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Cecropin A - magainin 2 hybrid peptides having potent antimicrobial activity with low hemolytic effect. , Shin SY, Kang JH, Lee MK, Kim SY, Kim Y, Hahm KS., Biochem Mol Biol Int. May 1, 1998; 44 (6): 1119-26.
Magainin 2 amide interaction with lipid membranes: calorimetric detection of peptide binding and pore formation. , Wenk MR, Seelig J., Biochemistry. March 17, 1998; 37 (11): 3909-16.
Mechanism of action of the antimicrobial peptide buforin II: buforin II kills microorganisms by penetrating the cell membrane and inhibiting cellular functions. , Park CB, Kim HS , Kim SC., Biochem Biophys Res Commun. March 6, 1998; 244 (1): 253-7.
Killing of Fusobacterium nucleatum, Porphyromonas gingivalis and Prevotella intermedia by protegrins. , Miyasaki KT, Iofel R, Oren A, Huynh T, Lehrer RI., J Periodontal Res. February 1, 1998; 33 (2): 91-8.
Release of miniantibodies from E. coli cells into the supernatant at low and high cell densities. , Mörbe JL, Riesenberg D., Microbiol Res. December 1, 1997; 152 (4): 385-94.
Modulation of membrane activity of amphipathic, antibacterial peptides by slight modifications of the hydrophobic moment. , Wieprecht T, Dathe M, Krause E, Beyermann M, Maloy WL, MacDonald DL, Bienert M., FEBS Lett. November 3, 1997; 417 (1): 135-40.
Antibacterial activity of (+/-) 6-benzyl-1-(3-carboxypropyl) indane; a possible way to identify leading novel anti-H. pylori agents. , Numao N, Hirota Y, Iwahori A, Sasatsu M, Kondo I, Takao K, Kobayashi S., Biol Pharm Bull. November 1, 1997; 20 (11): 1204-7.
Structure-antitumor and hemolytic activity relationships of synthetic peptides derived from cecropin A- magainin 2 and cecropin A-melittin hybrid peptides. , Shin SY, Lee MK, Kim KL, Hahm KS., J Pept Res. October 1, 1997; 50 (4): 279-85.
A novel antimicrobial peptide from the loach, Misgurnus anguillicaudatus. , Park CB, Lee JH , Lee JH , Park IY, Kim MS , Kim SC., FEBS Lett. July 14, 1997; 411 (2-3): 173-8.
Interactions of an antimicrobial peptide, magainin 2, with outer and inner membranes of Gram-negative bacteria. , Matsuzaki K, Sugishita K, Harada M, Fujii N, Miyajima K., Biochim Biophys Acta. July 5, 1997; 1327 (1): 119-30.
On the antibacterial activity of normal and reversed magainin 2 analogs against Helicobacter pylori. , Iwahori A, Hirota Y, Sampe R, Miyano S, Takahashi N, Sasatsu M, Kondo I, Numao N., Biol Pharm Bull. July 1, 1997; 20 (7): 805-8.
Antibacterial activity of two alkylamines integrated an indane scaffold: mimicry of a complementary unit on magainin 2. , Numao N, Iwahori A, Hirota Y, Sasatsu M, Kondo I, Onimura K, Sampe R, Yamane S, Itoh S, Katoh T, Kobayashi S., Biol Pharm Bull. July 1, 1997; 20 (7): 800-4.
Peptide hydrophobicity controls the activity and selectivity of magainin 2 amide in interaction with membranes. , Wieprecht T, Dathe M, Beyermann M, Krause E, Maloy WL, MacDonald DL, Bienert M., Biochemistry. May 20, 1997; 36 (20): 6124-32.
[Molecular action mechanisms and membrane recognition of membrane-acting antimicrobial peptides]. , Matsuzaki K., Yakugaku Zasshi. May 1, 1997; 117 (5): 253-64.
The tendency of magainin to associate upon binding to phospholipid bilayers. , Schümann M, Dathe M, Wieprecht T, Beyermann M, Bienert M., Biochemistry. April 8, 1997; 36 (14): 4345-51.
Structure and functions of channel-forming peptides: magainins, cecropins, melittin and alamethicin. , Bechinger B., J Membr Biol. April 1, 1997; 156 (3): 197-211.
