Nicotinamidases catalyze the hydrolysis of the amide bond in nicotinamide (NAM) to produce ammonia and nicotinic acid (NA). These enzymes are an essential component of the NAD(+) salvage pathway and are implicated in the viability of several pathogenic organisms. Its absence in humans makes them a promising drug target. In addition, although they are key analytical biocatalysts for screening modulators in relevant biomedical enzymes, such as sirtuins and poly-ADP-ribosyltransferases, no commercial sources are available. Surprisingly, the finding of an affordable source of nicotinamidase from metagenomic libraries is hindered by the absence of a suitable and fast screening method. In this manuscript, we describe the development of two new wh...
Redox enzymes are very useful tools for establishing greener routes in organic synthesis, mostly due...
The essential coenzyme NAD plays important roles in metabolic reactions and cell regulation in all o...
<div><p>NAD<sup>+</sup> has emerged as a crucial element in both bioenergetic and signaling pathways...
<div><p>Nicotinamidases catalyze the hydrolysis of nicotinamide to nicotinic acid and ammonia, an im...
Disease-causing bacteria, such as those that cause cholera, diphtheria and other diseases, use toxin...
Nicotinamidases are amidohydrolases that convert nicotinamide into nicotinic acid, contributing to N...
Nicotinamidases catalyze the hydrolysis of nicotinamide to nicotinic acid and ammonia. Nicotinamidas...
Nicotinamide cofactors enable oxidoreductases to catalyze a myriad of important reactions in biomanu...
The maintenance of a proper NAD+ pool is essential for cell survival, and tumor cells are particular...
NAD+ has emerged as a crucial element in both bioenergetic and signaling pathways since it acts as a...
Tobacco-soil bacteria have evolved not only to tolerate high concentrations of nicotine, but to degr...
Nicotinamide phosphoribosyltransferase (NAMPT) catalyzes the condensation of nicotinamide (NAM) with...
Nicotinamide mononucleotide (NMN) deamidase is one of the key enzymes of the bacterial pyridine nucl...
The market demand for β-nicotinamide mononucleotide (NMN), an antiaging health product, is rapidly e...
A novel nicotine hydroxylase was isolated from Pseudomonas sp. ZZ-5 (HSPHZZ). The sequence encoding ...
Redox enzymes are very useful tools for establishing greener routes in organic synthesis, mostly due...
The essential coenzyme NAD plays important roles in metabolic reactions and cell regulation in all o...
<div><p>NAD<sup>+</sup> has emerged as a crucial element in both bioenergetic and signaling pathways...
<div><p>Nicotinamidases catalyze the hydrolysis of nicotinamide to nicotinic acid and ammonia, an im...
Disease-causing bacteria, such as those that cause cholera, diphtheria and other diseases, use toxin...
Nicotinamidases are amidohydrolases that convert nicotinamide into nicotinic acid, contributing to N...
Nicotinamidases catalyze the hydrolysis of nicotinamide to nicotinic acid and ammonia. Nicotinamidas...
Nicotinamide cofactors enable oxidoreductases to catalyze a myriad of important reactions in biomanu...
The maintenance of a proper NAD+ pool is essential for cell survival, and tumor cells are particular...
NAD+ has emerged as a crucial element in both bioenergetic and signaling pathways since it acts as a...
Tobacco-soil bacteria have evolved not only to tolerate high concentrations of nicotine, but to degr...
Nicotinamide phosphoribosyltransferase (NAMPT) catalyzes the condensation of nicotinamide (NAM) with...
Nicotinamide mononucleotide (NMN) deamidase is one of the key enzymes of the bacterial pyridine nucl...
The market demand for β-nicotinamide mononucleotide (NMN), an antiaging health product, is rapidly e...
A novel nicotine hydroxylase was isolated from Pseudomonas sp. ZZ-5 (HSPHZZ). The sequence encoding ...
Redox enzymes are very useful tools for establishing greener routes in organic synthesis, mostly due...
The essential coenzyme NAD plays important roles in metabolic reactions and cell regulation in all o...
<div><p>NAD<sup>+</sup> has emerged as a crucial element in both bioenergetic and signaling pathways...