Unrivalled diversity: the many roles and reactions of bacterial cytochromes P450 in secondary metabolism

Непревзойденное разнообразие: многочисленные функции и реакции бактериальных цитохромов P450 во вторичном метаболизме
Anja Greule, Jeanette E. Stok, James J. De Voss, Max J. Cryle
2018-01-01

bacterial cytochromes P450biosynthetic pathwayschemical transformationsheme-containing monooxygenasessecondary metabolism
Covering: 2000 up to 2018 The cytochromes P450 (P450s) are a superfamily of heme-containing monooxygenases that perform diverse catalytic roles in many species, including bacteria. The P450 superfamily is widely known for the hydroxylation of unactivated C-H bonds, but the diversity of reactions that P450s can perform vastly exceeds this undoubtedly impressive chemical transformation. Within bacteria, P450s play important roles in many biosynthetic and biodegradative processes that span a wide range of secondary metabolite pathways and present diverse chemical transformations. In this review, we aim to provide an overview of the range of chemical transformations that P450 enzymes can catalyse within bacterial secondary metabolism, with the intention to provide an important resource to aid in understanding of the potential roles of P450 enzymes within newly identified bacterial biosynthetic pathways.
1
Bacterial cytochromes P450 catalyze a much broader range of chemical transformations than hydroxylation of unactivated C–H bonds.
2
P450 enzymes participate in diverse biosynthetic and biodegradative processes across numerous bacterial secondary-metabolite pathways.
3
The review surveys bacterial secondary-metabolism P450 reactions from 2000 to 2018, emphasizing their wide catalytic and functional diversity.
4
This catalog of transformations provides a resource for assigning potential roles to P450 enzymes in newly identified bacterial biosynthetic pathways.

bacterial cytochromes P450 involved in secondary metabolism

the diversity of catalytic chemical transformations and biosynthetic and biodegradative roles performed by bacterial cytochromes P450

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2018-01-01
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Anja Greule
Jeanette E. Stok
James J. De Voss
Max J. Cryle
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