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首页> 外文期刊>Journal of Medicinal Chemistry >Characterization of Conformationally Constrained Benzanilide Scaffolds for Potent and Selective HDAC8 Targeting
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Characterization of Conformationally Constrained Benzanilide Scaffolds for Potent and Selective HDAC8 Targeting

机译:苯并偶偶联支架的表征为有效和选择性HDAC8靶向

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摘要

Histone deacetylases (HDACs) are an attractive therapeutic target for a variety of human diseases. Currently, all four FDA-approved HDAC-targeting drugs are nonselective, pan-HDAC inhibitors, exhibiting adverse side effects at therapeutic doses. Although selective HDAC inhibition has been proposed to mitigate toxicity, the targeted catalytic domains are highly conserved. Herein, we describe a series of rationally designed, conformationally constrained, benzanilide foldamers which selectively bind the catalytic tunnel of HDAC8. The series includes benzanilides, MMH371, MMH409, and MMH410, which exhibit potent in vitro HDAC8 activity (IC50 = 66, 23, and 66 nM, respectively) and up to 410-fold selectivity for HDAC8 over the next targeted HDAC. Experimental and computational analyses of the benzanilide structure docked with human HDAC8 enzyme showed the adoption of a low-energy L-shaped conformer that favors HDAC8 selectivity. The conformationally constrained HDAC8 inhibitors present an alternative biological probe for further determining the clinical utility and safety of pharmacological knockdown of HDAC8 in diseased cells.
机译:组蛋白脱乙酰酶(HDACs)是各种人类疾病的有吸引力的治疗靶标。目前,所有四种FDA批准的HDAC靶向药物都是非选择性的泛HDAC抑制剂,在治疗剂量下表现出不良副作用。虽然已经提出了选择性HDAC抑制来减轻毒性,但是靶向催化结构域是高度保守的。在此,我们描述了一系列合理设计的,构象约束的苯并偶胺糊涂虫,其选择性地结合HDAC8的催化隧道。该系列包括苯并烷,MMH371,MMH409和MMH410,其在下一个靶向HDAC上表现出有效的体外HDAC8活性(IC50 = 66,23和66nm)和高达410倍的HDAC8的选择性。与人HDAC8酶停靠的苯硅结构结构的实验和计算分析表明采用了较低的低能量L形符合特性,其利用HDAC8选择性。构象约束的HDAC8抑制剂具有替代的生物探针,用于进一步确定HDAC8在患病细胞中药理学敲低的临床效用和安全性。

著录项

  • 来源
    《Journal of Medicinal Chemistry 》 |2020年第15期| 共15页
  • 作者单位

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

    German Canc Res Ctr Clin Cooperat Unit Pediat Oncol G340 D-69120 Heidelberg Germany;

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

    Univ Toronto Mississauga Dept Chem &

    Phys Sci Mississauga ON L5L 1C6 Canada;

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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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