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The relationship between the molecular structure of natural acetogenins and their inhibitory activities which affect DNA polymerase DNA topoisomerase and human cancer cell growth

机译:天然产乙酸原素的分子结构与其抑制活性之间的关系影响DNA聚合酶DNA拓扑异构酶和人类癌细胞的生长

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摘要

Acetogenins from the Annonaceous plant are a fatty acid-derived natural product. Chemically synthesized natural acetogenins, such as mucocin (compound 1), jimenezin (compound 2), muconin (compound 4), pyranicin (compound 5) and pyragonicin (compound 6) were investigated. Concomitantly, 19-epi jimenezin (compound 3), 10-epi pyragonicin (compound 7) and a γ-lactone (compound 8), which is estimated to be a biosynthetic precursor of acetogenins, were synthesized and investigated. Compounds 5 and 6 strongly inhibited, and compound 7 moderately inhibited the activities of mammalian DNA polymerases (pols), such as replicative pol α and repair/recombination-related pol β and λ, and also inhibited human DNA topoisomerase (topos) I and II activities. On the other hand, compounds 1–4 and 8 did not influence the activities of any pols and topos. Compound 5 was the strongest inhibitor of the pols and topos tested, and the IC50 values were 5.0–9.6 μM, respectively. These compounds also suppressed human cancer cell growth with almost the same tendency as the inhibition of pols and topos. Compound 5 was the strongest suppressor of the proliferation of the promyelocytic leukemia cell line, HL-60, in human cancer cell lines tested with an LD50 value of 9.4 μM, and arrested the cells at G1 phases, indicating that it blocks DNA replication by inhibiting the activity of pols rather than topos. This compound also induced cell apoptosis. The relationship between the three-dimensional molecular structure of acetogenins and these inhibitory activities is discussed. The results suggested that compound 5 is a lead compound of potentially useful cancer chemotherapy agents.
机译:番荔枝科植物中的产醋素是一种脂肪酸衍生的天然产物。研究了化学合成的天然产乙酸原素,例如粘菌素(化合物1),jimenezin(化合物2),muconin(化合物4),吡喃霉素(化合物5)和吡喃霉素(化合物6)。伴随地,合成并研究了19-表观烯丙嗪(化合物3),10-表吡喃霉素(化合物7)和γ-内酯(化合物8),其被认为是产乙酸原素的生物合成前体。化合物5和6强烈抑制,化合物7中等抑制哺乳动物DNA聚合酶(pols)的活性,例如复制polα和与修复/重组相关的polβ和λ,还抑制人DNA拓扑异构酶(topos)I和II活动。另一方面,化合物1-4和8不会影响任何pols和topos的活性。化合物5是测试的pols和topos的最强抑制剂,IC50值分别为5.0–9.6μM。这些化合物还抑制人类癌细胞的生长,其趋势与抑制pols和topos几乎相同。在经LD50值为9.4μM测试的人类癌细胞系中,化合物5是早幼粒细胞白血病细胞系HL-60增殖的最强抑制剂,并将其阻滞在G1期,表明它通过抑制DNA的复制而阻止DNA复制。 pols而不是topos的活动。该化合物还诱导细胞凋亡。讨论了产乙酸原素的三维分子结构与这些抑制活性之间的关系。结果表明,化合物5是潜在有用的癌症化学治疗剂的前导化合物。

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