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Journal of Molecular Biology|March 10, 2009
Contributions of the transmembrane domain and a key acidic motif to assembly and function of the TatA complexGemma Warren, Joanne Oates, Colin Robinson, et al.
The EMBO Journal|July 11, 2008
The Tat system proofreads FeS protein substrates and directly initiates the disposal of rejected moleculesCristina F R O Matos, Colin Robinson, Alessandra Di Cola
FEBS Letters|December 29, 2004
The occurrence of rapidly reversible non-photochemical quenching of chlorophyll a fluorescence in cyanobacteriaShaun Bailey, Nicholas H Mann, Colin Robinson, et al.
The Journal of Physical Chemistry. B|July 21, 2006
CVD growth of N-doped carbon nanotubes on silicon substrates and its mechanismMaoshuai He, Shuang Zhou, Jin Zhang, et al.
The Journal of Biological Chemistry|November 22, 2007
A minimal Tat system from a gram-positive organism: a bifunctional TatA subunit participates in discrete TatAC and TatA complexesJames P Barnett, Robyn T Eijlander, Oscar P Kuipers, et al.
Microbiologyopen|May 15, 2023
Highly efficient export of a disulfide-bonded protein to the periplasm and medium by the Tat pathway using CyDisCo in Escherichia coliKlaudia Arauzo-Aguilera, Mirva J Saaranen, Colin Robinson, et al.
Applied and Environmental Microbiology|May 1, 2012
TatAc, the third TatA subunit of Bacillus subtilis, can form active twin-arginine translocases with the TatCd and TatCy subunitsCarmine G Monteferrante, Jacopo Baglieri, Colin Robinson, et al.
The Journal of Biological Chemistry|December 23, 2011
Structure of TatA paralog, TatE, suggests a structurally homogeneous form of Tat protein translocase that transports folded proteins of differing diameterJacopo Baglieri, Daniel Beck, Nishi Vasisht, et al.
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