Synthesis of reversed magainin 2 analogs enhanced antibacterial activity. , Iwahori A, Hirota Y, Sampe R, Miyano S, Numao N., Biol Pharm Bull. March 1, 1997; 20 (3): 267-70.
Modulation of magainin 2-lipid bilayer interactions by peptide charge. , Matsuzaki K, Nakamura A, Murase O, Sugishita K, Fujii N, Miyajima K., Biochemistry. February 25, 1997; 36 (8): 2104-11.
Two-dimensional 1H NMR experiments show that the 23-residue magainin antibiotic peptide is an alpha-helix in dodecylphosphocholine micelles, sodium dodecylsulfate micelles, and trifluoroethanol/water solution. , Gesell J, Zasloff M, Opella SJ., J Biomol NMR. February 1, 1997; 9 (2): 127-35.
Membrane pores induced by magainin. , Ludtke SJ, He K, Heller WT, Harroun TA, Yang L, Huang HW., Biochemistry. October 29, 1996; 35 (43): 13723-8.
Secondary structure and location of a magainin analogue in synthetic phospholipid bilayers. , Hirsh DJ, Hammer J, Maloy WL, Blazyk J, Schaefer J., Biochemistry. October 1, 1996; 35 (39): 12733-41.
An antimicrobial peptide, magainin 2, induced rapid flip-flop of phospholipids coupled with pore formation and peptide translocation. , Matsuzaki K, Murase O, Fujii N, Miyajima K., Biochemistry. September 3, 1996; 35 (35): 11361-8.
Conformational and functional study of magainin 2 in model membrane environments using the new approach of systematic double-D-amino acid replacement. , Wieprecht T, Dathe M, Schümann M, Krause E, Beyermann M, Bienert M., Biochemistry. August 20, 1996; 35 (33): 10844-53.
Differentiation-associated antimicrobial functions in human colon adenocarcinoma cell lines. , Bernet-Camard MF, Coconnier MH, Hudault S, Servin AL., Exp Cell Res. July 10, 1996; 226 (1): 80-9.
The effects of magainin 2, cecropin, mastoparan and melittin on Brucella abortus. , Halling SM., Vet Microbiol. July 1, 1996; 51 (1-2): 187-92.
Foreign gene expression in Hansenula polymorpha. A system for the synthesis of small functional peptides. , Faber KN, Westra S, Waterham HR, Keizer-Gunnink I, Harder W, Veenhuis GA., Appl Microbiol Biotechnol. March 1, 1996; 45 (1-2): 72-9.
A novel antimicrobial peptide from Bufo bufo gargarizans. , Park CB, Kim MS , Kim SC., Biochem Biophys Res Commun. January 5, 1996; 218 (1): 408-13.
Membrane thinning caused by magainin 2. , Ludtke S, He K, Huang H., Biochemistry. December 26, 1995; 34 (51): 16764-9.
Magainin-induced cytotoxicity in eukaryotic cells: kinetics, dose-response and channel characteristics. , Haimovich B, Tanaka JC., Biochim Biophys Acta. December 13, 1995; 1240 (2): 149-58.
Influence of alpha-helicity, amphipathicity and D-amino acid incorporation on the peptide-induced mast cell activation. , Cross LJ, Ennis M, Krause E, Dathe M, Lorenz D, Krause G, Beyermann M, Bienert M., Eur J Pharmacol. November 30, 1995; 291 (3): 291-300.
Kinetics of pore formation by an antimicrobial peptide, magainin 2, in phospholipid bilayers. , Matsuzaki K, Murase O, Miyajima K., Biochemistry. October 3, 1995; 34 (39): 12553-9.
Lack of magainin-like activity in human cervical tissue. , Hansen KA, Kilianski J, Newhall K, Wright G, Stock RJ, Archer D., Am J Reprod Immunol. June 1, 1995; 33 (6): 481-4.
Comparison of the effects of hydrophobicity, amphiphilicity, and alpha-helicity on the activities of antimicrobial peptides. , Pathak N, Salas-Auvert R, Ruche G, Janna MH, McCarthy D, Harrison RG., Proteins. June 1, 1995; 22 (2): 182-6.
