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44千道尔顿骨磷蛋白的细胞附着活性并不局限于骨细胞。

Cell attachment activity of the 44 kilodalton bone phosphoprotein is not restricted to bone cells.

作者信息

Somerman M J, Prince C W, Butler W T, Foster R A, Moehring J M, Sauk J J

机构信息

Department of Periodontics, University of Maryland Dental School, Baltimore.

出版信息

Matrix. 1989 Jan;9(1):49-54. doi: 10.1016/s0934-8832(89)80018-6.

Abstract

Proteins that promote cell migration, attachment and spreading are considered to play an important role in the regulation of cell function. Recently, a 44 kilodalton bone phosphoprotein (44K BPP) was shown to enhance the attachment of gingival fibroblasts and osteoblasts in vitro. The potential importance of this attachment protein in the regulation of mineralized tissue homeostasis prompted us to evaluate its ability to promote the attachment and migration of several other cell types. All the fibroblast cell lines and non-transformed calvaria cell lines assayed exhibited enhanced attachment and spreading in response to 44K BPP. Rat osteosarcoma cells (ROS 17/2.8) expressing osteoblast-like features, exhibited enhanced attachment in response to 44K BPP, while non-osteoblast-like cells (ROS 25/1) obtained from the same osteosarcoma did not. Two epithelial cell lines, CCL4 and A431, demonstrated enhanced attachment when exposed to fibronectin or laminin, but not 44K BPP. Another epithelial-like cell line, HT 1080, derived from a fibrosarcoma, showed enhanced attachment in the presence of all three attachment proteins. Fibronectin, but not 44K BPP, promoted the chemotactic migration of fibroblasts. These studies indicate that the role of 44K BPP attachment protein in the regulation of cell behavior is not restricted to bone cells.

摘要

促进细胞迁移、黏附和铺展的蛋白质被认为在细胞功能调节中发挥重要作用。最近,一种44千道尔顿的骨磷蛋白(44K BPP)被证明在体外可增强牙龈成纤维细胞和成骨细胞的黏附。这种黏附蛋白在矿化组织稳态调节中的潜在重要性促使我们评估其促进其他几种细胞类型黏附和迁移的能力。所有检测的成纤维细胞系和未转化的颅骨细胞系在接触44K BPP后均表现出黏附和铺展增强。具有成骨细胞样特征的大鼠骨肉瘤细胞(ROS 17/2.8)在接触44K BPP后黏附增强,而从同一骨肉瘤中获得的非成骨细胞样细胞(ROS 25/1)则没有。两种上皮细胞系CCL4和A431在接触纤连蛋白或层粘连蛋白时黏附增强,但接触44K BPP时没有。另一种源自纤维肉瘤的上皮样细胞系HT 1080在三种黏附蛋白存在时均表现出黏附增强。纤连蛋白而非44K BPP可促进成纤维细胞的趋化迁移。这些研究表明,44K BPP黏附蛋白在细胞行为调节中的作用并不局限于骨细胞。

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