Biochemistry (Washington) 2003-10-21

Topological and functional study of subunit h of the F1Fo ATP synthase complex in yeast Saccharomyces cerevisiae.

Rémi Fronzes, Stéphane Chaignepain, Katell Bathany, Marie-France Giraud, Geneviève Arselin, Jean-Marie Schmitter, Alain Dautant, Jean Velours, Daniel Brèthes

Index: Biochemistry 42(41) , 12038-49, (2003)

Full Text: HTML

Abstract

Subunit h, a 92-residue-long, hydrophilic, acidic protein, is a component of the yeast mitochondrial F1Fo ATP synthase. This subunit, homologous to the mammalian factor F6, is essential for the correct assembly and/or functioning of this enzyme since yeast cells lacking it are not able to grow on nonfermentable carbon sources. Chemical cross-links between subunit h and subunit 4 have previously been shown, suggesting that subunit h is a component of the peripheral stalk of the F1Fo ATP synthase. The construction of cysteine-containing subunit h mutants and the use of bismaleimide reagents provided insights into its environment. Cross-links were obtained between subunit h and subunits alpha, f, d, and 4. These results and secondary structure predictions allowed us to build a structural model and to propose that this subunit occupies a central place in the peripheral stalk between the F1 sector and the membrane. In addition, subunit h was found to have a stoichiometry of one in the F1Fo ATP synthase complex and to be in close proximity to another subunit h belonging to another F1Fo ATP synthase in the inner mitochondrial membrane. Finally, functional characterization of mitochondria from mutants expressing different C-terminal shortened subunit h suggested that its C-terminal part is not essential for the assembly of a functional F1Fo ATP synthase.


Related Compounds

Related Articles:

Use of maleimide-thiol coupling chemistry for efficient syntheses of oligonucleotide-enzyme conjugate hybridization probes.

1990-01-01

[Bioconjug. Chem. 1 , 71-76, (1990)]

Subunit associations of (Na+ + K+)-dependent adenosine triphosphatase. Chemical cross-linking studies.

1983-08-25

[J. Biol. Chem. 258(16) , 9878-85, (1983)]

Helix packing in the lactose permease of Escherichia coli determined by site-directed thiol cross-linking: helix I is close to helices V and XI.

1999-03-09

[Biochemistry 38(10) , 3120-6, (1999)]

Transmembrane helix tilting and ligand-induced conformational changes in the lactose permease determined by site-directed chemical crosslinking in situ.

1998-10-09

[J. Mol. Biol. 282(5) , 959-67, (1998)]

Fluctuation of the first loop facing the matrix of the mitochondrial ADP/ATP carrier deduced from intermolecular cross-linking of Cys56 residues by bifunctional dimaleimides.

1999-01-19

[Biochemistry 38(3) , 1050-6, (1999)]

More Articles...