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APOBEC3B, a molecular driver of mutagenesis in human cancers

机译:APOBEC3B,人类癌症诱变的分子驱动器

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Human cancers results in large part from the accumulation of multiple mutations. The progression of premalignant cells is an evolutionary process in which mutations provide the fundamental driving force for genetic diversity. The increased mutation rate in premalignant cells allows selection for increased proliferation and survival and ultimately leads to invasion, metastasis, recurrence, and therapeutic resistance. Therefore, it is important to understand the molecular determinants of the mutational processes. Recent genome-wide sequencing data showed that apolipoprotein B mRNA editing catalytic polypeptide-like 3B (APOBEC3B) is a key molecular driver inducing mutations in multiple human cancers. APOBEC3B, a DNA cytosine deaminase, is overexpressed in a wide spectrum of human cancers. Its overexpression and aberrant activation lead to unexpected clusters of mutations in the majority of cancers. This phenomenon of clustered mutations, termed kataegis (from the Greek word for showers), forms unique mutation signatures. In this review, we will discuss the biological function of APOBEC3B, its tumorigenic role in promoting mutational processes in cancer development and the clinical potential to develop novel therapeutics by targeting APOBEC3B.
机译:人类癌症的很大一部分原因是多种突变的积累。恶变前细胞的发展是一个进化过程,其中突变为遗传多样性提供了基本的驱动力。恶变前细胞中增加的突变率允许选择增加的增殖和存活,并最终导致侵袭,转移,复发和治疗抗性。因此,重要的是要了解突变过程的分子决定因素。最近的全基因组测序数据显示,载脂蛋白B mRNA编辑催化性多肽样3B(APOBEC3B)是导致多种人类癌症中突变的关键分子驱动因素。 DNA胞嘧啶脱氨酶APOBEC3B在多种人类癌症中均过表达。它的过表达和异常激活导致大多数癌症中意外的突变簇。簇状突变的这种现象称为kataegis(源自希腊语为淋浴),形成了独特的突变特征。在这篇综述中,我们将讨论APOBEC3B的生物学功能,其在促进癌症发展中的突变过程中的致癌作用以及通过靶向APOBEC3B开发新型疗法的临床潜力。

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