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NRH salvage and conversion to NAD(+) requires NRH kinase activity by adenosine kinase

机译:NRH打捞和转换需要NRH NAD (+)通过腺苷酸激酶激酶活性

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摘要

Dihydronicotinamide riboside (NRH) has been suggested to act as a precursor for the synthesis of NAD(+), but the biochemical pathway converting it has been unknown. Here, we show that NRH can be converted into NAD(+) via a salvage pathway in which adenosine kinase (ADK, also known as AK) acts as an NRH kinase. Using isotope-labelling approaches, we demonstrate that NRH is fully incorporated into NAD(+), with NMNH acting as an intermediate. We further show that AK is enriched in fractions from cell lysates with NRH kinase activity, and that AK can convert NRH into NAD(+). In cultured cells and mouse liver, pharmacological or genetic inhibition of AK blocks formation of reduced nicotinamide mononucleotide (NMNH) and inhibits NRH-stimulated NAD(+) biosynthesis. Finally, we confirm the presence of endogenous NRH in the liver with metabolomics. Our findings establish NRH as a natural precursor of NAD(+) and reveal a new route for NAD(+) biosynthesis via an NRH salvage pathway involving AK.
机译:Dihydronicotinamide核糖甙(NRH)建议作为前体合成NAD(+),但生化途径转换这是未知的。被转换成通过救助途径在NAD (+)腺苷酸激酶(理应,也称为AK)充当NRH激酶。方法,我们证明NRH是完全纳入NAD (+), NMNH担任中间。在分数与NRH激酶细胞溶解产物活动,正义与发展党NRH转换成NAD(+)。药物或基因抑制的正义与发展党块还原型烟酰胺的形成单核苷酸(NMNH)和抑制NRH-stimulatedNAD(+)生物合成。存在内生NRH在肝脏代谢组学。自然的前兆NAD(+)和显示一个新的路线通过NRH打捞NAD(+)的生物合成途径包括正义与发展党。

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