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首页> 外文期刊>Journal of the American Chemical Society >Total Synthesis And Evaluation Of Iso-duocarmycin Sa Andiso-yatakemycin
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Total Synthesis And Evaluation Of Iso-duocarmycin Sa Andiso-yatakemycin

机译:异多卡霉素Sa和异雅特霉素的全合成及评价

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The total synthesis and evaluation of isoduocarmycin SA (5) and iso-yatakemycin (6), representing key analogues of the corresponding natural products incorporating an isomeric alkylation subunit, are detailed. This pyrrole isomer of the natural alkylation subunit displayed an enhanced reaction regioselectivity and a 2-fold diminished stability. Although still exceptionally potent, the isoduocarmycin SA derivatives and natural product analogues exhibited a corresponding approximate 3-5-fold reduction in cytotoxic activity [L1210 IC_(50) for (+)-iso-duocarmycin SA = 50 pM and for (+)-iso-yatakemycin = 15 pM] consistent with their placement on a parabolic relationship correlating activity with reactivity. The DNA alkylation selectivity of the resulting key natural product analogues was unaltered by the structure modification in spite of the minor-groove presentation of a potential H-bond donor. Additionally, a unique ortho-spirocyclization with such derivatives was explored via the preparation, characterization, and evaluation of 34 that is incapable of the more conventional para-spirocyclization. Although 34 proved sufficiently stable for isolation and characterization, it displayed little stability in protic solvents (t_(1/2) = 0.19 h at pH 3, t_(1/2) = 0.20 h at pH 7), a pH-independent (H~+ independent) solvolysis rate profile at pH 3/4-7, and a much reduced cytotoxic potency, but a DNA alkylation selectivity and efficiency comparable to those of duocarmycin SA and iso-duocarmycin SA. The implications of these observations on the source of the DNA alkylation selectivity and catalysis for this class of natural products are discussed.
机译:详细介绍了异多卡霉素SA(5)和异雅特霉素(6)的总合成和评估,它们是并入异构烷基化亚基的相应天然产物的关键类似物。天然烷基化亚基的吡咯异构体显示出更高的反应区域选择性和2倍的稳定性降低。尽管仍然非常有效,但异碘卡霉素SA衍生物和天然产物类似物的细胞毒活性降低了约3-5倍[L1210 IC_(50)对于(+)-异-多卡霉素SA = 50 pM和(+)- iso-yatakemycin = 15 pM]与其在活性和反应性相关的抛物线关系上的位置一致。尽管潜在的氢键供体存在小沟,但所得的关键天然产物类似物的DNA烷基化选择性并未因结构修饰而改变。此外,通过34的制备,表征和评估,探索了使用此类衍生物进行的独特的邻螺环化,这是常规的对螺环化无法实现的。尽管34证明足以用于分离和表征,但它在质子溶剂中几乎没有稳定性(在pH 3时t_(1/2)= 0.19 h,在pH 7时t_(1/2)= 0.20 h),pH无关(在pH 3 / 4-7时H +无关)溶剂分解速率分布图,细胞毒性潜能大大降低,但DNA烷基化的选择性和效率可与duocarmycin SA和iso-duocarmycin SA媲美。讨论了这些观察结果对这类天然产物的DNA烷基化选择性和催化来源的影响。

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