基因组不稳定性
生物
癌变
遗传学
生殖系
基因
癌症研究
DNA修复
体细胞
癌症的体细胞进化
疾病
基因组DNA
染色体不稳定性
医学
计算生物学
DNA损伤
DNA
染色体
病理
作者
David A. Alagpulinsa,Raphaël Szalat,Mark C. Poznansky,Robert J. Shmookler Reis
标识
DOI:10.1016/j.trecan.2020.05.006
摘要
Genomic instability (GIN), an increased tendency to acquire genomic alterations, is a cancer hallmark. However, its frequency, underlying causes, and disease relevance vary across different cancers. Multiple myeloma (MM), a plasma cell malignancy, evolves through premalignant phases characterized by genomic abnormalities. Next-generation sequencing (NGS) methods are deconstructing the genomic landscape of MM across the continuum of its development, inextricably linking malignant transformation and disease progression with increasing acquisition of genomic alterations, and illuminating the mechanisms that generate these alterations. Although GIN drives disease evolution, it also creates vulnerabilities such as dependencies on 'superfluous' repair mechanisms and the induction of tumor-specific antigens that can be targeted. We review the mechanisms of GIN in MM, the associated vulnerabilities, and therapeutic targeting strategies.
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