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烟酸与致癌作用。

Niacin and carcinogenesis.

作者信息

Kirkland James B

机构信息

Department of Human Biology and Nutritional Sciences, University of Guelph, Guelph, Ontario, Canada.

出版信息

Nutr Cancer. 2003;46(2):110-8. doi: 10.1207/S15327914NC4602_02.

Abstract

The dietary status of niacin (vitamin B3) has the potential to influence DNA repair, genomic stability, and the immune system, eventually having an impact on cancer risk, as well as the side effects of chemotherapy in the cancer patient. In addition to its well-known redox functions in energy metabolism, niacin, in the form of NAD, participates in a wide variety of ADP-ribosylation reactions. Poly(ADP-ribose) is a negatively charged polymer synthesized, predominantly on nuclear proteins, by at least seven different enzymes. Poly(ADP-ribose) polymerase-1 (PARP-1) is responsible for the majority of polymer synthesis and plays important roles in DNA damage responses, including repair, maintenance of genomic stability, and signaling events for stress responses such as apoptosis. NAD is also used in the synthesis of mono(ADP-ribose), often on G proteins, with poorly understood roles in signal transduction. Last, NAD and NADP are required for the synthesis of cyclic ADP-ribose and nicotinic acid adenine dinucleotide (NAADP), two mediators of intracellular calcium signaling pathways. Disruption of any of these processes has the potential to impair genomic stability and deregulate cell division, leading to enhanced cancer risk. There are various sources of evidence that niacin status does have an impact on cancer risk, including animal models of leukemogenesis and skin cancer, as well as epidemiological data from human populations.

摘要

烟酸(维生素B3)的饮食状况有可能影响DNA修复、基因组稳定性和免疫系统,最终对癌症风险以及癌症患者化疗的副作用产生影响。除了在能量代谢中众所周知的氧化还原功能外,以NAD形式存在的烟酸还参与多种ADP核糖基化反应。聚(ADP-核糖)是一种带负电荷的聚合物,主要由至少七种不同的酶在核蛋白上合成。聚(ADP-核糖)聚合酶-1(PARP-1)负责大部分聚合物的合成,并在DNA损伤反应中发挥重要作用,包括修复、维持基因组稳定性以及应激反应(如细胞凋亡)的信号传导事件。NAD也用于单(ADP-核糖)的合成,通常在G蛋白上进行,其在信号转导中的作用尚不清楚。最后,细胞内钙信号通路的两种介质环ADP-核糖和烟酰胺腺嘌呤二核苷酸磷酸(NAADP)的合成需要NAD和NADP。这些过程中任何一个的破坏都有可能损害基因组稳定性并使细胞分裂失调,从而增加癌症风险。有各种证据表明烟酸状况确实会影响癌症风险,包括白血病发生和皮肤癌的动物模型以及来自人群的流行病学数据。

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