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骨桥蛋白N端结构域包含一个由α9β1整合素识别的隐蔽黏附序列。

Osteopontin N-terminal domain contains a cryptic adhesive sequence recognized by alpha9beta1 integrin.

作者信息

Smith L L, Cheung H K, Ling L E, Chen J, Sheppard D, Pytela R, Giachelli C M

机构信息

Department of Pathology, University of Washington, Seattle, Washington 98195, USA.

出版信息

J Biol Chem. 1996 Nov 8;271(45):28485-91.

PMID:8910476
Abstract

Osteopontin is an adhesive glycoprotein implicated in numerous diseases associated with inflammation and remodeling. There are several structural domains in osteopontin that are of particular interest. The RGD motif is a cell attachment sequence shown to be critical for cell adhesion through alphav-containing integrins. In close proximity to the RGD domain is the thrombin cleavage site. Previous observations suggest that thrombin cleavage of osteopontin occurs in vivo and may be physiologically important. To study the functional significance of osteopontin cleavage by thrombin, we made glutathione S-transferase-osteopontin fusion proteins. These proteins contain either the N- or C-terminal domains expected to be formed following thrombin cleavage at the Arg169-Ser170 peptide bond. We compared these osteopontin fragments with native osteopontin in their ability to support adhesion of several different cell lines and identified the receptors mediating these interactions. Our data show that the N-terminal osteopontin fragment, which contains the RGD domain, supports adhesion of a melanoma cell line that is unable to bind native osteopontin. This suggests that osteopontin adhesive interactions may be regulated by thrombin cleavage. We also demonstrate that osteopontin contains a cryptic binding activity, which can be recognized by a novel osteopontin receptor. This receptor has been identified as the alpha9beta1 integrin.

摘要

骨桥蛋白是一种黏附性糖蛋白,与许多炎症和重塑相关疾病有关。骨桥蛋白中有几个结构域特别引人关注。RGD基序是一种细胞附着序列,已证明其对于通过含αv的整合素进行细胞黏附至关重要。在RGD结构域附近是凝血酶切割位点。先前的观察表明,骨桥蛋白在体内会发生凝血酶切割,并且可能具有重要的生理意义。为了研究凝血酶切割骨桥蛋白的功能意义,我们制备了谷胱甘肽S-转移酶-骨桥蛋白融合蛋白。这些蛋白包含在Arg169-Ser170肽键处经凝血酶切割后预期形成的N端或C端结构域。我们比较了这些骨桥蛋白片段与天然骨桥蛋白支持几种不同细胞系黏附的能力,并鉴定了介导这些相互作用的受体。我们的数据表明,包含RGD结构域的N端骨桥蛋白片段能够支持一种无法结合天然骨桥蛋白的黑色素瘤细胞系的黏附。这表明骨桥蛋白的黏附相互作用可能受凝血酶切割调节。我们还证明骨桥蛋白含有一种隐蔽的结合活性,可被一种新型骨桥蛋白受体识别。这种受体已被鉴定为α9β1整合素。

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