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NAD kinase controls animal NADP biosynthesis and is modulated via evolutionarily divergent calmodulin-dependent mechanisms

机译:NAD激酶控制动物NADP的生物合成并通过进化差异钙调蛋白依赖性机制进行调节

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摘要

Nicotinamide adenine dinucleotide phosphate (NADP) is a critical cofactor during metabolism, calcium signaling, and oxidative defense, yet how animals regulate their NADP pools in vivo and how NADP-synthesizing enzymes are regulated have long remained unknown. Here we show that expression of Nadk, an NAD+ kinase-encoding gene, governs NADP biosynthesis in vivo and is essential for development in Xenopus frog embryos. Unexpectedly, we found that embryonic Nadk expression is dynamic, showing cell type-specific up-regulation during both frog and sea urchin embryogenesis. We analyzed the NAD kinases (NADKs) of a variety of deuterostome animals, finding two conserved internal domains forming a catalytic core but a highly divergent N terminus. One type of N terminus (found in basal species such as the sea urchin) mediates direct catalytic activation of NADK by Ca2+/calmodulin (CaM), whereas the other (typical for vertebrates) is phosphorylated by a CaM kinase-dependent mechanism. This work indicates that animal NADKs govern NADP biosynthesis in vivo and are regulated by evolutionarily divergent and conserved CaM-dependent mechanisms.
机译:烟酰胺腺嘌呤二核苷酸磷酸(NADP)是新陈代谢,钙信号传导和氧化防御过程中的关键辅助因子,然而,动物如何在体内调节其NADP池以及如何调节NADP合成酶一直是未知的。在这里,我们显示Nadk,一种NAD + 激酶编码基因的表达,在体内控制着NADP的生物合成,对于非洲爪蟾蛙胚胎的发育至关重要。出乎意料的是,我们发现胚胎Nadk表达是动态的,显示青蛙和海胆胚胎发生过程中特定于细胞类型的上调。我们分析了多种氘代动物的NAD激酶(NADK),发现了两个保守的内部结构域,形成催化核心,但N末端高度分散。一种类型的N末端(存在于海胆等基础物种中)通过Ca 2 + /钙调蛋白(CaM)介导NADK的直接催化活化,而另一种(典型地用于脊椎动物)被N-磷酸化CaM激酶依赖性机制。这项工作表明,动物NADKs在体内控制着NADP的生物合成,并受进化上不同和保守的CaM依赖性机制的调节。

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