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基质金属蛋白酶(MMP)和组织蛋白酶K对破骨细胞活性的作用各不相同。

Matrix metalloproteinases (MMP) and cathepsin K contribute differently to osteoclastic activities.

作者信息

Delaissé Jean-Marie, Andersen Thomas L, Engsig Michael T, Henriksen Kim, Troen Tine, Blavier Laurence

机构信息

Nordic Bioscience, Center for Clinical and Basic Research, DK-2730 Herlev, Denmark.

出版信息

Microsc Res Tech. 2003 Aug 15;61(6):504-13. doi: 10.1002/jemt.10374.

Abstract

The best established proteolytic event of osteoclasts is bone matrix solubilization by the cysteine proteinase cathepsin K. Here, however, we draw the attention on osteoclastic activities depending on matrix metalloproteinases (MMPs). We discuss the observations supporting that MMPs contribute significantly to bone matrix solubilization in specific areas of the skeleton and in some developmental and pathological situations. Our discussion takes into account (1) the characteristics of the bone remodeling persisting in the absence of cathepsin K, (2) the ultrastructure of the resorption zone in response to inactivation of MMPs and of cathepsin K in different bone types, (3) bone resorption levels in MMP knockout mice compared to wild-type mice, (4) the identification of MMPs in osteoclasts and surrounding cells, and (5) the effect of different bone pathologies on the serum concentrations of specific collagen fragments believed to discriminate between cathepsin K and MMP cleavage. Next, we provide evidence that MMPs are very critical for osteoclast migration, thereby controlling also the cell-matrix interactions required for cell attachment/detachment. The evidence supporting this role is based on a model of osteoclast recruitment in primitive long bones, an assay of osteoclast invasion through collagen gel, and the effect of proteinase inhibitors/knockouts in these models. Furthermore, we mention observations indicating a role of MMPs in initiation of bone resorption. Finally, we emphasize the many distinct ways MMPs may alter focally the extracellular environment thereby regulating the osteoclast behavior. Although the understanding of MMPs in osteoclast biology is rapidly expanding, it is suspected that important roles remain to be discovered.

摘要

破骨细胞最明确的蛋白水解事件是通过半胱氨酸蛋白酶组织蛋白酶K使骨基质溶解。然而,在此我们将关注点放在了依赖基质金属蛋白酶(MMPs)的破骨细胞活性上。我们讨论了一些观察结果,这些结果支持MMPs在骨骼特定区域以及某些发育和病理情况下对骨基质溶解有显著贡献。我们的讨论考虑了以下几点:(1)在缺乏组织蛋白酶K的情况下持续存在的骨重塑特征;(2)不同骨类型中MMPs和组织蛋白酶K失活后吸收区的超微结构;(3)与野生型小鼠相比,MMP基因敲除小鼠的骨吸收水平;(4)破骨细胞及周围细胞中MMPs的鉴定;(5)不同骨病理状态对特定胶原片段血清浓度的影响,这些片段被认为可区分组织蛋白酶K和MMPs的切割作用。接下来,我们提供证据表明MMPs对破骨细胞迁移非常关键,从而也控制了细胞附着/脱离所需的细胞 - 基质相互作用。支持这一作用的证据基于原始长骨中破骨细胞募集的模型、破骨细胞通过胶原凝胶侵袭的实验以及这些模型中蛋白酶抑制剂/基因敲除的效果。此外,我们提到了表明MMPs在骨吸收起始中起作用的观察结果。最后,我们强调MMPs可能通过多种不同方式局部改变细胞外环境,从而调节破骨细胞行为。尽管对破骨细胞生物学中MMPs的理解正在迅速扩展,但人们怀疑仍有重要作用有待发现。

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