBP-5被绵羊关节软骨细胞原代培养物释放的丝氨酸蛋白酶特异性切割,并且还证明了IGF-I在细胞培养和无细胞条件下抑制蛋白水解活性的能力。