[Targeting NAD metabolism in neuroendocrine carcinoma].

Nobuhiro Tanuma
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引用次数: 0

Abstract

NAD is an important metabolite that functions as a cofactor in various metabolic reactions, and its biosynthesis is known to be upregulated during malignant transformation. The NAD salvage, in which NAMPT is a rate-limiting enzyme, is a predominant pathway for NAD synthesis in most tissues including cancer. However, less is known about how cancer sensitivity against NAMPT inhibition (NAMPTi) is dictated. Here we report that lung and prostate neuroendocrine carcinomas (NECs) are extremely vulnerable to NAMPTi and that the therapeutic effect of NAMPTi is markedly enhanced by dietary restriction of the NAD precursor, niacin. We found that de novo NAD synthesis is inactivated during neuroendocrine differentiation of tumor cells, leading to a high dependence of NEC cells on NAD salvage. Further investigations in mouse transplantation models showed that lowering blood levels of nicotinic acid riboside (NAR), one of the non-classical niacin, dramatically increases the therapeutic effect of NAMPTi on NEC. Metabolic studies showed that dietary nicotinic acid is converted to NAR and then released into the circulation, and NAD synthesis using NAR substrates can compensate for the effects of NAMPTi in tumor cells. These findings reveal that niacin restriction with NAMPTi is synthetic lethal to NECs.

[针对神经内分泌癌的NAD代谢]。
NAD是一种重要的代谢物,在各种代谢反应中起辅助因子的作用,其生物合成在恶性转化过程中被上调。NAD回收,其中NAMPT是一种限速酶,是包括癌症在内的大多数组织中NAD合成的主要途径。然而,对于癌症对NAMPT抑制(NAMPTi)的敏感性是如何决定的,我们知之甚少。在这里,我们报道了肺和前列腺神经内分泌癌(NECs)对NAMPTi非常脆弱,并且通过饮食限制NAD前体烟酸,NAMPTi的治疗效果显着增强。我们发现,在肿瘤细胞的神经内分泌分化过程中,新生的NAD合成失活,导致NEC细胞高度依赖NAD修复。在小鼠移植模型中的进一步研究表明,降低血液中非经典烟酸之一的烟酸核苷(nictinicacid riboside, NAR)的水平可显著提高NAMPTi对NEC的治疗效果。代谢研究表明,膳食烟酸转化为NAR,然后释放到循环中,使用NAR底物合成NAD可以补偿肿瘤细胞中NAMPTi的作用。这些结果表明,NAMPTi限制烟酸对NECs具有合成致死性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Folia Pharmacologica Japonica
Folia Pharmacologica Japonica Pharmacology, Toxicology and Pharmaceutics-Pharmacology
CiteScore
0.40
自引率
0.00%
发文量
132
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