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首页> 外文期刊>Journal of receptor and signal transduction research >A systems biology approach for elucidating the interaction of curcumin with Fanconi anemia FANC G protein and the key disease targets of leukemia
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A systems biology approach for elucidating the interaction of curcumin with Fanconi anemia FANC G protein and the key disease targets of leukemia

机译:一种系统生物学方法,用于阐明姜黄素与白血病贫血蛋白的相互作用及白血病关键疾病靶标

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Fanconi anemia (FA) is an autosomal recessive disorder with a high risk of malignancies including acute myeloid leukemia and squamous cell carcinoma. There is a constant search out of new potential therapeutic molecule to combat this disorder. In most cases, patients with FA develop haematological malignancies with acute myeloid leukemia and acute lymphoblastic leukemia. Identifying drugs which can efficiently block the pathways of both these disorders can be an ideal and novel strategy to treat FA. The curcumin, a natural compound obtained from turmeric is an interesting therapeutic molecule as it has been reported in the literature to combat both FA as well as leukemia. However, its complete mechanism is not elucidated. Herein, a systems biology approach for elucidating the therapeutic potential of curcumin against FA and leukemia is investigated by analyzing the computational molecular interactions of curcumin ligand with FANC G of FA and seven other key disease targets of leukemia. The proteins namely DOT1L, farnesyl transferase (FDPS), histone decetylase (EP3000), Polo-like kinase (PLK-2), aurora-like kinase (AUKRB), tyrosine kinase (ABL1), and retinoic acid receptor alpha (RARA) were chosen as disease targets for leukemia and modeled structure of FANC G protein as the disease target for FA. The docking investigations showed that curcumin had a very high binding affinity of -8.1kcal/mol with FANC G protein. The key disease targets of leukemia namely tyrosine kinase (ABL1), aurora-like kinase (AUKRB), and polo-like kinase (PLK-2) showed that they had the comparable binding affinities of -9.7 k cal/mol, -8.7 k cal/mol, and -8.6 k cal/mol, respectively with curcumin. Further, the percentage similarity scores obtained from PAM50 using EMBOSS MATCHER was shown to provide a clue to understand the structural relationships to an extent and to predict the binding affinity. This investigation shows that curcumin effectively interacts with the disease targets of both FA a
机译:范科尼贫血(Fanconi贫血,FA)是一种常染色体隐性遗传疾病,具有患急性髓系白血病和鳞状细胞癌等恶性肿瘤的高风险。人们不断寻找新的潜在治疗分子来对抗这种疾病。在大多数情况下,FA患者会发展为血液系统恶性肿瘤,包括急性髓系白血病和急性淋巴细胞白血病。确定能有效阻断这两种疾病途径的药物是治疗FA的一种理想且新颖的策略。姜黄素是一种从姜黄中提取的天然化合物,是一种有趣的治疗分子,文献中已经报道过它可以同时对抗FA和白血病。然而,其完整机制尚未阐明。在此,通过分析姜黄素配体与FA的FANC G和白血病的七个关键疾病靶点的计算分子相互作用,研究了姜黄素对FA和白血病的治疗潜力的系统生物学方法。选择DOT1L、法尼基转移酶(FDPS)、组蛋白去乙酰化酶(EP3000)、Polo样激酶(PLK-2)、极光样激酶(AUKRB)、酪氨酸激酶(ABL1)和视黄酸受体α(RARA)作为白血病的疾病靶点,并模拟FANC G蛋白的结构作为FA的疾病靶点。对接研究表明,姜黄素与FANC G蛋白的结合亲和力非常高,为-8.1kcal/mol。白血病的关键疾病靶点,即酪氨酸激酶(ABL1)、极光样激酶(AUKRB)和波罗样激酶(PLK-2),表明它们与姜黄素的结合亲和力分别为-9.7 kCal/mol、-8.7 kCal/mol和-8.6 kCal/mol。此外,使用浮雕匹配器从PAM50获得的相似性百分比分数为在一定程度上理解结构关系和预测结合亲和力提供了线索。这项研究表明姜黄素有效地与两种FA a的疾病靶点相互作用

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