Mutations in theArabidopsisPeroxisomal ABC Transporter COMATOSE Allow Differentiation between Multiple Functions In Planta: Insights from an Allelic Series
pmid: 19019987
pmc: PMC2613106
Mutations in theArabidopsisPeroxisomal ABC Transporter COMATOSE Allow Differentiation between Multiple Functions In Planta: Insights from an Allelic Series
COMATOSE (CTS), the Arabidopsis homologue of human Adrenoleukodystrophy protein (ALDP), is required for import of substrates for peroxisomal β-oxidation. A new allelic series and a homology model based on the bacterial ABC transporter, Sav1866, provide novel insights into structure-function relations of ABC subfamily D proteins. In contrast to ALDP, where the majority of mutations result in protein absence from the peroxisomal membrane, all CTS mutants produced stable protein. Mutation of conserved residues in the Walker A and B motifs in CTS nucleotide-binding domain (NBD) 1 resulted in a null phenotype but had little effect in NBD2, indicating that the NBDs are functionally distinct in vivo. Two alleles containing mutations in NBD1 outside the Walker motifs (E617K and C631Y) exhibited resistance to auxin precursors 2,4-dichlorophenoxybutyric acid (2,4-DB) and indole butyric acid (IBA) but were wild type in all other tests. The homology model predicted that the transmission interfaces are domain-swapped in CTS, and the differential effects of mutations in the conserved “EAA motif” of coupling helix 2 supported this prediction, consistent with distinct roles for each NBD. Our findings demonstrate that CTS functions can be separated by mutagenesis and the structural model provides a framework for interpretation of phenotypic data.
- University of Bristol United Kingdom
- University of Nottingham United Kingdom
- University of Leeds United Kingdom
- Biotechnology and Biological Sciences Research Council United Kingdom
- Rothamsted Research United Kingdom
580, Adenosine Triphosphatases, Models, Molecular, 570, Sucrose, Indoleacetic Acids, Arabidopsis Proteins, Molecular Sequence Data, Arabidopsis, Fatty Acid Transport Proteins, Protein Structure, Tertiary, Phenotype, Catalytic Domain, Mutation, Peroxisomes, Animals, Humans, ATP-Binding Cassette Transporters, Amino Acid Sequence, Sequence Alignment, Alleles
580, Adenosine Triphosphatases, Models, Molecular, 570, Sucrose, Indoleacetic Acids, Arabidopsis Proteins, Molecular Sequence Data, Arabidopsis, Fatty Acid Transport Proteins, Protein Structure, Tertiary, Phenotype, Catalytic Domain, Mutation, Peroxisomes, Animals, Humans, ATP-Binding Cassette Transporters, Amino Acid Sequence, Sequence Alignment, Alleles
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