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Computational Design and Experimental Discovery of an Antiestrogenic Peptide Derived from α-Fetoprotein

机译:α-甲胎蛋白衍生的抗雌激素肽的计算设计和实验发现

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Breast cancer is the most common cancer among women, and tamoxifen is the preferred drug for estrogen receptor-positive breast cancer treatment. Many of these cancers are intrinsically resistant to tamoxifen or acquire resistance during treatment. Consequently, there is an ongoing need for breast cancer drugs that have different molecular targets. Previous work has shown that 8-mer and cyclic 9-mer peptides inhibit breast cancer in mouse and rat models, interacting with an unsolved receptor, while peptides smaller than eight amino acids did not. We show that the use of replica exchange molecular dynamics predicts the structure and dynamics of active peptides, leading to the discovery of smaller peptides with full biological activity. Simulations identified smaller peptide analogues with the same conserved reverse turn demonstrated in the larger peptides. These analogues were synthesized and shown to inhibit estrogen-dependent cell growth in a mouse uterine growth assay, a test showing reliable correlation with human breast cancer inhibition.
机译:乳腺癌是女性中最常见的癌症,他莫昔芬是治疗雌激素受体阳性乳腺癌的首选药物。这些癌症中有许多本质上对他莫昔芬有抗药性,或在治疗期间获得抗药性。因此,持续需要具有不同分子靶标的乳腺癌药物。先前的研究表明,8-mer和环状9-mer肽可在小鼠和大鼠模型中抑制乳腺癌,并与未溶解的受体相互作用,而小于8个氨基酸的肽则不能。我们表明使用副本交换分子动力学预测活性肽的结构和动力学,从而导致发现具有完整生物活性的较小肽。模拟确定了较大肽段中展示的具有相同保守反向序列的较小肽类似物。这些类似物已合成,并在小鼠子宫生长试验中显示出抑制雌激素依赖性细胞生长的作用,该试验显示出与人乳腺癌抑制作用的可靠关联。

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