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185 related items for PubMed ID: 27993565
1. Acylation of the Bordetella pertussis CyaA-hemolysin: Functional implications for efficient membrane insertion and pore formation. Meetum K, Imtong C, Katzenmeier G, Angsuthanasombat C. Biochim Biophys Acta Biomembr; 2017 Mar; 1859(3):312-318. PubMed ID: 27993565 [Abstract] [Full Text] [Related]
2. Functional Contributions of Positive Charges in the Pore-Lining Helix 3 of the Bordetella pertussis CyaA-Hemolysin to Hemolytic Activity and Ion-Channel Opening. Kurehong C, Kanchanawarin C, Powthongchin B, Prangkio P, Katzenmeier G, Angsuthanasombat C. Toxins (Basel); 2017 Mar 16; 9(3):. PubMed ID: 28300777 [Abstract] [Full Text] [Related]
3. Structural requirement of the hydrophobic region of the Bordetella pertussis CyaA-hemolysin for functional association with CyaC-acyltransferase in toxin acylation. Raksanoh V, Prangkio P, Imtong C, Thamwiriyasati N, Suvarnapunya K, Shank L, Angsuthanasombat C. Biochem Biophys Res Commun; 2018 May 23; 499(4):862-867. PubMed ID: 29625104 [Abstract] [Full Text] [Related]
4. Isolated CyaA-RTX subdomain from Bordetella pertussis: Structural and functional implications for its interaction with target erythrocyte membranes. Pandit RA, Meetum K, Suvarnapunya K, Katzenmeier G, Chaicumpa W, Angsuthanasombat C. Biochem Biophys Res Commun; 2015 Oct 09; 466(1):76-81. PubMed ID: 26325465 [Abstract] [Full Text] [Related]
6. Contributions of the Hydrophobic Helix 2 of the Bordetella pertussis CyaA-hemolysin to Membrane Permeabilization. Prangkio P, Juntapremjit S, Koehler M, Hinterdorfer P, Angsuthanasombat C. Protein Pept Lett; 2018 Apr 30; 25(3):236-243. PubMed ID: 29205108 [Abstract] [Full Text] [Related]
7. Preferential modification of CyaA-hemolysin by CyaC-acyltransferase through the catalytic Ser30-His33 dyad in esterolysis of palmitoyl-donor substrate devoid of acyl carrier proteins. Yentongchai M, Thamwiriyasati N, Imtong C, Li HC, Angsuthanasombat C. Arch Biochem Biophys; 2020 Nov 15; 694():108615. PubMed ID: 33011179 [Abstract] [Full Text] [Related]
8. Zn2+-dependent autocatalytic activity of the Bordetella pertussis CyaA-hemolysin. Raksanoh V, Shank L, Prangkio P, Yentongchai M, Sakdee S, Imtong C, Angsuthanasombat C. Biochem Biophys Res Commun; 2017 Apr 15; 485(4):720-724. PubMed ID: 28238785 [Abstract] [Full Text] [Related]
9. Functional importance of the Gly cluster in transmembrane helix 2 of the Bordetella pertussis CyaA-hemolysin: Implications for toxin oligomerization and pore formation. Juntapremjit S, Thamwiriyasati N, Kurehong C, Prangkio P, Shank L, Powthongchin B, Angsuthanasombat C. Toxicon; 2015 Nov 15; 106():14-9. PubMed ID: 26363293 [Abstract] [Full Text] [Related]
10. Structural Characterization of Humanized Nanobodies with Neutralizing Activity against the Bordetella pertussis CyaA-Hemolysin: Implications for a Potential Epitope of Toxin-Protective Antigen. Malik AA, Imtong C, Sookrung N, Katzenmeier G, Chaicumpa W, Angsuthanasombat C. Toxins (Basel); 2016 Apr 01; 8(4):99. PubMed ID: 27043627 [Abstract] [Full Text] [Related]
