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Original Articles

Tyrosine72 Residue at the Bottom of Rim Domain in LukF Crucial for the Sequential Binding of the Staphylococcal γ-Hemolysin to Human Erythrocytes

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Pages 2744-2747 | Received 15 Aug 2000, Accepted 12 Sep 2000, Published online: 22 May 2014

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Zhao Peng, Nao Shibata, Hideaki Tada & Jun Kaneko. (2018) Cytotoxicity analysis of staphylococcal bi-component β-pore forming toxins using the CHO cells expressing human lymphocyte receptor CCR5. Bioscience, Biotechnology, and Biochemistry 82:12, pages 2094-2097.
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Articles from other publishers (17)

Suman Mishra, Anupam Roy & Somnath Dutta. (2023) Cryo-EM-based structural insights into supramolecular assemblies of γ-hemolysin from S. aureus reveal the pore formation mechanism. Structure 31:6, pages 651-667.e5.
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Costanza Paternoster, Thomas Tarenzi, Raffaello Potestio & Gianluca Lattanzi. (2023) Gamma-Hemolysin Components: Computational Strategies for LukF-Hlg2 Dimer Reconstruction on a Model Membrane. International Journal of Molecular Sciences 24:8, pages 7113.
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Thomas Tarenzi, Gianluca Lattanzi & Raffaello Potestio. (2022) Membrane binding of pore-forming γ-hemolysin components studied at different lipid compositions. Biochimica et Biophysica Acta (BBA) - Biomembranes 1864:9, pages 183970.
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Marilyn T. Vasquez, Ashira Lubkin, Tamara Reyes-Robles, Christopher J. Day, Keenan A. Lacey, Michael P. Jennings & Victor J. Torres. (2020) Identification of a domain critical for Staphylococcus aureus LukED receptor targeting and lysis of erythrocytes. Journal of Biological Chemistry 295:50, pages 17241-17250.
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Jie Liu, Lina Kozhaya, Victor J. Torres, Derya Unutmaz & Min Lu. (2020) Structure-based discovery of a small-molecule inhibitor of methicillin-resistant Staphylococcus aureus virulence. Journal of Biological Chemistry 295:18, pages 5944-5959.
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Zhao Peng, Miyu Takeshita, Nao Shibata, Hideaki Tada, Yoshikazu Tanaka & Jun Kaneko. (2018) Rim domain loops of staphylococcal β-pore forming bi-component toxin S-components recognize target human erythrocytes in a coordinated manner. The Journal of Biochemistry 164:2, pages 93-102.
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Adriana Badarau, Nikolina Trstenjak & Eszter Nagy. 2017. Protein Reviews. Protein Reviews 15 35 .
Tamara Reyes-Robles & Victor J. Torres. 2017. Staphylococcus aureus. Staphylococcus aureus 121 144 .
Adriana Badarau, Harald Rouha, Stefan Malafa, Derek T. Logan, Maria Håkansson, Lukas Stulik, Ivana Dolezilkova, Astrid Teubenbacher, Karin Gross, Barbara Maierhofer, Susanne Weber, Michaela Jägerhofer, David Hoffman & Eszter Nagy. (2015) Structure-Function Analysis of Heterodimer Formation, Oligomerization, and Receptor Binding of the Staphylococcus aureus Bi-component Toxin LukGH. Journal of Biological Chemistry 290:1, pages 142-156.
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Francis AlonzoIIIIII & Victor J. Torres. (2014) The Bicomponent Pore-Forming Leucocidins of Staphylococcus aureus. Microbiology and Molecular Biology Reviews 78:2, pages 199-230.
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Ashley L. DuMont, Pauline Yoong, Xiang Liu, Christopher J. Day, Nicole M. Chumbler, David B. A. James, Francis AlonzoIIIIII, Nadine J. Bode, D. Borden Lacy, Michael P. Jennings & Victor J. Torres. (2014) Identification of a Crucial Residue Required for Staphylococcus aureus LukAB Cytotoxicity and Receptor Recognition. Infection and Immunity 82:3, pages 1268-1276.
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. (2012) . Nihon Shoni Arerugi Gakkaishi. The Japanese Journal of Pediatric Allergy and Clinical Immunology 26:1, pages 158-166.
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Noriko TOMITA, Yoshiyuki KAMIO & Makoto OHTA. (2012) Membrane-Damaging Activity Against Various Phospholipid Liposomes by ^|^gamma;-hemolysin, Staphylococcal Two-Component Pore-Forming Cytolysin. Journal of Biomechanical Science and Engineering 7:3, pages 292-304.
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Keitaro YamashitaYuka KawaiYoshikazu TanakaNagisa HiranoJun KanekoNoriko Tomita, Makoto Ohta, Yoshiyuki Kamio, Min YaoIsao Tanaka. (2011) Crystal structure of the octameric pore of staphylococcal γ-hemolysin reveals the β-barrel pore formation mechanism by two components. Proceedings of the National Academy of Sciences 108:42, pages 17314-17319.
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Takashige Kashimoto, Shunji Ueno, Takeshi Koga, Shinji Fukudome, Hayato Ehara, Mayumi Komai, Hiroyuki Sugiyama & Nobuyuki Susa. (2010) The Aromatic Ring of Phenylalanine 334 Is Essential for Oligomerization of Vibrio vulnificus Hemolysin . Journal of Bacteriology 192:2, pages 568-574.
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Florent Meyer, Raymonde Girardot, Yves Piémont, Gilles Prévost & Didier A. Colin. (2009) Analysis of the Specificity of Panton-Valentine Leucocidin and Gamma-Hemolysin F Component Binding. Infection and Immunity 77:1, pages 266-273.
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Vananh T. Nguyen, Hideo Higuchi & Yoshiyuki Kamio. (2002) Controlling pore assembly of staphylococcal γ‐haemolysin by low temperature and by disulphide bond formation in double‐cysteine LukF mutants. Molecular Microbiology 45:6, pages 1485-1498.
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