Title of article :
How bacteria get energy from hydrogen: a genetic analysis of periplasmic hydrogen oxidation in Escherichia coli
Author/Authors :
Dubini، نويسنده , , Alexandra and Pye، نويسنده , , Rachael L. and Jack، نويسنده , , Rachael L. and Palmer، نويسنده , , Tracy and Sargent، نويسنده , , Frank، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2002
Pages :
8
From page :
1413
To page :
1420
Abstract :
Dihydrogen oxidation is an important feature of bacterial energy conservation. In Escherichia coli hydrogen oxidation (‘uptake’) is catalysed by membrane-bound [NiFe] hydrogenase-1 and [NiFe] hydrogenase-2. The bulk of these uptake isoenzymes is exposed to the periplasm and biosynthesis of the proteins involves membrane transport via the twin-arginine translocation (Tat) pathway. Hydrogenase-2 is encoded by the hybOABCDEFG operon and the core enzyme is a heterodimer of HybO and HybC. HybO is synthesised with a twin-arginine signal peptide. HybOC is associated with two other proteins (HybA and HybB) that complete the respiratory complex. The HybOC dimer is bound to the cytoplasmic membrane and appears to be anchored via a hydrophobic transmembrane α-helix located at the C-terminus of HybO. Thus, hydrogenase-2 is an example of an integral membrane protein assembled in a Tat-dependent (Sec-independent) manner. Studies of the biosynthesis, targeting, and assembly of hydrogenase-2 would set a paradigm for all respiratory complexes of this type.
Keywords :
Escherichia coil , hydrogenase , Metallenzyme biosynthesis
Journal title :
International Journal of Hydrogen Energy
Serial Year :
2002
Journal title :
International Journal of Hydrogen Energy
Record number :
1649370
Link To Document :
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