Title of article
Complete Ion-Coordination Structure in the Rotor Ring of Na+-Dependent F-ATP Synthases
Author/Authors
Thomas Meier and Georg Kaim، نويسنده , , Alexander Krah، نويسنده , , Peter J. Bond، نويسنده , , Denys Pogoryelov، نويسنده , , James W Coulton and Kay Diederichs، نويسنده , , José D. Faraldo-G?mez، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2009
Pages
10
From page
498
To page
507
Abstract
The membrane-embedded rotors of Na+-dependent F-ATP synthases comprise 11 c-subunits that form a ring, with 11 Na+ binding sites in between adjacent subunits. Following an updated crystallographic analysis of the c-ring from Ilyobacter tartaricus, we report the complete ion-coordination structure of the Na+ sites. In addition to the four residues previously identified, there exists a fifth ligand, namely, a buried structural water molecule. This water is itself coordinated by Thr67, which, sequence analysis reveals, is the only residue involved in binding that distinguishes Na+ synthases from H+-ATP synthases known to date. Molecular dynamics simulations and free-energy calculations of the c-ring in a lipid membrane lend clear support to the notion that this fifth ligand is a water molecule, and illustrate its influence on the selectivity of the binding sites. Given the evolutionary ascendancy of sodium over proton bioenergetics, this structure uncovers an ancient strategy for selective ion coupling in ATP synthases.
Keywords
c-ring structure , sodium-motive force , ion coordination and selectivity , F1Fo-ATP synthase rotor , Ilyobacter tartaricus
Journal title
Journal of Molecular Biology
Serial Year
2009
Journal title
Journal of Molecular Biology
Record number
1250142
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