Mechanism of Allosteric Modulation of Nicotinamide Phosphoribosyltransferase to Elevate Cellular NAD+

烟酰胺磷酸核糖转移酶 NAD+激酶 变构调节 烟酰胺腺嘌呤二核苷酸 化学 分解代谢 生物化学 烟酰胺 烟酰胺单核苷酸 细胞生物学 辅因子 三磷酸腺苷 磷酸核糖转移酶 生物 突变体 次黄嘌呤鸟嘌呤磷酸核糖转移酶 基因
作者
Kiira Ratia,Zhengnan Shen,Jesse Gordon-Blake,Hyun Lee,Megan S. Laham,Isabella S. Krider,Nicholas Christie,Martha Ackerman-Berrier,Christopher Penton,Natalie G. Knowles,Soumya Reddy Musku,Jiqiang Fu,Ganga Reddy Velma,Rui Xiong,Gregory R. J. Thatcher
出处
期刊:Biochemistry [American Chemical Society]
卷期号:62 (4): 923-933 被引量:21
标识
DOI:10.1021/acs.biochem.2c00655
摘要

In aging and disease, cellular nicotinamide adenine dinucleotide (NAD + ) is depleted by catabolism to nicotinamide (NAM). NAD + supplementation is being pursued to enhance human healthspan and lifespan. Activation of nicotinamide phosphoribosyltransferase (NAMPT), the rate-limiting step in NAD + biosynthesis, has the potential to increase the salvage of NAM. Novel NAMPT-positive allosteric modulators (N-PAMs) were discovered in addition to the demonstration of NAMPT activation by biogenic phenols. The mechanism of activation was revealed through the synthesis of novel chemical probes, new NAMPT co-crystal structures, and enzyme kinetics. Binding to a rear channel in NAMPT regulates NAM binding and turnover, with biochemical observations being replicated by NAD + measurements in human cells. The mechanism of action of N-PAMs identifies, for the first time, the role of the rear channel in the regulation of NAMPT turnover coupled to productive and nonproductive NAM binding. The tight regulation of cellular NAMPT via feedback inhibition by NAM, NAD +, and adenosine 5′-triphosphate (ATP) is differentially regulated by N-PAMs and other activators, indicating that different classes of pharmacological activators may be engineered to restore or enhance NAD + levels in affected tissues.
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