We extracted a granule-rich sediment from normal human neutrophils and subjected it to chromatographic, electrophoretic, and functional analysis. The extract contained three small (molecular weight less than 3,500) antibiotic peptides that were named human neutrophil peptide (HNP)-1, HNP-2, and HNP-3, and which will be referred to as "defensins." HNP 1-3, a mixture of the three defensins, killed Staphylococcus aureus, Pseudomonas aeruginosa, and Escherichia coli effectively in vitro when tested in 10 mM phosphate buffer containing certain nutrients, but it had little or no bactericidal activity in nutrient-free buffer. In contrast, the nutrient-free buffer supported a high degree of activity by HNP 1-3 against Cryptococcus neoformans. In addition to its antibacterial and antifungal properties, HNP 1-3 directly inactivated herpes simplex virus, Type 1. Two of the individual purified defensins, HNP-1 and HNP-2, were as microbicidal as the mixture HNP 1-3. HNP-3 was less active than the other defensins against most but not all of the microbes tested. Immunoperoxidase stains revealed HNP 1-3 to have a granular localization in the neutrophil's cytoplasm by light microscopy. Frozen thin section immunogold transmission electron microscopy showed HNP 1-3 to be localized in azurophil granules. These studies define a broad-spectrum antimicrobial system in human neutrophils. The defensin system may operate in conjunction with or independently from oxygen-dependent microbicidal processes to enable human neutrophils to inactivate and destroy potential pathogens.
T Ganz, M E Selsted, D Szklarek, S S Harwig, K Daher, D F Bainton, R I Lehrer
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The Journal of Pathology | 2005 |
Evolution of caprine and ovine β-defensin genes
K Luenser, J Fickel, A Ludwig |
Immunogenetics | 2005 |
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R Tamayo, AM Prouty, JS Gunn |
FEMS Immunology & Medical Microbiology | 2005 |
Paneth cell α-defensins: peptide mediators of innate immunity in the small intestine
AJ Ouellette |
Springer Seminars in Immunopathology | 2005 |
Roles of Group IIA Phospholipase A2 and Complement in Killing of Bacteria by Acute Phase Serum
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Salivary antimicrobial peptide expression and dental caries experience in children
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Antimicrobial agents and chemotherapy | 2005 |
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C Kim, N Gajendran, HW Mittrücker, M Weiwad, YH Song, R Hurwitz, M Wilmanns, G Fischer, SH Kaufmann |
Proceedings of the National Academy of Sciences | 2005 |
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JJ Schneider, A Unholzer, M Schaller, M Schäfer-Korting, HC Korting |
Journal of Molecular Medicine | 2005 |
alpha-Helical domain is essential for antimicrobial activity of high mobility group nucleosomal binding domain 2 (HMGN2)1
Y FENG, N HUANG, Q WU, L BAO, B WANG |
Acta Pharmacologica Sinica | 2005 |
Effect of Chain Length of Cationic Model Peptides on Antibacterial Activity
T Niidome, N Matsuyama, M Kunihara, T Hatakeyama, H Aoyagi |
Bulletin of the Chemical Society of Japan | 2005 |
Antimicrobial peptides: New candidates in the fight against bacterial infections
O Toke |
Biopolymers | 2005 |
Susceptibility to infection in patients with neutropenia: the role of the innate immune system
OW Neth, M Bajaj-Elliott, MW Turner, NJ Klein |
British Journal of Haematology | 2005 |
Comprehensive sequence analysis of horseshoe crab cuticular proteins and their involvement in transglutaminase-dependent cross-linking
M Iijima, T Hashimoto, Y Matsuda, T Nagai, Y Yamano, T Ichi, T Osaki, S Kawabata |
FEBS Journal | 2005 |
Kenojeinin I, antimicrobial peptide isolated from the skin of the fermented skate, Raja kenojei
SH Cho, BD Lee, H An, JB Eun |
Peptides | 2005 |
Effects of two hemolymph proteins on humoral defense reactions in the wax moth, Galleria mellonella
SY Park, CH Kim, WH Jeong, JH Lee, SJ Seo, YS Han, IH Lee |
Developmental & Comparative Immunology | 2005 |
Innate immune defence in the human gastrointestinal tract
R Dommett, M Zilbauer, JT George, M Bajaj-Elliott |
Molecular Immunology | 2005 |
Antimicrobial peptides
A Izadpanah, RL Gallo |
Journal of the American Academy of Dermatology | 2005 |
Mucosal Immunology
WR Brown |
Mucosal Immunology | 2005 |
Human neutrophil α-defensin 4 inhibits HIV-1 infection in vitro
Z Wu, F Cocchi, D Gentles, B Ericksen, J Lubkowski, A DeVico, RI Lehrer, W Lu |
FEBS Letters | 2005 |
Antibacterial activity and specificity of the six human {alpha}-defensins
B Ericksen, Z Wu, W Lu, RI Lehrer |
Antimicrobial agents and chemotherapy | 2005 |
Les mécanismes de résistance à la transmission sexuelle du VIH-1
A Eberhard, B Ponceau, F Biron, B Verrier |
Médecine et Maladies Infectieuses | 2005 |
Oral Diagnostics for the Geriatric Populations: Current Status and Future Prospects
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Dental clinics of North America | 2005 |
Susceptibilities of periodontopathogenic and cariogenic bacteria to antibacterial peptides, β-defensins and LL37, produced by human epithelial cells
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Prodefensins are matrix proteins of specific granules in human neutrophils
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HMGN2: a novel antimicrobial effector molecule of human mononuclear leukocytes?
Y Feng, N Huang, Q Wu, B Wang |
Journal of leukocyte biology | 2005 |
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The Journal of biological chemistry | 2005 |
Targeting Breast and Prostate Cancers Through Their Hormone Receptors1
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Biology of reproduction | 2005 |
Leukotriene B 4 Protects Latently Infected Mice against Murine Cytomegalovirus Reactivation following Allogeneic Transplantation
J Gosselin, P Borgeat, L Flamand |
Journal of immunology (Baltimore, Md. : 1950) | 2005 |
Pathogenicity of Influenza Viruses with Genes from the 1918 Pandemic Virus: Functional Roles of Alveolar Macrophages and Neutrophils in Limiting Virus Replication and Mortality in Mice
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Journal of virology | 2005 |
Colonization of Mucosal Surfaces
JP Nataro, PS Cohen, HL Mobley, JN Weiser |
2005 | |
Induction of Keratinocyte Migration via Transactivation of the Epidermal Growth Factor Receptor by the Antimicrobial Peptide LL-37
S Tokumaru, K Sayama, Y Shirakata, H Komatsuzawa, K Ouhara, Y Hanakawa, Y Yahata, X Dai, M Tohyama, H Nagai, L Yang, S Higashiyama, A Yoshimura, M Sugai, K Hashimoto |
Journal of immunology (Baltimore, Md. : 1950) | 2005 |