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NADP+ is the oxidized form of the electron donor nicotinamide adenine dinucleotide phosphate (NADPH, Item No. 9000743). It serves as a cofactor in various biological reactions.1,2 In addition, the balance between these reduced and oxidized forms plays key roles in diverse cellular functions, including cell survival, the maintenance of redox status, and intracellular signaling.2,3 For example, binding of NADP+ to β-subunits of Kv channels activates ion transport, whereas NADPH stabilizes channel inactivation.4 NADP+ is biosynthesized from NAD+ (Item No. 16077) by NAD kinase, with ATP as the phosphoryl donor.5
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1. A review of the binding-
2. Overview of pyridine nucleotides review series. Circ. Res. 111(5), 604-610 (2012).
3. A vital link between energy and signal transduction: Regulatory functions of NAD(P). FEBS J. 272(18), 4561-4564 (2014).
4. Regulation of ion channels by pyridine nucleotides. Circ. Res. 112(4), 721-741 (2013).
5. Molecular properties, functions, and potential applications of NAD kinases. Acta Biochim. Biophys. Sin. (Shanghai) 41(5), 352-361 (2009).