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Elucidating respective functions of two domains BIR and C-helix of human IAP survivin for precise targeted regulating mitotic cycle apoptosis and autophagy of cancer cells

机译:阐明人IAP survivin的两个结构域BIR和C-螺旋各自对靶向性调控癌细胞的有丝分裂周期凋亡和自噬的功能

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摘要

Survivin was the smallest member of the IAP family, which was over expressed in many different cancers, and considered to be a promising hot target for cancer therapy, and our previous study demonstrated that multiple dominant negative mutants from full-length survivin could have many complex effects on cancer cells, such as cell cycle, apoptosis, and autophagy. But it was not yet known what role the two main domains played in those functions, which would be very important for the design of targeted anticancer drugs and for the interpretation of their molecular mechanisms. In this study, based on preparation the two parts (BIR domain and CC domain) of survivin by genetic engineering and cell characterization assay, we discovered that BIR (T34A)-domain peptide could inhibit Bcap-37 cells growth in a dose- and time-dependent manner, increase the proportion of G2/M phase, and induce caspase-dependent apoptosis via the mitochondrial pathway. While CC (T117A)-domain peptide increased the proportion of S-phase cells and increased the level of the autophagy marker protein LC3B significantly. These further experiments confirmed that TAT-BIR (T34A) peptide could be used to inhibit cell proliferation, promote apoptosis, and block mitosis, and TAT-CC (T117A) peptide showed mainly to promote autophagy, process of DNA replication, and mitosis to breast cancer cells. This research will lay the foundation for interpreting the multifunction mechanism of survivin in cell fates, further make senses in developing the anticancer drugs targeting it precisely and efficiently.
机译:Survivin是IAP家族中最小的成员,在许多不同的癌症中都过度表达,被认为是有希望的癌症治疗靶标,而我们先前的研究表明,全长survivin的多个显性负突变体可能具有许多复杂的对癌细胞的影响,例如细胞周期,凋亡和自噬。但是尚不清楚两个主要结构域在这些功能中起什么作用,这对于靶向抗癌药的设计及其分子机制的解释将非常重要。在这项研究中,基于通过基因工程和细胞表征分析制备survivin的两个部分(BIR结构域和CC结构域),我们发现BIR(T34A)结构域肽可以在一定剂量和时间内抑制Bcap-37细胞的生长依赖方式,增加G2 / M期比例,并通过线粒体途径诱导caspase依赖凋亡。而CC(T117A)域肽增加了S期细胞的比例,并显着增加了自噬标记蛋白LC3B的水平。这些进一步的实验证实,TAT-BIR(T34A)肽可用于抑制细胞增殖,促进细胞凋亡和阻断有丝分裂,而TAT-CC(T117A)肽则主要促进自噬,DNA复制和乳腺有丝分裂。癌细胞。该研究将为解释survivin在细胞命运中的多功能机制奠定基础,进一步为开发精确有效靶向它的抗癌药物提供参考。

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