Translocation of a channel-forming antimicrobial peptide, magainin 2, across lipid bilayers by forming a pore. , Matsuzaki K, Murase O, Fujii N, Miyajima K., Biochemistry. May 16, 1995; 34 (19): 6521-6.
Molecular basis for prokaryotic specificity of magainin-induced lysis. , Tytler EM, Anantharamaiah GM, Walker DE, Mishra VK, Palgunachari MN, Segrest JP., Biochemistry. April 4, 1995; 34 (13): 4393-401.
Molecular basis for membrane selectivity of an antimicrobial peptide, magainin 2. , Matsuzaki K, Sugishita K, Fujii N, Miyajima K., Biochemistry. March 14, 1995; 34 (10): 3423-9.
Functional synergism of the magainins PGLa and magainin-2 in Escherichia coli, tumor cells and liposomes. , Westerhoff HV, Zasloff M, Rosner JL, Hendler RW, De Waal A, Vaz Gomes A, Jongsma PM, Riethorst A, Juretić D., Eur J Biochem. March 1, 1995; 228 (2): 257-64.
The vertebrate peptide antibiotics dermaseptins have overlapping structural features but target specific microorganisms. , Mor A, Hani K, Nicolas P., J Biol Chem. December 16, 1994; 269 (50): 31635-41.
In vitro activity of the antimicrobial peptide magainin 1 against Bonamia ostreae, the intrahemocytic parasite of the flat oyster Ostrea edulis. , Morvan A, Bachère E, Da Silva PP, Pimenta P, Mialhe E., Mol Mar Biol Biotechnol. December 1, 1994; 3 (6): 327-33.
Antibacterial peptides and mitochondrial presequences affect mitochondrial coupling, respiration and protein import. , Hugosson M, Andreu D, Boman HG, Glaser E., Eur J Biochem. August 1, 1994; 223 (3): 1027-33.
A Paneth cell analogue in Xenopus small intestine expresses antimicrobial peptide genes: conservation of an intestinal host-defense system. , Reilly DS, Tomassini N, Bevins CL, Zasloff M., J Histochem Cytochem. June 1, 1994; 42 (6): 697-704.
Activity of two synthetic amphiphilic peptides and magainin-2 against herpes simplex virus types 1 and 2. , Aboudy Y, Mendelson E, Shalit I, Bessalle R, Fridkin M., Int J Pept Protein Res. June 1, 1994; 43 (6): 573-82.
Magainin oligomers reversibly dissipate delta microH+ in cytochrome oxidase liposomes. , Juretić D, Hendler RW, Kamp F, Caughey WS, Zasloff M, Westerhoff HV., Biochemistry. April 19, 1994; 33 (15): 4562-70.
Orientational and aggregational states of magainin 2 in phospholipid bilayers. , Matsuzaki K, Murase O, Tokuda H, Funakoshi S, Fujii N, Miyajima K., Biochemistry. March 22, 1994; 33 (11): 3342-9.
Expression of magainin antimicrobial peptide genes in the developing granular glands of Xenopus skin and induction by thyroid hormone. , Reilly DS, Tomassini N, Zasloff M., Dev Biol. March 1, 1994; 162 (1): 123-33.
Anion pores from magainins and related defensive peptides. , Duclohier H., Toxicology. February 28, 1994; 87 (1-3): 175-88.
Cooperative membrane insertion of magainin correlated with its cytolytic activity. , Ludtke SJ, He K, Wu Y, Huang HW., Biochim Biophys Acta. February 23, 1994; 1190 (1): 181-4.
Purification of antimicrobial peptides from an extract of the skin of Xenopus laevis using heparin-affinity HPLC: characterization by ion-spray mass spectrometry. , James S, Gibbs BF, Toney K, Bennett HP., Anal Biochem. February 15, 1994; 217 (1): 84-90.
Potential therapeutic applications of magainins and other antimicrobial agents of animal origin. , Jacob L, Zasloff M., Ciba Found Symp. January 1, 1994; 186 197-216; discussion 216-23.
Structure and orientation of the antibiotic peptide magainin in membranes by solid-state nuclear magnetic resonance spectroscopy. , Bechinger B, Zasloff M, Opella SJ., Protein Sci. December 1, 1993; 2 (12): 2077-84.