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通过含半胱氨酸标签实现活性血管内皮生长因子的表面固定化。

Surface immobilization of active vascular endothelial growth factor via a cysteine-containing tag.

作者信息

Backer Marina V, Patel Vimal, Jehning Brian T, Claffey Kevin P, Backer Joseph M

机构信息

SibTech, Inc., Newington, CT 06111, USA.

出版信息

Biomaterials. 2006 Nov;27(31):5452-8. doi: 10.1016/j.biomaterials.2006.06.025. Epub 2006 Jul 14.

Abstract

Developing tissue engineering scaffolds with immobilized growth factors requires facile and reliable methods for the covalent attachment of functionally active proteins. We describe here a new approach to immobilize recombinant proteins based on expression of the protein of interest with a 15-aa long fusion tag (Cys-tag), which avails a free sulfhydryl group for site-specific conjugation. To validate this approach, we conjugated a single-chain vascular endothelial growth factor expressed with an N-terminal Cys-tag (scVEGF) to fibronectin (FN) using a common thiol-directed bi-functional cross-linking agent. We found that the FN-scVEGF conjugate retains VEGF activity similar to that of free scVEGF when used as a soluble ligand. Cells expressing VEGF receptor VEGFR-2 grown on plates coated with FN-scVEGF displayed morphological phenotypes similar to those observed for cells grown on FN in the presence of equivalent amounts of free scVEGF. In addition, 293/KDR cell growth stimulation was observed in the same concentration range with either immobilized or free scVEGF. The effects of immobilized scVEGF, and soluble scVEGF were blocked by NVP-AAD777-NX, a VEGF receptor tyrosine kinase inhibitor. These data indicate that site-specific immobilization via Cys-tag provides a facile and reliable method for permanent deposition of functionally active growth factors on synthetic or protein scaffolds with applications for advanced tissue engineering.

摘要

开发带有固定化生长因子的组织工程支架需要简便可靠的方法来实现功能活性蛋白的共价连接。我们在此描述一种基于表达带有15个氨基酸长融合标签(Cys标签)的目标蛋白来固定重组蛋白的新方法,该标签提供一个游离巯基用于位点特异性偶联。为验证此方法,我们使用一种常见的硫醇导向双功能交联剂将带有N端Cys标签(scVEGF)表达的单链血管内皮生长因子与纤连蛋白(FN)偶联。我们发现,当用作可溶性配体时,FN-scVEGF偶联物保留了与游离scVEGF相似的VEGF活性。在涂有FN-scVEGF的平板上生长的表达VEGF受体VEGFR-2的细胞呈现出的形态表型,与在存在等量游离scVEGF的情况下在FN上生长的细胞所观察到的相似。此外,在相同浓度范围内,固定化或游离scVEGF均观察到对293/KDR细胞生长的刺激作用。VEGF受体酪氨酸激酶抑制剂NVP-AAD777-NX可阻断固定化scVEGF和可溶性scVEGF的作用。这些数据表明,通过Cys标签进行位点特异性固定为功能活性生长因子在合成或蛋白质支架上的永久沉积提供了一种简便可靠的方法,可应用于先进的组织工程。

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