Biosynthesis of triacsin featuring an N-hydroxytriazene pharmacophore

以 N-羟基三氮烯药效团为特征的三甲酰脲的生物合成

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作者:Antonio Del Rio Flores #, Frederick F Twigg #, Yongle Du, Wenlong Cai, Daniel Q Aguirre, Michio Sato, Moriel J Dror, Maanasa Narayanamoorthy, Jiaxin Geng, Nicholas A Zill, Rui Zhai, Wenjun Zhang

Abstract

Triacsins are an intriguing class of specialized metabolites possessing a conserved N-hydroxytriazene moiety not found in any other known natural products. Triacsins are notable as potent acyl-CoA synthetase inhibitors in lipid metabolism, yet their biosynthesis has remained elusive. Through extensive mutagenesis and biochemical studies, we here report all enzymes required to construct and install the N-hydroxytriazene pharmacophore of triacsins. Two distinct ATP-dependent enzymes were revealed to catalyze the two consecutive N-N bond formation reactions, including a glycine-utilizing, hydrazine-forming enzyme (Tri28) and a nitrite-utilizing, N-nitrosating enzyme (Tri17). This study paves the way for future mechanistic interrogation and biocatalytic application of enzymes for N-N bond formation.

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