Affiliation:
1. CEA/Grenoble, Laboratoire de Biochimie et Biophysique des Systèmes Intégrés (UMR CEA/CNRS/UJF no. 5092), Département de Biologie Moléculaire et Structurale, 38054 Grenoble Cedex 9,1 and
2. CEA/Cadarache, Département d'Ecophysiologie Végétale et de Microbiologie, 13108 Saint-Paul-lez-Durance Cedex,2 France
Abstract
ABSTRACT
Rhodobacter capsulatus
synthesizes two homologous protein complexes capable of activating molecular H
2
, a membrane-bound [NiFe] hydrogenase (HupSL) linked to the respiratory chain, and an H
2
sensor encoded by the
hupUV
genes. The activities of hydrogen-deuterium (H-D) exchange catalyzed by the
hupSL
-encoded and the
hupUV
-encoded enzymes in the presence of D
2
and H
2
O were studied comparatively. Whereas HupSL is in the membranes, HupUV activity was localized in the soluble cytoplasmic fraction. Since the hydrogenase gene cluster of
R. capsulatus
contains a gene homologous to
hoxH
, which encodes the large subunit of NAD-linked tetrameric soluble hydrogenases, the chromosomal
hoxH
gene was inactivated and
hoxH
mutants were used to demonstrate the H-D exchange activity of the cytoplasmic HupUV protein complex. The H-D exchange reaction catalyzed by HupSL hydrogenase was maximal at pH 4.5 and inhibited by acetylene and oxygen, whereas the H-D exchange catalyzed by the HupUV protein complex was insensitive to acetylene and oxygen and did not vary significantly between pH 4 and pH 11. Based on these properties, the product of the accessory
hypD
gene was shown to be necessary for the synthesis of active HupUV enzyme. The kinetics of HD and H
2
formed in exchange with D
2
by HupUV point to a restricted access of protons and gasses to the active site. Measurement of concentration changes in D
2
, HD, and H
2
by mass spectrometry showed that, besides the H-D exchange reaction, HupUV oxidized H
2
with benzyl viologen, produced H
2
with reduced methyl viologen, and demonstrated true hydrogenase activity. Therefore, not only with respect to its H
2
signaling function in the cell, but also to its catalytic properties, the HupUV enzyme represents a distinct class of hydrogenases.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
41 articles.
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