Literature DB >> 12168695

Structure and activity of D-Pro14 melittin.

Dean R Hewish1, Kevin J Barnham, Jerome A Werkmeister, Alan Kirkpatrick, Nicola Bartone, Su Ting Liu, Raymond S Norton, Cyril Curtain, Donald E Rivetta.   

Abstract

D-Pro14 melittin was synthesized to investigate the effect of increasing the angle of the bend in the hinge region between the helical segments of the molecule. Structural analysis by nuclear magnetic resonance indicated that, in methanol, the molecule consisted of two helices separated at Pro14, as in melittin. However, the two helices in D-Pro14 melittin were laterally displaced relative to each other by approximately 7 A, and in addition, there was a small rotation of the carboxyl-terminal helix relative to the amino-terminal helix around the long axis of the molecule. The peptide had less than 5% of the cytolytic activity of melittin. Modification of Arg22 with the 2,2,5,7,8-pentamethyl-chroman-6-sulphonyl (pmc) group restored hemolytic activity to close to that of unmodified melittin. Replacement of Arg22 with Phe was less effective in restoring hemolytic activity. Electron-paramagnetic resonance studies suggest that there is a positive correlation between hemolytic activity of the peptides and interaction with phospholipid bilayers.

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Year:  2002        PMID: 12168695     DOI: 10.1023/a:1019741202601

Source DB:  PubMed          Journal:  J Protein Chem        ISSN: 0277-8033


  8 in total

1.  Real-time structural investigation of a lipid bilayer during its interaction with melittin using sum frequency generation vibrational spectroscopy.

Authors:  Xiaoyun Chen; Jie Wang; Cornelius B Kristalyn; Zhan Chen
Journal:  Biophys J       Date:  2007-05-04       Impact factor: 4.033

2.  Investigation of the structure-activity relationship in ponericin L1 from Neoponera goeldii.

Authors:  Alexandria S Senetra; Matthew R Necelis; Gregory A Caputo
Journal:  Pept Sci (Hoboken)       Date:  2020-03-31

Review 3.  Applications and evolution of melittin, the quintessential membrane active peptide.

Authors:  Shantanu Guha; Ryan P Ferrie; Jenisha Ghimire; Cristina R Ventura; Eric Wu; Leisheng Sun; Sarah Y Kim; Gregory R Wiedman; Kalina Hristova; Wimley C Wimley
Journal:  Biochem Pharmacol       Date:  2021-09-17       Impact factor: 6.100

4.  Helical Structure of Recombinant Melittin.

Authors:  Lisa S Ramirez; Jayanti Pande; Alexander Shekhtman
Journal:  J Phys Chem B       Date:  2019-01-04       Impact factor: 3.466

Review 5.  Membrane Active Peptides and Their Biophysical Characterization.

Authors:  Fatma Gizem Avci; Berna Sariyar Akbulut; Elif Ozkirimli
Journal:  Biomolecules       Date:  2018-08-22

Review 6.  Structure of allergens and structure based epitope predictions.

Authors:  Fabio Dall'antonia; Tea Pavkov-Keller; Klaus Zangger; Walter Keller
Journal:  Methods       Date:  2013-07-23       Impact factor: 3.608

Review 7.  Melittin-Based Nano-Delivery Systems for Cancer Therapy.

Authors:  Anqi Wang; Yuan Zheng; Wanxin Zhu; Liuxin Yang; Yang Yang; Jinliang Peng
Journal:  Biomolecules       Date:  2022-01-12

8.  Molecular Basis of Selectivity and Activity for the Antimicrobial Peptide Lynronne-1 Informs Rational Design of Peptide with Improved Activity.

Authors:  Eleanor S Jayawant; Jack Hutchinson; Dorota Gašparíková; Christine Lockey; Lidón Pruñonosa Lara; Ciaran Guy; Rhiannon L Brooks; Ann M Dixon
Journal:  Chembiochem       Date:  2021-06-08       Impact factor: 3.164

  8 in total

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