Mensah Isaiah K, Norvil Allison B, AlAbdi Lama, McGovern Sarah, Petell Christopher J, He Ming, Gowher Humaira
Department of Biochemistry, Purdue University, West Lafayette, IN 47907, USA.
Eli Lilly & Co, IN, USA.
NAR Cancer. 2021 Dec 1;3(4):zcab045. doi: 10.1093/narcan/zcab045. eCollection 2021 Dec.
In mammals, DNA methyltransferases DNMT1 and DNMT3's (A, B and L) deposit and maintain DNA methylation in dividing and nondividing cells. Although these enzymes have an unremarkable DNA sequence specificity (CpG), their regional specificity is regulated by interactions with various protein factors, chromatin modifiers, and post-translational modifications of histones. Changes in the DNMT expression or interacting partners affect DNA methylation patterns. Consequently, the acquired gene expression may increase the proliferative potential of cells, often concomitant with loss of cell identity as found in cancer. Aberrant DNA methylation, including hypermethylation and hypomethylation at various genomic regions, therefore, is a hallmark of most cancers. Additionally, somatic mutations in DNMTs that affect catalytic activity were mapped in Acute Myeloid Leukemia cancer cells. Despite being very effective in some cancers, the clinically approved DNMT inhibitors lack specificity, which could result in a wide range of deleterious effects. Elucidating distinct molecular mechanisms of DNMTs will facilitate the discovery of alternative cancer therapeutic targets. This review is focused on: (i) the structure and characteristics of DNMTs, (ii) the prevalence of mutations and abnormal expression of DNMTs in cancer, (iii) factors that mediate their abnormal expression and (iv) the effect of anomalous DNMT-complexes in cancer.
在哺乳动物中,DNA甲基转移酶DNMT1和DNMT3(A、B和L)在分裂细胞和非分裂细胞中沉积并维持DNA甲基化。尽管这些酶的DNA序列特异性(CpG)并不显著,但其区域特异性受与各种蛋白质因子、染色质修饰因子的相互作用以及组蛋白翻译后修饰的调控。DNMT表达或相互作用伙伴的变化会影响DNA甲基化模式。因此,获得性基因表达可能会增加细胞的增殖潜能,通常伴随着细胞特性的丧失,这在癌症中很常见。因此,异常的DNA甲基化,包括基因组不同区域的高甲基化和低甲基化,是大多数癌症的一个标志。此外,在急性髓系白血病癌细胞中发现了影响催化活性的DNMT体细胞突变。尽管DNMT抑制剂在某些癌症中非常有效,但临床上批准使用的DNMT抑制剂缺乏特异性,这可能会导致广泛的有害影响。阐明DNMT的不同分子机制将有助于发现替代性癌症治疗靶点。本综述重点关注:(i)DNMT的结构和特征,(ii)癌症中DNMT突变和异常表达的普遍性,(iii)介导其异常表达的因素,以及(iv)异常DNMT复合物在癌症中的作用。