The low-affinity ATP binding site of the Escherichia coli SecA dimer is localized at the subunit interface

Jeroen P.W. van der Wolk, Andre Boorsma, Maren Knoche, Hans-Jochen Schäfer, Arnold J.M. Driessen

Research output: Contribution to journalArticleAcademic

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Abstract

The homodimeric SecA protein is the ATP-dependent force generator in the Escherichia coli precursor protein translocation cascade. SecA contains two essential nucleotide binding sites (NBSs), i.e., NBS1 and NBS2 that hind ATP with high and low affinity, respectively. The photoactivatable bifunctional cross-linking agent 3'-arylazido-8-azidoadenosine 5'-triphosphate (diN(3)ATP) was used to investigate the spatial arrangement of the nucleotide binding sites of SecA, DiN(3)ATP is an authentic ATP analogue as it supports SecA-dependent precursor protein translocation and translocation ATPase, UV-induced photo-cross-linking of the diN(3)ATP-bound SecA results in the formation of stable dimeric species of SecA. D209N SecA, a mutant unable to bind nucleotides at NBS1, was also photo-crosslinked by diN(3)ATP, whereas no cross-linking occurred with the NBS2 mutant R509K SecA, We concluded that the low-affinity NBS2, which is located in the carboxyl-terminal half of SecA, Is the site of crosslinking and that NBS2 binds nucleotides at or near the subunit interface of the SecA dimer.

Original languageEnglish
Pages (from-to)14924-14929
Number of pages6
JournalBiochemistry
Volume36
Issue number48
DOIs
Publication statusPublished - 2-Dec-1997

Keywords

  • PHOTOAFFINITY CROSS-LINKING
  • PRECURSOR PROTEIN TRANSLOCATION
  • MEMBRANE-VESICLES REQUIRES
  • PROTON MOTIVE FORCE
  • PREPROTEIN TRANSLOCASE
  • PLASMA-MEMBRANE
  • 3'-ARYLAZIDO-BETA-ALANYL-8-AZIDO ATP
  • CYTOPLASMIC MEMBRANE
  • ESSENTIAL COMPONENT
  • BACILLUS-SUBTILIS

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