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Nicotinamide N-methyltransferase: At the crossroads between cellular metabolism and epigenetic regulation

机译:烟酰胺N-甲基转移酶:在细胞代谢与表观遗传调节之间的十字路口

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Background The abundance of energy metabolites is intimately interconnected with the activity of chromatin-modifying enzymes in order to guarantee the finely tuned modulation of gene expression in response to cellular energetic status. Metabolism-induced epigenetic gene regulation is a key molecular axis for the maintenance of cellular homeostasis, and its deregulation is associated with several pathological conditions. Nicotinamide N-methyltransferase (NNMT) is a metabolic enzyme that catalyzes the methylation of nicotinamide (NAM) using the universal methyl donor S-adenosyl methionine (SAM), directly linking one-carbon metabolism with a cell's methylation balance and nicotinamide adenine dinucleotide (NAD ) levels. NNMT expression and activity are regulated in a tissue-specific-manner, and the protein can act either physiologically or pathologically depending on its distribution. While NNMT exerts a beneficial effect by regulating lipid parameters in the liver, its expression in adipose tissue correlates with obesity and insulin resistance. NNMT upregulation has been observed in a variety of cancers, and increased NNMT expression has been associated with tumor progression, metastasis and worse clinical outcomes. Accordingly, NNMT represents an appealing druggable target for metabolic disorders as well as oncological and other diseases in which the protein is improperly activated. Scope of review This review examines emerging findings concerning the complex NNMT regulatory network and the role of NNMT in both NAD metabolism and cell methylation balance. We extensively describe recent findings concerning the physiological and pathological regulation of NNMT with a specific focus on the function of NNMT in obesity, insulin resistance and other associated metabolic disorders along with its well-accepted role as a cancer-associated metabolic enzyme. Advances in strategies targeting NNMT pathways are also reported, together with current limitations of NNMT inhibitor drugs in clinical use. Major conclusions NNMT is emerging as a key point of intersection between cellular metabolism and epigenetic gene regulation, and growing evidence supports its central role in several pathologies. The use of molecules that target NNMT represents a current pharmaceutical challenge for the treatment of several metabolic-related disease as well as in cancer.
机译:背景技术能量代谢物的丰富与染色质调节酶的活性密切相关,以保证响应于细胞能量状态的基因表达的精细调整调节。代谢诱导的表观遗传基因调节是用于维持细胞稳态的关键分子轴,其放松管制与几种病理条件有关。烟酰胺N-甲基转移酶(NNMT)是使用通用甲基供体S-腺苷(SAM)催化烟酰胺(NAM)的甲基化,与细胞的甲基化平衡和烟酰胺腺嘌呤二核苷酸(NAD)直接连接一种碳代谢(NAD )水平。 NNMT表达和活性以组织特异性调节,并且蛋白质可以根据其分布而在生理学或病理学上作用。虽然NNMT通过调节肝脏中的脂质参数来施加有益效果,但其在脂肪组织中的表达与肥胖和胰岛素抵抗力相关。在各种癌症中观察到NNMT上调,并且增加的NNMT表达与肿瘤进展,转移和临床结果较差有关。因此,NNMT代表了一种吸引代谢疾病的吸毒靶标,以及肿瘤和其他疾病,其中蛋白质被侵蚀不当。审查范围本综述审查了有关复杂的NNMT调节网络的新兴调查结果以及NNMT在NAD新陈代谢和细胞甲基化平衡中的作用。我们广泛地描述了关于NNMT的生理和病理调节的最近发现,其特异性关注NNMT在肥胖症中的功能,胰岛素抵抗和其他相关代谢障碍以及其作为癌症相关代谢酶的良好作用。还报道了靶向NNMT途径的策略的进展,以及目前NNMT抑制剂药物在临床用途的限制。主要结论是NNMT作为细胞代谢和表观遗传基因调控之间的交叉点的关键点,越来越多的证据支持其在几种病理中的核心作用。使用靶NNMT的分子代表了用于治疗几种与癌症相关的疾病以及癌症的目前的药物挑战。

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