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TALEN介导的GM2/GD2合酶基因靶向编辑通过降低小鼠肿瘤细胞的失巢凋亡抗性来调节锚定非依赖性生长。

TALEN mediated targeted editing of GM2/GD2-synthase gene modulates anchorage independent growth by reducing anoikis resistance in mouse tumor cells.

作者信息

Mahata Barun, Banerjee Avisek, Kundu Manjari, Bandyopadhyay Uday, Biswas Kaushik

机构信息

Division of Molecular Medicine, Bose Institute, Kolkata, India.

Department of Infectious Diseases and Immunology, CSIR-Indian Institute of Chemical Biology, Kolkata, India.

出版信息

Sci Rep. 2015 Mar 12;5:9048. doi: 10.1038/srep09048.

Abstract

Complex ganglioside expression is highly deregulated in several tumors which is further dependent on specific ganglioside synthase genes. Here, we designed and constructed a pair of highly specific transcription-activator like effector endonuclease (TALENs) to disrupt a particular genomic locus of mouse GM2-synthase, a region conserved in coding sequence of all four transcript variants of mouse GM2-synthase. Our designed TALENs effectively work in different mouse cell lines and TALEN induced mutation rate is over 45%. Clonal selection strategy is undertaken to generate stable GM2-synthase knockout cell line. We have also demonstrated non-homologous end joining (NHEJ) mediated integration of neomycin cassette into the TALEN targeted GM2-synthase locus. Functionally, clonally selected GM2-synthase knockout clones show reduced anchorage-independent growth (AIG), reduction in tumor growth and higher cellular adhesion as compared to wild type Renca-v cells. Insight into the mechanism shows that, reduced AIG is due to loss in anoikis resistance, as both knockout clones show increased sensitivity to detachment induced apoptosis. Therefore, TALEN mediated precise genome editing at GM2-synthase locus not only helps us in understanding the function of GM2-synthase gene and complex gangliosides in tumorigenicity but also holds tremendous potential to use TALENs in translational cancer research and therapeutics.

摘要

复杂神经节苷脂的表达在几种肿瘤中高度失调,这进一步依赖于特定的神经节苷脂合酶基因。在此,我们设计并构建了一对高度特异性的转录激活样效应核酸酶(TALENs),以破坏小鼠GM2合酶的一个特定基因组位点,该区域在小鼠GM2合酶所有四种转录变体的编码序列中保守。我们设计的TALENs在不同的小鼠细胞系中有效发挥作用,且TALEN诱导的突变率超过45%。采用克隆选择策略来生成稳定的GM2合酶敲除细胞系。我们还证明了非同源末端连接(NHEJ)介导的新霉素盒整合到TALEN靶向的GM2合酶位点。在功能上,与野生型Renca-v细胞相比,经克隆选择的GM2合酶敲除克隆显示出非锚定依赖性生长(AIG)降低、肿瘤生长减少以及细胞粘附性增强。对机制的深入研究表明,AIG降低是由于失巢凋亡抗性丧失,因为两个敲除克隆对脱离诱导的凋亡均表现出更高的敏感性。因此,TALEN介导的GM2合酶位点精确基因组编辑不仅有助于我们理解GM2合酶基因和复杂神经节苷脂在肿瘤发生中的功能,而且在转化癌症研究和治疗中使用TALENs具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5687/4357006/ef8678583f9d/srep09048-f1.jpg

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