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通过生物物理和生物学分析以及肽-五糖对接复合物的分子建模评估抗凝血酶III-肝素相互作用的结构-功能关系。

Structure-function relations of antithrombin III-heparin interactions as assessed by biophysical and biological assays and molecular modeling of peptide-pentasaccharide-docked complexes.

作者信息

Tyler-Cross R, Sobel M, McAdory L E, Harris R B

机构信息

Department of Biochemistry and Molecular Biophysics, Virginia Commonwealth University, Medical College of Virginia, Richmond 23298-0614, USA.

出版信息

Arch Biochem Biophys. 1996 Oct 15;334(2):206-13. doi: 10.1006/abbi.1996.0448.

Abstract

The serine proteinase inhibitor antithrombin III (ATIII) is a key regulatory protein of intrinsic blood coagulation. ATIII attains its full biological activity only upon binding polysulfated glycosaminoglycans, such as heparin. Peptide K121-A134, based on the sequence of ATIII in the D helix region, was previously shown by us (Tyler-Cross et al., Protein Sci. 3, 620-627, 1994) to encompass part (or all) of the purported high-affinity heparin binding region of ATIII. A series of peptide analogs has now been prepared whose sequences are identical to K121-A134 except that single cationic residues of K121-A134 have been successively replaced with Ala. In one case, the Arg residue of the reference peptide corresponding to R129 of ATIII has been replaced by Gln (R129deltaQ peptide), thus mimicking the naturally occurring mutant protein, ATIII Geneva. The heparin affinity of all peptides was quantitated by isothermal titration calorimetry and by peptide/ATIII competition binding assays. Replacement of any single cationic residue with Ala had a deleterious effect on heparin binding. The greatest reduction in heparin affinity (more than 30-fold) was observed with the R129deltaQ peptide (KD = 1.5 +/- 0.06 microM vs 51 +/- 2 nM for the reference peptide, K121-A134). Furthermore, each of the Ala-replacement peptides was a less-effective inhibitor of ATIII-heparin complex formation than the reference peptide. The poorest inhibitor was the R129deltaQ peptide which showed nearly 30% decrease in inhibition potency (60% inhibition at 100 microM peptide vs 90% inhibition with the reference peptide). The relative heparin affinities of the peptides measured by biological assay were the same as determined by titration calorimetry. Consequently, we modeled the complexes formed between the pentasaccharide unit structure and the R129deltaQ peptide or the reference peptide, K121-A134. In the "docked" complex, the assumed conformation of K121-A134 permitted juxtaposition of the cationic residues of the peptide with functional anionic groups of the pentasaccharide known to be involved in binding. A docked complex could also be formed between the R129deltaQ peptide and the pentasaccharide, but misalignment of critical peptide and saccharide functional groups was observed. The structure of the R129deltaQ-pentasaccharide complex was highly irregular because F123 and Y131 were completely surface exposed, likely yielding an unfavorable structure in aqueous solution. The observations from molecular modeling allow us to suggest that ATIII Geneva displays decreased heparin binding affinity due to its inability to form a productive binding complex in which essential electrostatic contacts are made between suitably juxtaposed saccharide anionic functional groups and cationic amino acid side chains.

摘要

丝氨酸蛋白酶抑制剂抗凝血酶III(ATIII)是内源性血液凝固的关键调节蛋白。ATIII只有在与多硫酸化糖胺聚糖(如肝素)结合后才具有完整的生物活性。基于ATIII在D螺旋区域的序列的肽K121 - A134,我们之前(Tyler - Cross等人,《蛋白质科学》3,620 - 627,1994)已表明其包含ATIII所谓的高亲和力肝素结合区域的部分(或全部)。现已制备了一系列肽类似物,其序列与K121 - A134相同,只是K121 - A134的单个阳离子残基已被依次替换为丙氨酸。在一种情况下,对应于ATIII的R129的参考肽的精氨酸残基已被谷氨酰胺取代(R129δQ肽),从而模拟天然存在的突变蛋白ATIII日内瓦型。通过等温滴定量热法和肽/ATIII竞争结合试验对所有肽的肝素亲和力进行了定量。用丙氨酸替换任何单个阳离子残基都会对肝素结合产生有害影响。R129δQ肽的肝素亲和力降低最为显著(超过30倍)(KD = 1.5±0.06 microM,而参考肽K121 - A134为51±2 nM)。此外,每个丙氨酸替换肽对ATIII - 肝素复合物形成的抑制作用都不如参考肽有效。抑制作用最差的是R129δQ肽,其抑制效力降低了近30%(在100 microM肽时抑制率为60%,而参考肽为90%)。通过生物学测定法测得的肽的相对肝素亲和力与通过滴定量热法测定的结果相同。因此,我们对五糖单元结构与R129δQ肽或参考肽K121 - A134之间形成的复合物进行了建模。在“对接”复合物中,并假定K121 - A134的构象允许肽的阳离子残基与已知参与结合的五糖的功能性阴离子基团并列。R129δQ肽与五糖之间也可以形成对接复合物,但观察到关键的肽和糖的官能团未对齐。R129δQ - 五糖复合物的结构高度不规则,因为F123和Y131完全暴露于表面,这可能在水溶液中产生不利的结构。分子建模的观察结果使我们能够提出,ATIII日内瓦型显示出肝素结合亲和力降低是由于其无法形成有效的结合复合物,在该复合物中适当并列的糖阴离子官能团与阳离子氨基酸侧链之间无法形成必需的静电接触。

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