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高分子量激肽原轻链中的HGLGHGHEQQHGLGHGH序列是锌依赖性结合阴离子表面的主要结构特征。

The sequence HGLGHGHEQQHGLGHGH in the light chain of high molecular weight kininogen serves as a primary structural feature for zinc-dependent binding to an anionic surface.

作者信息

DeLa Cadena R A, Colman R W

机构信息

Thrombosis Research Center, Temple University School of Medicine, Philadelphia, Pennsylvania 19140.

出版信息

Protein Sci. 1992 Jan;1(1):151-60. doi: 10.1002/pro.5560010115.

Abstract

The histidine-glycine-rich region of the light chain of cleaved high molecular weight kininogen (HK) is thought to be responsible for binding to negatively charged surfaces and initiation of the intrinsic coagulation, fibrinolytic, and kinin-forming systems. However, the specifically required amino acid sequences have not been delineated. An IgG fraction of a monoclonal antibody (MAb) C11C1 to the HK light chain was shown to inhibit by 66% the coagulant activity and by 57% the binding of HK to the anionic surface of kaolin at a concentration of 1.5 microM and 27 microM, respectively. Proteolytic fragments of HK were produced by successive digestion with human plasma kallikrein and factor XIa (FXIa). Those polypeptides that bound tightly (Kd = 0.77 nM) to a C11C1 affinity column were eluted at pH 3.0 and purified by membrane filtration. On 15% SDS polyacrylamide electrophoresis, the approximate M(r) was 7.3 kDa (range 6.2-8.1 kDa). Based on N-terminal sequencing, this polypeptide (1(2)), which extends from the histidine residue 459 to a lysine at position 505, 509, 511, 512, 515, or 520, inhibits by 50% the coagulant activity expressed by HK at a concentration of 22 microM. The synthetic peptide HGLGHGH representing the N-terminal of the 1(2)) fragment was synthesized, tested, and found at 4 mM to inhibit the procoagulant activity of HK 50%. A synthetic heptadecapeptide, HGLGHGHEQQHGLGHGH (residues 459-475) included within the 1(2) fragment, and with the ability to bind zinc, inhibited 50% of the HK coagulant activity at a concentration of 325 microM in the absence and presence of added Zn2+ (30 microM). The specific binding of 125I-HK to a negatively charged surface (kaolin) was inhibited 50% by unlabeled HK (5 microM). HGLGHGH, at a concentration of 7.0 mM, inhibited the binding to kaolin by 50%. The heptadecapeptide inhibited the specific binding of 125I-HK to kaolin by 50%, at a concentration of 2.3 mM, in the absence of Zn2+. In contrast, when Zn2+ was added, the concentration to achieve 50% inhibition decreased to 630 microM, indicating that Zn2+ was required to attain a favorable conformation for binding. Moreover, the 1(2) fragment was found to inhibit 50% of the 125I-HK binding to kaolin at a concentration of 380 microM. These results suggest that residues contained within the 1(2) fragment, notably HGLGHGHEQQHGLGHGH, serves as a primary structural feature for binding to a negatively charged surface.

摘要

裂解的高分子量激肽原(HK)轻链中富含组氨酸 - 甘氨酸的区域被认为负责与带负电荷的表面结合,并启动内源性凝血、纤维蛋白溶解和激肽形成系统。然而,具体所需的氨基酸序列尚未明确。单克隆抗体(MAb)C11C1针对HK轻链的IgG组分在浓度分别为1.5 microM和27 microM时,显示出对凝血活性的抑制率为66%,对HK与高岭土阴离子表面结合的抑制率为57%。HK的蛋白水解片段通过人血浆激肽释放酶和因子XIa(FXIa)的连续消化产生。那些与C11C1亲和柱紧密结合(Kd = 0.77 nM)的多肽在pH 3.0时洗脱,并通过膜过滤纯化。在15% SDS聚丙烯酰胺凝胶电泳上,其近似分子量(M(r))为7.3 kDa(范围6.2 - 8.1 kDa)。基于N端测序,该多肽(1(2))从组氨酸残基459延伸至位置505、509、511、512、515或520处的赖氨酸,在浓度为22 microM时对HK表达的凝血活性抑制50%。合成了代表1(2)片段N端的肽HGLGHGH,经测试发现在4 mM时对HK的促凝血活性抑制50%。包含在1(2)片段内且具有结合锌能力的合成十七肽HGLGHGHEQQHGLGHGH在不存在和存在添加的Zn2+(30 microM)的情况下,在浓度为325 microM时抑制50%的HK凝血活性。125I - HK与带负电荷表面(高岭土)的特异性结合被未标记的HK(5 microM)抑制50%。HGLGHGH在浓度为7.0 mM时对与高岭土的结合抑制50%。在不存在Zn2+的情况下,十七肽在浓度为2.3 mM时对125I - HK与高岭土的特异性结合抑制50%。相反,当添加Zn2+时,达到50%抑制的浓度降至630 microM,表明需要Zn2+来获得有利于结合的构象。此外,发现1(2)片段在浓度为380 microM时对125I - HK与高岭土的结合抑制50%。这些结果表明,1(2)片段内包含的残基,特别是HGLGHGHEQQHGLGHGH,是与带负电荷表面结合的主要结构特征。

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