Carbonic anhydrase activators: synthesis of high affinity isozymes I, II and IV activators, derivatives of 4-(arylsulfonylureido-amino acyl)ethyl-1H-imidazole.

C T Supuran, A Scozzafava
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引用次数: 16

Abstract

Based on the X-ray crystallographic structure of the adduct of human carbonic anhydrase II (hCA II) with the weak activator histamine (Briganti, F., Mangani, S., Orioli, P., Scozzafava, A., Vernaglione, G. and Supuran, C.T. (1997) Biochemistry, 36, 10,384-10,392), a novel class of tight-binding CA activators was designed by using histamine (Hst) as lead molecule. Thus, N-1-tritylsulfenyl Hst was synthesized by reaction of Hst with tetrabromophthalic anhydride followed by protection of its imidazole moiety with tritylsulfenyl chloride. After hydrazinolysis, it afforded a key intermediate which was derivatized at the aliphatic amino group. Reaction of the key intermediate with 4-fluorophenylsulfonylureido amino acids (fpu-AA) or 2-toluenesulfonylureido amino acids (ots-AA) in the presence of carbodiimides, afforded after deprotection, a series of compounds with the general formula fpu/ots-AA-Hst (fpu = 4-FC6H4SO2NHCO; ots = 2-MeC6H4SO2NHCO). Some structurally related dipeptides with the general formula fpu/ots-AA1-AA2-Hst (AA, AA1 and AA2 represent amino acyl moieties), were also prepared, by a strategy similar to that used for the simple amino acyl compounds above. The new derivatives proved to be efficient in vitro activators of three CA isozymes. Best activity was shown against hCA I and bCA IV, for which some of the new compounds (such as the Lys, Arg, His or the dipeptide derivatives) showed affinities in the 2-12 nm range (h = human; b = bovine isozymes). hCA II was on the other hand somehow less prone to activation by the new derivatives, which possessed affinities around 30-60 nM for this isozyme. Ex vivo experiments showed some of the new activators to strongly enhance red cell CA activity (180-230%) after incubation with human erythrocytes. This new class of CA activators might lead to the development of drugs/diagnostic tools for the CA deficiency syndrome, a genetic disease of bone, brain and kidneys.

碳酸酐酶活化剂:合成高亲和力同工酶I、II和IV活化剂,4-(芳基磺酰脲基氨基酰基)乙基- 1h -咪唑衍生物。
基于人类碳酸酐酶II (hCA II)与弱激活剂组胺的加合物的x射线晶体结构(Briganti, F., Mangani, S., Orioli, P., Scozzafava, A., Vernaglione, G. and Supuran, C.T.(1997)生物化学,36,10,384-10,392),设计了一类以组胺(Hst)为导联分子的紧密结合的CA激活剂。因此,用四溴苯酐与Hst反应合成了n -1-三基亚砜基Hst,然后用三基亚砜酰氯保护其咪唑部分。肼解后,产生一个关键中间体,在脂肪族氨基上衍生。关键中间体在碳二亚胺存在下与4-氟苯基磺酰脲基氨基酸(fpu- aa)或2-甲苯磺酰脲基氨基酸(ots-AA)反应,脱保护后得到通式为fpu/ots-AA- hst (fpu = 4-FC6H4SO2NHCO)的一系列化合物;ots = 2-MeC6H4SO2NHCO)。采用与上述简单氨基酰基化合物类似的方法,制备了一些结构相关的二肽,其通式为fpu/ots-AA1-AA2-Hst (AA, AA1和AA2代表氨基酰基部分)。新的衍生物被证明是三种CA同工酶的有效体外激活剂。对hCA I和bCA IV的活性最好,其中一些新化合物(如Lys、Arg、His或其二肽衍生物)在2 ~ 12 nm范围内具有亲和力(h = human;B =牛同工酶)。另一方面,hCA II不太容易被新衍生物激活,新衍生物对该同工酶具有30-60 nM的亲和力。体外实验表明,一些新的激活剂在与人红细胞孵育后可显著提高红细胞CA活性(180-230%)。这类新的钙激活剂可能会导致钙缺乏综合征(一种骨骼、大脑和肾脏的遗传性疾病)的药物/诊断工具的发展。
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