Mapping the contact sites of the escherichia coli division-initiating proteins FtsZ and ZapA by BAMG cross-linking and site-directed mutagenesis
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2018-10-01
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Abstract
Cell division in bacteria is initiated by the polymerization of FtsZ at midcell in a ring-like structure called the Z-ring. ZapA and other proteins assist Z-ring formation and ZapA binds ZapB, which senses the presence of the nucleoids. The FtsZ–ZapA binding interface was analyzed by chemical cross-linking mass spectrometry (CXMS) under in vitro FtsZ-polymerizing conditions in the presence of GTP. Amino acids residue K42 from ZapA was cross-linked to amino acid residues K51 and K66 from FtsZ, close to the interphase between FtsZ molecules in protofilaments. Five different cross-links confirmed the tetrameric structure of ZapA. A number of FtsZ cross-links suggests that its C-terminal domain of 55 residues, thought to be largely disordered, has a limited freedom to move in space. Site-directed mutagenesis of ZapA reveals an interaction site in the globular head of the protein close to K42. Using the information on the cross-links and the mutants that lost the ability to interact with FtsZ, a model of the FtsZ protofilament–ZapA tetramer complex was obtained by information-driven docking with the HADDOCK2.2 webserver.
Keywords
1,4-bis(succimidyl)-3-azidomethylglutarate (BAMG), Cell division, Filamenting temperature sensitive Z (FtsZ), Fourier-transform ion cyclotron resonance mass spectrometry(FTICR), Quadrupole time of flight mass spectrometer (QTOF), Z associated protein A (ZapA), Catalysis, Molecular Biology, Spectroscopy, Computer Science Applications, Physical and Theoretical Chemistry, Organic Chemistry, Inorganic Chemistry
Citation
Roseboom, W, Nazir, M G, Meiresonne, N Y, Mohammadi, T, Verheul, J, Buncherd, H, Bonvin, A M J J, de Koning, L J, de Koster, C G, De Jong, L & Den Blaauwen, T 2018, 'Mapping the contact sites of the escherichia coli division-initiating proteins FtsZ and ZapA by BAMG cross-linking and site-directed mutagenesis', International Journal of Molecular Sciences, vol. 19, no. 10, 2928. https://doi.org/10.3390/ijms19102928