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Histone deacetylases: target enzymes for cancer therapy

机译:组蛋白脱乙酰基酶:癌症治疗的靶标酶

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Epigenic regulation of gene transcription has recently been the subject of a fast growing interest particularly in the field of cancer. Enzymatic acetylation and deacetylation of the epsilon-amino groups of lysine residues from nucleosomal histones, represents major molecular epigenic mechanisms controlling gene expression. Histone deacetylases (HDACs) and histone acetyl transferases (HAT) represent the two families of enzymes in charge of the control of the level of acetylation of the histone tails. By removing the acetyl groups that abrogate the positive charge of the lysine residues that maintain the histone tails attached to DNA, HDACs repress transcription. In mammals, these latter enzymes form three groups of related enzymes based on their sequence homology and are classified as HDACs I, II and III. Global inhibition of the HDACs I and II groups results in cell growth arrest and apoptosis of cancer cells and alters tumor growth in in vivo experimental models. Their surprisingly low general toxicity and their impressive efficiency in preclinical cancer models has led to consider HDAC inhibitors as very promising new anticancer pharmacological agents. In this review, we attempt to give a comprehensive overview of the role and the involvement of HDAC in carcinogenesis as well as the current progress on the development of HDAC general and specific inhibitors as new cancer therapies.
机译:最近,基因转录的表观遗传调控成为引起人们快速关注的主题,特别是在癌症领域。来自核小体组蛋白的赖氨酸残基的ε-氨基的酶促乙酰化和去乙酰化代表了控制基因表达的主要分子表观遗传机制。组蛋白脱乙酰基酶(HDAC)和组蛋白乙酰基转移酶(HAT)代表负责控制组蛋白尾巴乙酰化水平的两个酶家族。通过除去消除赖氨酸残基的正电荷的乙酰基,赖氨酸残基保持与DNA连接的组蛋白尾巴,HDAC抑制了转录。在哺乳动物中,这些酶根据其序列同源性形成三组相关酶,并被分类为HDAC I,II和III。在体内实验模型中,HDAC I和II组的整体抑制导致细胞生长停滞和癌细胞凋亡,并改变肿瘤生长。它们令人惊讶的低总体毒性以及在临床前癌症模型中令人印象深刻的效率,导致人们将HDAC抑制剂视为非常有前途的新型抗癌药理剂。在这篇综述中,我们试图全面概述HDAC在致癌作用中的作用和参与,以及HDAC通用和特异性抑制剂作为新的癌症治疗方法的发展方面的最新进展。

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