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The catalytic architecture of leukotriene C4 synthase with two arginine residues.


ABSTRACT: Leukotriene (LT) C(4) and its metabolites, LTD(4) and LTE(4), are involved in the pathobiology of bronchial asthma. LTC(4) synthase is the nuclear membrane-embedded enzyme responsible for LTC(4) biosynthesis, catalyzing the conjugation of two substrates that have considerably different water solubility; that amphipathic LTA(4) as a derivative of arachidonic acid and a water-soluble glutathione (GSH). A previous crystal structure revealed important details of GSH binding and implied a GSH activating function for Arg-104. In addition, Arg-31 was also proposed to participate in the catalysis based on the putative LTA(4) binding model. In this study enzymatic assay with mutant enzymes demonstrates that Arg-104 is required for the binding and activation of GSH and that Arg-31 is needed for catalysis probably by activating the epoxide group of LTA(4).

SUBMITTER: Saino H 

PROVIDER: S-EPMC3091245 | biostudies-literature | 2011 May

REPOSITORIES: biostudies-literature

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The catalytic architecture of leukotriene C4 synthase with two arginine residues.

Saino Hiromichi H   Ukita Yoko Y   Ago Hideo H   Irikura Daisuke D   Nisawa Atsushi A   Ueno Go G   Yamamoto Masaki M   Kanaoka Yoshihide Y   Lam Bing K BK   Austen K Frank KF   Miyano Masashi M  

The Journal of biological chemistry 20110316 18


Leukotriene (LT) C(4) and its metabolites, LTD(4) and LTE(4), are involved in the pathobiology of bronchial asthma. LTC(4) synthase is the nuclear membrane-embedded enzyme responsible for LTC(4) biosynthesis, catalyzing the conjugation of two substrates that have considerably different water solubility; that amphipathic LTA(4) as a derivative of arachidonic acid and a water-soluble glutathione (GSH). A previous crystal structure revealed important details of GSH binding and implied a GSH activat  ...[more]

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