Bourdon P, Jablonski J A, Chao B H, Maraganore J M
Biogen Inc., Cambridge, MA 02142.
FEBS Lett. 1991 Dec 9;294(3):163-6. doi: 10.1016/0014-5793(91)80659-q.
Using hirudin as a model, a novel class of bivalent thrombin inhibitors has been designed and characterized (Maraganore et al. (1990) Biochemistry 29, 7095-7101). These peptides, designated 'hirulogs', interact with both thrombin's catalytic center and its anion-binding exosite for fibrinogen recognition. In order to investigate structure-activity relationships in hirulog peptides, a number of peptide and peptidomimetic derivatives with alterations in catalytic-site binding and anion-binding exosite binding moieties were prepared. Replacements or modifications in the catalytic site and exosite binding moieties were achieved with the consequences of maintaining or improving antithrombin activity. In addition to showing improved affinity for thrombin, some derivatives with Ki's in the sub-nanomolar range showed increased anticoagulant activities. These findings highlight the versatility of hirulog peptides in their bivalent interactions with thrombin.
以水蛭素为模型,设计并表征了一类新型的二价凝血酶抑制剂(Maraganore等人,(1990年)《生物化学》29卷,7095 - 7101页)。这些被称为“水蛭肽”的肽与凝血酶的催化中心及其用于识别纤维蛋白原的阴离子结合外位点相互作用。为了研究水蛭肽中的构效关系,制备了许多在催化位点结合和阴离子结合外位点结合部分有改变的肽和拟肽衍生物。通过维持或提高抗凝血酶活性的方式实现了催化位点和外位点结合部分的替换或修饰。除了对凝血酶表现出更高的亲和力外,一些Ki值在亚纳摩尔范围内的衍生物还表现出增强的抗凝活性。这些发现突出了水蛭肽与凝血酶二价相互作用的多功能性。