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Structural and biochemical characterization of the prenylated flavin mononucleotide-dependent indole-3-carboxylic acid decarboxylase
被引:11
作者:

Gahloth, Deepankar
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Univ Manchester, Manchester Inst Biotechnol, Manchester, Lancs, England Univ Manchester, Manchester Inst Biotechnol, Manchester, Lancs, England

Fisher, Karl
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Univ Manchester, Manchester Inst Biotechnol, Manchester, Lancs, England Univ Manchester, Manchester Inst Biotechnol, Manchester, Lancs, England

Payne, Karl A. P.
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机构:
Univ Manchester, Manchester Inst Biotechnol, Manchester, Lancs, England Univ Manchester, Manchester Inst Biotechnol, Manchester, Lancs, England

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Leys, David
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Univ Manchester, Manchester Inst Biotechnol, Manchester, Lancs, England Univ Manchester, Manchester Inst Biotechnol, Manchester, Lancs, England
机构:
[1] Univ Manchester, Manchester Inst Biotechnol, Manchester, Lancs, England
基金:
欧洲研究理事会;
关键词:
CARBOXYLATION;
BIOSYNTHESIS;
DEGRADATION;
RESOLUTION;
BENZENE;
MODELS;
INDOLE;
UBIX;
D O I:
10.1016/j.jbc.2022.101771
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
The ubiquitous UbiD family of reversible decarboxylases is implicated in a wide range of microbial processes and depends on the prenylated flavin mononucleotide cofactor for catalysis. However, only a handful of UbiD family members have been characterized in detail, and comparison between these has suggested considerable variability in enzyme dynamics and mechanism linked to substrate specificity. In this study, we provide structural and biochemical insights into the indole-3carboxylic acid decarboxylase, representing an UbiD enzyme activity distinct from those previously studied. Structural insights from crystal structure determination combined with small-angle X-ray scattering measurements reveal that the enzyme likely undergoes an open-closed transition as a consequence of domain motion, an event that is likely coupled to catalysis. We also demonstrate that the indole-3-carboxylic acid decarboxylase can be coupled with carboxylic acid reductase to produce indole-3-carboxyaldehyde from indole + CO2 under ambient conditions. These insights provide further evidence for a common mode of action in the widespread UbiD enzyme family.
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页数:12
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