Analysis of Sequence Determinants of F1Fo-ATP Synthase in the N-terminal Region of α Subunit for Binding of δ Subunit
The stator in F 1 F o -ATP synthase resists strain generated by rotor torque. In Escherichia coli , the b 2 δ subunit complex comprises the stator, bound to subunit a in F o and to the α 3 β 3 hexagon of F 1 . Previous work has shown that N-terminal residues of α subunit are involved in binding...
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Veröffentlicht in: | The Journal of biological chemistry 2004-06, Vol.279 (24), p.25673 |
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Sprache: | eng |
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Zusammenfassung: | The stator in F 1 F o -ATP synthase resists strain generated by rotor torque. In Escherichia coli , the b 2 δ subunit complex comprises the stator, bound to subunit a in F o and to the α 3 β 3 hexagon of F 1 . Previous work has shown that N-terminal residues of α subunit are involved in binding δ. A synthetic peptide consisting
of the first 22 residues of α (αN1â22) binds specifically to isolated wild-type δ subunit with 1:1 stoichiometry and high
affinity, accounting for a major portion of the binding energy between δ and F 1 . Residues α6â18 are predicted by secondary structure algorithms and helical wheels to be α-helical and amphipathic, and a
potential helix capping box occurs at residues α3â8. We introduced truncations, deletions, and mutations into αN1â22 peptide
and examined their effects on binding to the δ subunit. The deletions and mutations were introduced also into the N-terminal
region of the uncA (α subunit) gene to determine effects on cell growth in vivo and membrane ATP synthase activity in vitro . Effects seen in the peptides were well correlated with those seen in the uncA gene. The results show that, with the possible exception of residues close to the initial Met, all of the αN1â22 sequence
is required for binding of δ to α. Within this sequence, an amphipathic helix seems important. Hydrophobic residues on the
predicted nonpolar surface are important for δ binding, namely αIle-8, αLeu-11, αIle-12, αIle-16, and αPhe-19. Several or
all of these residues probably make direct interaction with helices 1 and 5 of δ. The potential capping box sequence per se appeared less important. Impairment of α/δ binding brings about functional impairment due to reduced level of assembly of
ATP synthase in cells. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.M402738200 |