Relative roles of collagenase and lysosomal cysteine-proteinases in bone resorption.

G Vaes, J M Delaissé, Y Eeckhout
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Abstract

Both lysosomal cysteine-proteinases and collagenase appear to be necessary for the resorption of actively growing, immature woven bone, but their relative roles are not yet clearly elucidated. The present evidence indicates that, during bone resorption, the osteoclast first solubilizes the mineral by a secretion of acid and then removes the exposed demineralized collagen by the action of secreted lysosomal collagenolytic cysteine-proteinases. Collagenase in bone seems to be mainly a product of osteoblasts and related cells, not osteoclasts. Its role could be limited in the removal of any non-mineralized collagen layers which could be covering mineralized bone surfaces and which seem to prevent the activation of osteoclasts and thus their action; such a "shield" of unmineralized osteoid is well-established at the surface of actively growing woven bone, although not on the resorbing surfaces of mature lamellar bone. Moreover, some osteoblast-derived procollagenase is stored in the mineralized bone matrix from which it can be released by demineralization. It is therefore possible that it may also contribute to the degradation of demineralized bone collagen once it has been released and activated by lysosomal cysteine-proteinases under the osteoclast.

胶原酶和溶酶体半胱氨酸蛋白酶在骨吸收中的相对作用。
溶酶体半胱氨酸蛋白酶和胶原酶似乎都是积极生长的未成熟编织骨的吸收所必需的,但它们的相对作用尚未清楚阐明。目前的证据表明,在骨吸收过程中,破骨细胞首先通过分泌酸溶解矿物质,然后通过分泌的溶酶体溶胶原半胱氨酸蛋白酶的作用去除暴露的脱矿胶原。骨中的胶原酶似乎主要是成骨细胞和相关细胞的产物,而不是破骨细胞的产物。它的作用可能仅限于去除任何非矿化的胶原蛋白层,这些胶原蛋白层可能覆盖矿化的骨表面,似乎会阻止破骨细胞的激活,从而阻止它们的作用;这种未矿化的类骨“盾牌”在活跃生长的编织骨表面建立良好,尽管在成熟板层骨的吸收表面没有建立。此外,一些成骨细胞衍生的前胶原酶储存在矿化的骨基质中,可以通过脱矿释放出来。因此,一旦脱矿骨胶原被释放并被破骨细胞下的溶酶体半胱氨酸蛋白酶激活,它也可能有助于降解脱矿骨胶原。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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