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Nitric Oxide and S-Nitrosylation in Cancers: Emphasis on Breast Cancer

机译:在癌症中的一氧化氮和S-亚硝基化:强调乳腺癌

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Nitric oxide (NO) is a ubiquitous, endogenously produced, water-soluble signaling molecule playing critical roles in physiological processes. Nitric oxide plays pleiotropic roles in cancer and, depending on its local concentration, may lead to either tumor progression or tumor suppression. Addition of NO group to a cysteine residue within a protein, termed as S-nitrosylation, plays diverse regulatory roles and affects processes such as metabolism, apoptosis, protein phosphorylation, and regulation of transcription factors. The process of S-nitrosylation has been associated with development of different cancers, including breast cancer. The present review discusses different mechanisms through which NO acts, with special emphasis on breast cancers, and provides detailed insights into reactive nitrogen species, posttranslational modifications of proteins mediated by NO, dual nature of NO in cancers, and the implications of S-nitrosylation in cancers. Our review will generate interest in exploring molecular regulation by NO in different cancers and will have significant therapeutic implications in the management and treatment of breast cancer.
机译:一氧化氮(NO)是一种普遍存在的内源性产生的水溶性信号分子,其在生理过程中发挥着关键作用。一氧化氮在癌症中起热潮作用,取决于其局部浓度,可能导致肿瘤进展或肿瘤抑制。在蛋白质中添加没有组的半胱氨酸残基,称为S-亚硝基化,起到不同的调节作用,并影响代谢,细胞凋亡,蛋白质磷酸化和转录因子调节等过程。 S-亚硝基化的方法与不同癌症的发育有关,包括乳腺癌。本综述讨论了不同的机制,无行为,特别强调乳腺癌,并向反应性氮物质提供详细的见解,蛋白质的蛋白质的后期修饰,癌症中否的双重性,以及S-亚硝基化的影响癌症。我们的评论将产生兴趣在不同的癌症中探索分子调控,并在乳腺癌的管理和治疗中具有显着的治疗意义。

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