首页> 外文期刊>Journal of Molecular Biology >The methyl group of N(alpha)(Me)Arg-containing peptides disturbs the active-site geometry of thrombin, impairing efficient cleavage.
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The methyl group of N(alpha)(Me)Arg-containing peptides disturbs the active-site geometry of thrombin, impairing efficient cleavage.

机译:含N(α)(Me)Arg的肽的甲基会干扰凝血酶的活性位点几何形状,从而损害有效裂解。

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摘要

Bivalent peptidic thrombin inhibitors consisting of an N-terminal d-cyclohexylalanine-Pro-N(alpha)(Me)Arg active-site fragment, a flexible polyglycine linker, and a C-terminal hirugen-like segment directed towards the fibrinogen recognition exosite inhibit thrombin with K(i) values in the picomolar range, remaining stable in buffered solution at pH 7.8 for at least 15 hours. In order to investigate the structural basis of this increased stability, the most potent of these inhibitors, I-11 (K(i)=37pM), containing an N(alpha)(Me)Arg-Thr bond, was crystallized in complex with human alpha-thrombin. X-ray data were collected to 1.8A resolution and the crystal structure of this complex was determined. The Fourier map displays clear electron density for the N-terminal fragment and for the exosite binding segment. It indicates, however, that in agreement with Edman sequencing, the peptide had been cleaved in the crystal, presumably due to the long incubation time of 14 days needed for crystallization and data collection. The N(alpha)(Me) group is directed toward the carbonyl oxygen atom of Ser214, pushing the Ser195 O(gamma) atom out of its normal site. This structure suggests that upon thrombin binding, the scissile peptide bond of the intact peptide and the Ser195 O(gamma) are separated from each other, impairing the nucleophilic attack of the Ser195 O(gamma) toward the N(alpha)(Me)Arg carbonyl group. In the time-scale of two weeks, however, cleavage geometries favoured by the crystal allow catalysis at a slow rate.
机译:由N端d-环己基丙氨酸-Pro-N(α)(Me)Arg活性位点片段,柔性聚甘氨酸接头和C端丝裂素样片段组成的二价肽类凝血酶抑制剂,可抑制纤维蛋白原凝血酶的K(i)值在皮摩尔范围内,在pH 7.8的缓冲溶液中保持稳定至少15小时。为了研究这种增加的稳定性的结构基础,将含有N(α)(Me)Arg-Thr键的最强抑制剂I-11(K(i)= 37pM)与人α-凝血酶。收集X射线数据至1.8A分辨率,并确定该络合物的晶体结构。傅里叶图显示了N末端片段和外位结合片段的清晰电子密度。然而,这表明,与埃德曼测序法相一致,该肽已在晶体中裂解,大概是由于结晶和数据收集需要14天的长时间孵育时间。 Nα(Me)基团指向Ser214的羰基氧原子,将Ser195 O(γ)原子推离其正常位点。该结构表明,在凝血酶结合后,完整肽的易裂肽键与Ser195Oγ相互分离,从而削弱了Ser195Oγ对Nα(Me)Arg的亲核攻击羰基。然而,在两周的时间范围内,晶体所偏爱的分裂几何形状允许缓慢催化。

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