Alsowaida Dalal, Larsen Brian D, Hachmer Sarah, Azimi Mehri, Arezza Eric, Brunette Steve, Tur Steven, Palii Carmen G, Albraidy Bassam, Sorensen Claus S, Brand Marjorie, Dilworth F Jeffrey, Megeney Lynn A
The Sprott Centre for Stem Cell Research, Regenerative Medicine Program, Ottawa Hospital Research Institute, Ottawa Hospital, Smyth Road, Ottawa, ON., K1H 8L6.
The Department of Cellular & Molecular Medicine, University of Ottawa, Ottawa, ON.
bioRxiv. 2024 Dec 20:2024.09.24.614809. doi: 10.1101/2024.09.24.614809.
Caspase activated DNase (CAD) induced DNA breaks promote cell differentiation and therapy-induced cancer cell resistance. CAD targeting activity is assumed to be unique to each condition, as differentiation and cancer genesis are divergent cell fates. Here, we made the surprising discovery that a subset of CAD-bound targets in differentiating muscle cells are the same genes involved in the genesis of cancer-causing translocations. In muscle cells, a prominent CAD-bound gene pair is and , the mismatched reciprocal loci that give rise to alveolar rhabdomyosarcoma. We show that CAD-targeted breaks in the gene are physiologic to reduce expression, a prerequisite for muscle cell differentiation. A cohort of these CAD gene targets are also conserved in early differentiating T cells and include genes that spur leukemia/lymphoma translocations. Our results suggest the CAD targeting of translocation prone oncogenic genes is non-pathologic biology and aligns with initiation of cell fate transitions.
半胱天冬酶激活的脱氧核糖核酸酶(CAD)诱导的DNA断裂促进细胞分化和治疗诱导的癌细胞耐药性。由于分化和癌症发生是不同的细胞命运,因此CAD靶向活性被认为在每种情况下都是独特的。在这里,我们有一个惊人的发现,即分化的肌肉细胞中与CAD结合的靶标子集与导致致癌易位发生的基因相同。在肌肉细胞中,一对突出的与CAD结合的基因是 和 ,它们是导致肺泡横纹肌肉瘤的错配互易位点。我们表明,基因中的CAD靶向断裂是生理性的,可降低 表达,这是肌肉细胞分化的先决条件。这些CAD基因靶标中的一组在早期分化的T细胞中也保守,并且包括刺激白血病/淋巴瘤易位的基因。我们的结果表明,CAD对易发生易位的致癌基因的靶向作用是非病理性生物学,并且与细胞命运转变的起始一致。