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Synthesis of Marine α-Methoxylated Fatty Acid Analogs that Effectively Inhibit the Topoisomerase IB from Leishmania donovani with a Mechanism Different from that of Camptothecin

机译:合成的海洋α-甲氧基化脂肪酸类似物其有效抑制喜树碱中拓扑异构酶IB的作用机理不同于喜树碱

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摘要

Sponges biosynthesize α-methoxylated fatty acids with unusual biophysical and biological properties and in some cases they display enhanced anticancer activities. However, the antiprotozoal properties of the α-methoxylated fatty acids have been less studied. In this work, we describe the total synthesis of (5Z,9Z)-(±)-2-methoxy-5,9-eicosadienoic acid (>1) and its acetylenic analog (±)-2-methoxy-5,9-eicosadiynoic acid (>2), and report that they inhibit (EC50 values between 31 and 22 µM) the Leishmania donovani DNA topoisomerase IB enzyme (LdTopIB). The inhibition of LdTopIB (EC50 = 53 µM) by the acid (±)-2-methoxy-6-icosynoic acid (>12) was studied as well. The potency of LdTopIB inhibition followed the trend >2 > >1 > >12, indicating that the effectiveness of inhibition depends on the degree of unsaturation. All of the studied α-methoxylated fatty acids failed to inhibit the human topoisomerase IB enzyme (hTopIB) at 100 µM. However, the α-methoxylated fatty acids were capable of inhibiting an active but truncated LdTopIB with which camptothecin (CPT) cannot interact suggesting that the methoxylated fatty acids inhibit LdTopIB with a mechanism different from that of CPT. The diunsaturated fatty acids displayed low cytotoxicity towards Leishmania infantum promastigotes (EC50 values between 260 and 240 µM), but >12 displayed a better cytotoxicity towards Leishmania donovani promastigotes (EC50 = 100 µM) and a better therapeutic index.
机译:海绵可以生物合成具有异常生物物理和生物学特性的α-甲氧基化脂肪酸,在某些情况下,它们还具有增强的抗癌活性。但是,对α-甲氧基化脂肪酸的抗原生动物性质的研究较少。在这项工作中,我们描述了(5Z,9Z)-(±)-2-甲氧基-5,9-二十二碳二烯酸(> 1 )及其炔属类似物(±)-2-的总合成甲氧基-5,9-二十二碳二烯酸(> 2 ),并报告说它们抑制了Leishmania donovani DNA拓扑异构酶IB酶(LdTopIB)(EC50值在31至22 µM之间)。还研究了酸(±)-2-甲氧基-6-二十二碳五烯酸(> 12 )对LdTopIB(EC50 = 53 µM)的抑制作用。 LdTopIB抑制的效力遵循趋势> 2 1 12 ,表明抑制的有效性取决于不饱和度。所有研究的α-甲氧基化脂肪酸均未能在100 µM抑制人拓扑异构酶IB酶(hTopIB)。然而,α-甲氧基化脂肪酸能够抑制喜树碱(CPT)不能与之相互作用的活性但被截短的LdTopIB,这表明甲氧基化脂肪酸以不同于CPT的机制抑制LdTopIB。双不饱和脂肪酸对婴儿利什曼原虫前鞭毛体的细胞毒性较低(EC50值在260至240 µM之间),但> 12 对利什曼原虫多鞭毛体前体鞭毛虫具有更好的细胞毒性(EC50 = 100 µM)和更好的治疗指数。

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