Di-, tri- and tetra-5'-O-phosphorothioadenosyl substituted polyols as inhibitors of Fhit: Importance of the alpha-beta bridging oxygen and beta phosphorus replacement.

James M Varnum, Janina Baraniak, Renata Kaczmarek, Wojciech J Stec, Charles Brenner
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Abstract

BACKGROUND: The human FHIT gene is inactivated early in the development of many human cancers and loss of Fhit in mouse predisposes to cancer while reintroduction of FHIT suppresses tumor formation via induction of apoptosis. Fhit protein, a diadenosine polyphosphate hydrolase, does not require hydrolase activity to function in tumor suppression and may signal for apoptosis as an enzyme-substrate complex. Thus, high affinity nonhydrolyzable substrate analogs may either promote or antagonize Fhit function, depending on their features, in Fhit + cells. Previously synthesized analogs with phosphorothioadenosyl substitutions and "supercharged" branches do not bind better than natural substrates and thus have limited potential as cellular probes. RESULTS: Here we link adenosine 5'-O-phosphates and phosphorothioates to short-chain polyols to generate a series of substrate analogs. We obtain structure-activity data in the form of in vitro Fhit inhibition for four types of analog substitutions and describe two compounds, inhibitory constants for which are 65 and 75-fold lower than natural substrates. CONCLUSIONS: The best Fhit inhibitors obtained to date separate two or more 5'-O-phosphoromonothioadenosyl moieties with as many bond lengths as in AppppA, maintain oxygen at the location of the alpha-beta bridging oxygen, and replace carbon for the beta phosphorus.

二,三和四-5'- o -磷硫腺苷基取代多元醇作为Fhit抑制剂:α - β桥接氧和β -磷替代的重要性。
背景:人类FHIT基因在许多人类癌症发展的早期失活,小鼠中FHIT基因的缺失使其易患癌症,而FHIT基因的重新引入通过诱导细胞凋亡抑制肿瘤的形成。Fhit蛋白是一种二腺苷多磷酸水解酶,不需要水解酶活性就能抑制肿瘤,并可能作为酶-底物复合物发出细胞凋亡信号。因此,在Fhit +细胞中,高亲和的非水解底物类似物可能促进或拮抗Fhit功能,这取决于它们的特征。先前合成的具有磷酸硫代腺苷基取代和“增压”分支的类似物与天然底物的结合效果不如天然底物,因此作为细胞探针的潜力有限。结果:我们将5'- o -磷酸腺苷和硫代磷酸酯与短链多元醇连接,生成一系列底物类似物。我们以体外Fhit抑制的形式获得了四种类似取代的结构-活性数据,并描述了两种化合物,其抑制常数比天然底物低65和75倍。结论:迄今为止获得的最佳Fhit抑制剂分离了两个或多个5'- o -磷单硫腺苷基,其键长与AppppA相同,在α - β桥接氧的位置维持氧,并取代了β磷的碳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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