蛋白酶抑制剂,第13部分:结构中含有磺酰双氰胺部分的特异性弱碱性凝血酶抑制剂

B. W. Clare, A. Scozzafava, C. Supuran
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引用次数: 5

摘要

通过双氰胺与烷基/芳基磺酰卤化物以及芳基磺酰异氰酸酯反应制备了一系列化合物,为获得以磺基双氰胺为SI锚定基团的弱碱性凝血酶抑制剂找到了一条线索。检测到的铅为磺胺基双氰胺(对凝血酶的Id为3μM,对胰蛋白酶的Id为15μM),该铅在4-氨基上通过加入芳基磺酰脲基以及在氨基末端被苄氧羰基或磺酰脲基保护的氨基酰基/二肽基进一步衍生化。得到的最佳化合物(ts- d - ph -原磺胺基双氰胺)对凝血酶的抑制常数为9nM,对胰蛋白酶的抑制常数为1400 nM。pKa测量表明,本文报道的新衍生物确实具有降低的碱度,修饰的胍部分的pKa在7.9-8.3 pKa单位范围内。分子力学计算表明,这些化合物的首选互变异构体形式为ArSO2N = C(NH2) NH-CN型,可能允许这种新的锚定基团与活性位点氨基酸残基Asp 189之间形成有利的相互作用,这对于底物/抑制剂结合这种类型的丝氨酸蛋白酶至关重要。因此,本论文的主要发现是磺酰双氰胺基团可能是获得弱碱性强效凝血酶抑制剂的一种有趣的替代方法,这种抑制剂与胰蛋白酶的结合亲和力较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protease Inhibitors, Part 13: Specific, Weakly Basic Thrombin Inhibitors Incorporating Sulfonyl Dicyandiamide Moieties in their Structure
A series of compounds has been prepared by reaction of dicyandiamide with alkyl/arylsulfonyl halides as well as arylsulfonylisocyanates to locate a lead for obtaining weakly basic thrombin inhibitors with sulfonyldicyandiamide moieties as the SI anchoring group. The detected lead was sulfanilyl-dicyandiamide (Id of 3μM against thrombin, and 15μM against trypsin), which has been further derivatized at the 4-amino group by incorporating arylsulfonylureido as well as amino acyl/dipeptidyl groups protected at the amino terminal moiety with benzyloxycarbonyl or tosylureido moieties. The best compound obtained (ts-D-Phe-Pro-sulfanilyl-dicyan-diamide) showed inhibition constants of 9nM against thrombin and 1400 nM against trypsin. pKa measurements showed that the new derivatives reported here do indeed possess a reduced basicity, with the pKa of the modified guanidine moieties in the range 7.9–8.3 pKa units. Molecular mechanics calculations showed that the preferred tautomeric form of these compounds is of the type ArSO2N = C(NH2) NH-CN, probably allowing for the formation of favorable interaction between this new anchoring group and the active site amino acid residue Asp 189, critical for substrate/inhibitor binding to this type of serine protease. Thus, the main finding of the present paper is that the sulfonyldicyandiamide group may constitute an interesting alternative for obtaining weakly basic, potent thrombin inhibitors, which bind with less affinity to trypsin.
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