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首页> 外文期刊>Bioorganic and Medicinal Chemistry Letters >Carbonic anhydrase inhibitors: synthesis and inhibition of cytosolic/tumor-associated carbonic anhydrase isozymes I, II, IX, and XII with N-hydroxysulfamides--a new zinc-binding function in the design of inhibitors.
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Carbonic anhydrase inhibitors: synthesis and inhibition of cytosolic/tumor-associated carbonic anhydrase isozymes I, II, IX, and XII with N-hydroxysulfamides--a new zinc-binding function in the design of inhibitors.

机译:碳酸酐酶抑制剂:与N-羟基磺酰胺一起合成和抑制胞质/肿瘤相关的碳酸酐酶同工酶I,II,IX和XII-抑制剂设计中的新锌结合功能。

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摘要

A small library of N-hydroxysulfamides was synthesized by an original approach in order to investigate whether this zinc-binding function is efficient for the design of inhibitors targeting the cytosolic (hCA I and II) and transmembrane, tumor-associated (hCA IX and XII) isozymes of carbonic anhydrase (CA, EC 4.2.1.1). The parent derivative, N-hydroxysulfamide was a more potent inhibitor as compared to sulfamide or sulfamic acid against all isozymes, with inhibition constants in the range of 473 nM-4.05 microM. Its substituted n-decyl-, n-dodecyl-, benzyl-, and biphenylmethyl-derivatives were less inhibitory against hCA I (K(I)s in the range of 5.8-8.2 microM) but more inhibitory against hCA II (K(I)s in the range of 50.5-473 nM). The same situation was true for the tumor-associated isozymes, with K(I)s in the range of 353-790 nM against hCA IX and 372-874 nM against hCA XII. Some sulfamides/sulfamates possessing similar substitution patterns have also been investigated for the inhibition of these isozymes, being shown that in some particular cases sulfamides are more efficient inhibitors as compared to the corresponding sulfamates. Potent CA inhibitors targeting the cytosolic or tumor-associated CA isozymes can thus be designed from various classes of sulfonamides, sulfamides, or sulfamates and their derivatives, considering the extensive interactions in which the inhibitor and the enzyme active site are engaged, based on recent X-ray crystallographic data.
机译:为了研究这种锌结合功能对于设计靶向与肿瘤相关的细胞溶质(hCA I和II)和跨膜(hCA IX和XII)的抑制剂是否有效,通过原始方法合成了一个小的N-羟基磺酰胺库)碳酸酐酶的同工酶(CA,EC 4.2.1.1)。与磺酰胺或氨基磺酸相比,母体衍生物N-羟基磺酰胺对所有同工酶的抑制作用更强,抑制常数为473 nM-4.05 microM。其取代的正癸基,正十二烷基,苄基和联苯甲基衍生物对hCA I(K(I)在5.8-8.2 microM范围内)的抑制作用较小,但对hCA II(K(I )的范围是50.5-473 nM。对于肿瘤相关的同工酶,情况相同,K(I)对hCA IX的范围为353-790 nM,对hCA XII的范围为372-874 nM。还已经研究了一些具有类似取代模式的磺酰胺/氨基磺酸盐对这些同工酶的抑制作用,结果表明,在某些特定情况下,与相应的氨基磺酸盐相比,磺酰胺是更有效的抑制剂。基于最近的研究结果,考虑到抑制剂和酶活性位点之间的广泛相互作用,可以从各种类型的磺酰胺,磺酰胺或氨基磺酸盐及其衍生物中设计针对细胞溶质或肿瘤相关CA同工酶的有效CA抑制剂。射线晶体学数据。

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