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NADPH regulates human NAD kinase, a NADP⁺-biosynthetic enzyme.

机译:NADPH调节人NAD激酶,NADP⁺-生物合成酶。

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摘要

NAD kinase (NADK, EC 2.7.1.23) is the sole NADP(+)-biosynthetic enzyme that catalyzes phosphorylation of NAD(+) to yield NADP(+) using ATP as a phosphoryl donor, and thus, plays a vital role in the cell and represents a potentially powerful antimicrobial drug target. Although methods for expression and purification of human NADK have been previously established (Lerner et al. Biochem Biophys Res Commun 288:69-74, 2001), the purification procedure could be significantly improved. In this study, we improved the method for expression and purification of human NADK in Escherichia coli and obtained a purified homogeneous enzyme only through heat treatment and single column chromatography. Using the purified human NADK, we revealed a sigmoidal kinetic behavior toward ATP and the inhibitory effects of NADPH and NADH, but not of NADP(+), on the catalytic activity of the enzyme. These inhibitory effects provide insight into the regulation of intracellular NADPH synthesis. Furthermore, these attributes may provide a clue to design a novel drug against Mycobacterium tuberculosis in which this bacterial NADK is potently inhibited by NADP(+).
机译:NAD激酶(NADK,EC 2.7.1.23)是唯一的NADP(+)-生物合成酶,其催化NAD(+)的磷酸化以使用ATP作为磷酰基供体而产生NADP(+),因此,在NAD激酶中起着至关重要的作用。细胞并代表潜在的强大抗菌药物靶标。尽管先前已经建立了表达和纯化人NADK的方法(Lerner等人,Biochem Biophys Res Commun 288:69-74,2001),但是纯化程序可以得到显着改善。在这项研究中,我们改进了人类NADK在大肠杆菌中的表达和纯化方法,仅通过热处理和单柱色谱法获得了纯化的同质酶。使用纯化的人NADK,我们揭示了对ATP的S形动力学行为以及NADPH和NADH(而不是NADP(+))对酶催化活性的抑制作用。这些抑制作用提供了对细胞内NADPH合成调节的见解。此外,这些属性可能为设计针对结核分枝杆菌的新型药物提供线索,其中该细菌NADK被NADP(+)有效抑制。

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