Antimicrobial peptides

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</StructureSection>
</StructureSection>
== References ==
== References ==
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1- '''J. Gesella., M. Zasloffb and S. J. Opellaa'''., Two-dimensional H NMR experiments show that the 23-residue magainin antibiotic peptide is an α-helix in dodecylphosphocholine micelles, sodium dodecylsulfate micelles, and trifluoroethanol/water solution. ''Journal of Biomolecular NMR'', 1997. 9: 127–135
 +
 +
2- '''Z. Hayouka., D. E. Mortenson., D. F. Kreitler., B. Weisblum., K. T. Forest,
 +
and S. H. Gellman'''., Evidence for Phenylalanine Zipper-Mediated Dimerization in the
 +
X‑ray Crystal Structure of a Magainin 2 Analogue. ''J. Am. Chem. Soc'', 2013. 135: 15738−15741.
 +
 +
3- '''T. Nakatsuji., & R. L. Gallo., Antimicrobial Peptides: Old Molecules with New Ideas'''. ''Journal of Investigative Dermatology'', 2012. 132: 887-895.
 +
 +
4- '''W. C. Wimley'''., Describing the Mechanism of Antimicrobial
 +
Peptide Action with the Interfacial Activity Model. ''ACS CHEMICAL BIOLOGY'', 2010. 10: 905-917.
 +
 +
5- '''W. C. Wimley., K. Hristova'''., Antimicrobial Peptides: Successes, Challenges and Unanswered
 +
Questions. ''Membrane Biol'' ,2011. 239: 27–34.
 +
 +
 +
<references/>
<references/>

Revision as of 11:55, 31 January 2015

Antimicrobial peptides

PDB ID 3rec

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References

1- J. Gesella., M. Zasloffb and S. J. Opellaa., Two-dimensional H NMR experiments show that the 23-residue magainin antibiotic peptide is an α-helix in dodecylphosphocholine micelles, sodium dodecylsulfate micelles, and trifluoroethanol/water solution. Journal of Biomolecular NMR, 1997. 9: 127–135

2- Z. Hayouka., D. E. Mortenson., D. F. Kreitler., B. Weisblum., K. T. Forest, and S. H. Gellman., Evidence for Phenylalanine Zipper-Mediated Dimerization in the X‑ray Crystal Structure of a Magainin 2 Analogue. J. Am. Chem. Soc, 2013. 135: 15738−15741.

3- T. Nakatsuji., & R. L. Gallo., Antimicrobial Peptides: Old Molecules with New Ideas. Journal of Investigative Dermatology, 2012. 132: 887-895.

4- W. C. Wimley., Describing the Mechanism of Antimicrobial Peptide Action with the Interfacial Activity Model. ACS CHEMICAL BIOLOGY, 2010. 10: 905-917.

5- W. C. Wimley., K. Hristova., Antimicrobial Peptides: Successes, Challenges and Unanswered Questions. Membrane Biol ,2011. 239: 27–34.



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