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Rad21 Haploinsufficiency Prevents ALT-Associated Phenotypes in Zebrafish Brain Tumors

机译:Rad21睡眠化可防止斑马鱼脑肿瘤中的ALT相关表型

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摘要

Cohesin is a protein complex consisting of four core subunits responsible for sister chromatid cohesion in mitosis and meiosis, and for 3D genome organization and gene expression through the establishment of long distance interactions regulating transcriptional activity in the interphase. Both roles are important for telomere integrity, but the role of cohesin in telomere maintenance mechanisms in highly replicating cancer cells in vivo is poorly studied. Here we used a zebrafish model of brain tumor, which uses alternative lengthening of telomeres (ALT) as primary telomere maintenance mechanism to test whether haploinsufficiency for Rad21, a member of the cohesin ring, affects ALT development. We found that a reduction in Rad21 levels prevents ALT-associated phenotypes in zebrafish brain tumors and triggers an increase in tert expression. Despite the rescue of ALT phenotypes, tumor cells in rad21+/− fish exhibit an increase in DNA damage foci, probably due to a reduction in double-strand breaks repair efficiency.
机译:Cohesin是一种蛋白质复合体,由四种核心亚基组成,该核心亚单位负责有丝分裂和减数分裂的姐妹染色体内聚力,以及通过建立长距离相互作用来调节相互作用的转录活动的长距离相互作用。这两个角色对于端粒完整性都很重要,但幼耳中的角色在体内高度复制癌细胞中的端粒维持机制中的作用很差。在这里,我们使用了脑肿瘤的斑马鱼模型,它使用端粒体(ALT)作为初级端粒体维持机制来测试Rad21,Cohonsin环的成员是否影响ALT开发的替代延长。我们发现RAD21水平的降低可防止斑马鱼脑肿瘤中的ALT相关表型,并触发TERT表达的增加。尽管Alt表型拯救,但Rad21 +/-鱼中的肿瘤细胞表现出DNA损伤灶的增加,可能是由于双链减少的修复效率。

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