TY - JOUR
T1 - Molecular and immunological analysis of an ABC transporter complex required for cytochrome c biogenesis
AU - Goldman, Barry S.
AU - Beckman, Diana L.
AU - Bali, Anil
AU - Monika, Elizabeth M.
AU - Gabbert, Karen K.
AU - Kranz, Robert G.
N1 - Funding Information:
We thank Fevzi Daldal, Claude Gutierrez, Sam Kaplan, Steven Lang, and John Smith for providing strains and plasmids; David Kranz for monoclonal antibodies; Paul Cullen for reading the manuscript. These studies were supported by NSF (DCB 9206106) and NIH (GM 47909) grants to R.G.K.
PY - 1997/5/16
Y1 - 1997/5/16
N2 - The helABC genes are predicted to encode an ATP-binding cassette (ABC) transporter necessary for heme export for ligation in bacterial cytochrome c biogenesis. The recent discoveries of homologs of the helB and helC genes in plant mitochondrial genomes suggest this is a highly conserved transporter in prokaryotes and some eukaryotes with the HelB and HelC proteins comprising the transmembrane components. Molecular genetic analysis in the Gram-negative bacterium Rhodobacter capsulatus was used to show that the helABC and helDX genes are part of an operon linked to the secDF genes. To facilitate analysis of this transporter, strains with non-polar deletions in each gene, epitope and reporter-tagged HelABCD proteins, and antisera specific to the HelA and HelX proteins were generated. We directly demonstrate that this transporter is present in the cytoplasmic membrane as an HelABCD complex. The HelB and HelC but not HelD proteins are necessary for the binding and stability of the HelA protein, the cytoplasmic subunit containing the ATP-binding region. In addition we show that the HelA protein co-immunoprecipitates with either the HelC or HelD proteins. Thus, the HelABCD heme export complex is distinguished by the presence of four membrane-associated subunits and represents a unique subfamily of ABC transporters.
AB - The helABC genes are predicted to encode an ATP-binding cassette (ABC) transporter necessary for heme export for ligation in bacterial cytochrome c biogenesis. The recent discoveries of homologs of the helB and helC genes in plant mitochondrial genomes suggest this is a highly conserved transporter in prokaryotes and some eukaryotes with the HelB and HelC proteins comprising the transmembrane components. Molecular genetic analysis in the Gram-negative bacterium Rhodobacter capsulatus was used to show that the helABC and helDX genes are part of an operon linked to the secDF genes. To facilitate analysis of this transporter, strains with non-polar deletions in each gene, epitope and reporter-tagged HelABCD proteins, and antisera specific to the HelA and HelX proteins were generated. We directly demonstrate that this transporter is present in the cytoplasmic membrane as an HelABCD complex. The HelB and HelC but not HelD proteins are necessary for the binding and stability of the HelA protein, the cytoplasmic subunit containing the ATP-binding region. In addition we show that the HelA protein co-immunoprecipitates with either the HelC or HelD proteins. Thus, the HelABCD heme export complex is distinguished by the presence of four membrane-associated subunits and represents a unique subfamily of ABC transporters.
KW - ATP-dependent transporter complex
KW - Cytochrome c biogenesis
KW - Export
KW - Heme
UR - https://www.scopus.com/pages/publications/0031574912
U2 - 10.1006/jmbi.1997.0992
DO - 10.1006/jmbi.1997.0992
M3 - Article
C2 - 9175857
AN - SCOPUS:0031574912
SN - 0022-2836
VL - 268
SP - 724
EP - 738
JO - Journal of Molecular Biology
JF - Journal of Molecular Biology
IS - 4
ER -