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一种来自纤连蛋白羧基末端hep-2区域的异常肝素结合肽。

An unusual heparin-binding peptide from the carboxy-terminal hep-2 region of fibronectin.

作者信息

Ingham K C, Brew S A, Migliorini M

机构信息

Holland Laboratory, American Red Cross, Rockville, Maryland 20855.

出版信息

Arch Biochem Biophys. 1994 Oct;314(1):242-6. doi: 10.1006/abbi.1994.1436.

Abstract

A synthetic 22 residue peptide, N22W, with sequence NVSPPRRARVTDATETTITISW, derived from the amino terminus of type III module 13 in the carboxy-terminal hep-2 domain of fibronectin, was found to exhibit unusual heparin binding properties. Titration of fluoresceinamine-labeled heparin (FA-heparin) with N22W at 25 degrees C and pH 7.4 in 0.02 M Tris buffer containing 0.15 M NaCl (TBS) produced a cooperative sigmoidal increase in fluorescence polarization anisotropy with half-saturation near 2.5 microM. The increase in anisotropy was even greater than that produced by the much larger 30-kDa hep-2 fragment of fibronectin and saturation was achieved at lower concentration. Simply deleting the C-terminal Trp from the peptide abolished its heparin-binding activity as did deletion of residues TETTITIS or mutation of the RR doublet to SS. Further analysis suggested that peptide-peptide interactions mediated by the carboxy-terminal region of N22W play an important role in its binding to heparin. A branched tetrameric peptide containing four copies of N21S caused a nearly hyperbolic increase in anisotropy of FA-heparin with an apparent Kd of 0.3 microM in TBS, 10-fold lower than that of the monomer or of the parent domain from which the peptide was derived. The results illustrate that peptide-peptide interactions can lead to stronger binding by allowing multiple points of contact with the negatively charged polysaccharide.

摘要

一种合成的22个残基的肽,N22W,其序列为NVSPPRRARVTDATETTITISW,源自纤连蛋白羧基末端hep-2结构域中III型模块13的氨基末端,被发现具有异常的肝素结合特性。在含有0.15 M NaCl(TBS)的0.02 M Tris缓冲液中,于25℃和pH 7.4条件下,用N22W对荧光胺标记的肝素(FA-肝素)进行滴定,荧光偏振各向异性呈协同的S形增加,半饱和浓度接近2.5 μM。各向异性的增加甚至大于由更大的30 kDa纤连蛋白hep-2片段所产生的增加,并且在较低浓度下达到饱和。简单地从肽中删除C末端的Trp会消除其肝素结合活性,删除残基TETTITIS或将RR双联体突变为SS也会如此。进一步分析表明,由N22W的羧基末端区域介导的肽-肽相互作用在其与肝素的结合中起重要作用。含有四个N21S拷贝的分支四聚体肽在TBS中使FA-肝素的各向异性呈近乎双曲线的增加,表观Kd为0.3 μM,比单体或该肽所源自的亲本结构域低10倍。结果表明,肽-肽相互作用可通过允许与带负电荷的多糖进行多个接触点而导致更强的结合。

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