11. Acylation of lysine 860 allows tight binding and cytotoxicity of Bordetella adenylate cyclase on CD11b-expressing cells. Masin J, Basler M, Knapp O, El-Azami-El-Idrissi M, Maier E, Konopasek I, Benz R, Leclerc C, Sebo P. Biochemistry; 2005 Sep 27; 44(38):12759-66. PubMed ID: 16171390 [Abstract] [Full Text] [Related]
12. Effects on haemolytic activity of single proline substitutions in the Bordetella pertussis CyaA pore-forming fragment. Powthongchin B, Angsuthanasombat C. Arch Microbiol; 2009 Jan 27; 191(1):1-9. PubMed ID: 18712361 [Abstract] [Full Text] [Related]
13. Differences in purinergic amplification of osmotic cell lysis by the pore-forming RTX toxins Bordetella pertussis CyaA and Actinobacillus pleuropneumoniae ApxIA: the role of pore size. Masin J, Fiser R, Linhartova I, Osicka R, Bumba L, Hewlett EL, Benz R, Sebo P. Infect Immun; 2013 Dec 27; 81(12):4571-82. PubMed ID: 24082076 [Abstract] [Full Text] [Related]
14. High level of soluble expression in Escherichia coli and characterisation of the CyaA pore-forming fragment from a Bordetella pertussis Thai clinical isolate. Powthongchin B, Angsuthanasombat C. Arch Microbiol; 2008 Feb 27; 189(2):169-74. PubMed ID: 17846749 [Abstract] [Full Text] [Related]
15. Segments crucial for membrane translocation and pore-forming activity of Bordetella adenylate cyclase toxin. Basler M, Knapp O, Masin J, Fiser R, Maier E, Benz R, Sebo P, Osicka R. J Biol Chem; 2007 Apr 27; 282(17):12419-29. PubMed ID: 17347146 [Abstract] [Full Text] [Related]
16. Post-translational acylation controls the folding and functions of the CyaA RTX toxin. O'Brien DP, Cannella SE, Voegele A, Raoux-Barbot D, Davi M, Douché T, Matondo M, Brier S, Ladant D, Chenal A. FASEB J; 2019 Sep 27; 33(9):10065-10076. PubMed ID: 31226003 [Abstract] [Full Text] [Related]
17. Negatively charged residues of the segment linking the enzyme and cytolysin moieties restrict the membrane-permeabilizing capacity of adenylate cyclase toxin. Masin J, Osickova A, Sukova A, Fiser R, Halada P, Bumba L, Linhartova I, Osicka R, Sebo P. Sci Rep; 2016 Sep 01; 6():29137. PubMed ID: 27581058 [Abstract] [Full Text] [Related]
18. The conserved tyrosine residue 940 plays a key structural role in membrane interaction of Bordetella adenylate cyclase toxin. Masin J, Roderova J, Osickova A, Novak P, Bumba L, Fiser R, Sebo P, Osicka R. Sci Rep; 2017 Aug 24; 7(1):9330. PubMed ID: 28839199 [Abstract] [Full Text] [Related]
19. Oligomerization is involved in pore formation by Bordetella adenylate cyclase toxin. Vojtova-Vodolanova J, Basler M, Osicka R, Knapp O, Maier E, Cerny J, Benada O, Benz R, Sebo P. FASEB J; 2009 Sep 24; 23(9):2831-43. PubMed ID: 19417082 [Abstract] [Full Text] [Related]
20. Retargeting from the CR3 to the LFA-1 receptor uncovers the adenylyl cyclase enzyme-translocating segment of Bordetella adenylate cyclase toxin. Masin J, Osickova A, Jurnecka D, Klimova N, Khaliq H, Sebo P, Osicka R. J Biol Chem; 2020 Jul 10; 295(28):9349-9365. PubMed ID: 32393579 [Abstract] [Full Text] [Related] Page: [Next] [New Search]