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骨桥蛋白:矿化组织中的一种界面细胞外基质蛋白。

Osteopontin: an interfacial extracellular matrix protein in mineralized tissues.

作者信息

McKee M D, Nanci A

机构信息

Department of Stomatology, Faculty of Dentistry, Université de Montréal, Quebec, Canada.

出版信息

Connect Tissue Res. 1996;35(1-4):197-205. doi: 10.3109/03008209609029192.

Abstract

Among the noncollagenous matrix proteins found in mineralized tissues (MTs), colloidal-gold immunocytochemistry has demonstrated that the ultrastructural distribution of osteopontin (OPN) is unique in that this protein preferentially accumulates at MT interfaces. In bone, OPN is present as a major component of cell- and matrix-matrix interfacial structures termed laminae limitantes and cement lines, respectively. Here, we review the implications of this distinct, interfacial tissue distribution as it relates to the properties and functional motifs of OPN (e.g. RGD, polyAsp, phosphorylation) in different MTs, and more specifically, how it pertains to current theory on the cellular and extracellular matrix (ECM) events associated with bone remodeling. The production of OPN as one of the earliest, and latest, secretory activities of the osteoblast lineage is discussed, together with a consideration of the role of OPN in cement lines and laminae limitantes in bone and in other normal, pathological and healing MTs such as teeth, kidney stones, bone wound healing and implant osseointegration. Further to its ability to influence cell dynamics, calcification and possibly tissue cohesion in MTs, it is proposed that OPN in cement lines may also promote adhesion between apposing substrata. With regard to this latter function, it is suggested that the molecular interactions within, and biomechanical properties of, such an OPN-rich interfacial zone may be important in minimizing strain-induced fatigue damage and microcrack propagation in bone and across other MT interfaces.

摘要

在矿化组织(MTs)中发现的非胶原蛋白基质蛋白中,胶体金免疫细胞化学已证明骨桥蛋白(OPN)的超微结构分布是独特的,因为这种蛋白质优先在MT界面积累。在骨骼中,OPN分别作为细胞与基质间界面结构(称为限制板)和基质与基质间界面结构(称为黏合线)的主要成分存在。在此,我们综述这种独特的界面组织分布的意义,因为它与不同MTs中OPN的特性和功能基序(如RGD、聚天冬氨酸、磷酸化)相关,更具体地说,它与当前关于与骨重塑相关的细胞和细胞外基质(ECM)事件的理论有何关联。讨论了OPN作为成骨细胞谱系最早和最晚的分泌活动之一的产生,同时考虑了OPN在骨骼以及其他正常、病理和愈合中的MTs(如牙齿、肾结石、骨伤口愈合和种植体骨整合)的黏合线和限制板中的作用。除了其影响MTs中细胞动态、钙化以及可能的组织黏附的能力外,有人提出黏合线中的OPN还可能促进相邻基质之间的黏附。关于后一种功能,有人认为这种富含OPN的界面区域内的分子相互作用及其生物力学特性对于最小化骨骼和其他MT界面处应变诱导的疲劳损伤和微裂纹扩展可能很重要。

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