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Plumbagin-Serum Albumin Interaction: Spectral, Electrochemical, Structure-Binding Analysis, Antiproliferative and Cell Signaling Aspects with Implications for Anticancer Therapy

机译:肠果 - 血清白蛋白相互作用:光谱,电化学,结构结合分析,抗增殖和细胞信号传导方面,具有抗癌治疗的影响

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摘要

Plumbagin (5-hydroxy-2-methyl-1,4-naphthoquinone) is a small molecule with potent anticancer activity. Like other 1,4-naphthoquinones, it exhibits electrophilic reactivity towards biological nucleophiles. We demonstrate that plumbagin and structurally related 1,4-naphthoquinones with at least one unsubstituted quinoid carbon (C2 or C3) bind to albumin, an ubiquitously present nucleophile, with minimum recovery of free drug. Extraction recovery of plumbagin from albumin in solution showed one-phase exponential decline with a half-live of 9.3 min at 10 μmol/L. In the presence of albumin, plumbagin exhibited instant changes in UV/Vis absorption bands. Electro-chemical analysis using cyclic voltammetry showed a decrease in redox peak currents over time until electro-inactivity, thus suggesting the formation of a supramolecular adduct inacces-sible for electron transfer. The adduct inhibited cell growth and caused cell-cycle arrest of prostate cancer cells, in part by decreasing levels of the cell-cycle regulator RBBP. The conjugate displayed similar cellular effects to those described for plumbagin, such as decreased levels of androgen receptor and protein kinase C epsilon. The effect of plumbagin-albumin on cancer cells was species-specific, suggesting a receptor-medi-ated mechanism. Furthermore, it was blocked by cathepsin inhibitor pepstatin A, indicating that lysosomal degradation is involved in the processing of plumbagin-albumin adduct. The spontaneously formed adduct of plumbagin with serum albumin is likely to mediate the biological activities of plumbagin in vivo and to fundamentally influence its pharma-codynamics.
机译:肠果素(5-羟基-2-甲基-1,4-萘醌)是一种具有强效抗癌活性的小分子。与其他1,4-萘醌一样,它表现出对生物亲核试剂的亲电反应性。我们证明肠果和结构相关的1,4-萘醌,其具有至少一个未取代的奎因碳(C2或C3)与白蛋白结合,普遍存在的亲核试剂,最小恢复游离药物。溶液中白蛋白的脂蛋素的提取恢复显示单相指数下降,以10μmol/升半活跃于9.3分钟。在白蛋白存在下,肠果在UV / Vis吸收带中表现出瞬间变化。使用循环伏安法的电化学分析显示氧化还原峰值随着时间的推移降低,直到电不活性,因此表明在电子转移中形成了超分子加合物的不可行。通过降低细胞周期调节器RBBP的水平,加合物抑制细胞生长并导致前列腺癌细胞的细胞周期停滞。将缀合物显示出类似的蜂窝效果对肠球素所述的那些,例如降低雄激素受体和蛋白激酶C epsilon水平。肠果白蛋白对癌细胞的影响是特异性的,表明受体 - 中药机制。此外,它被组织蛋白酶抑制剂胃蛋白酶A阻断,表明溶酶体降解参与了脂蛋素 - 白蛋白加合物的加工。用血清白蛋白自发形成的朱敏素的加合物可能介导体内肠果的生物活性,并从根本上影响其药物动力学。

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  • 来源
    《ChemMedChem》 |2020年第14期|共10页
  • 作者单位

    Proteogenomics Research Institute for Systems Medicine (PRISM) 505 Coast Blvd. South La Jolla CA 92037 (USA);

    Vaccine Research Institute of San Diego (VRISD) 3030 Bunker Hill Street San Diego CA 92109 (USA);

    Vaccine Research Institute of San Diego (VRISD) 3030 Bunker Hill Street San Diego CA 92109 (USA);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药学;
  • 关键词

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