Defensins and Viral Infection: Dispelling Common Misconceptions
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Vyšlo v časopise:
Defensins and Viral Infection: Dispelling Common Misconceptions. PLoS Pathog 10(7): e32767. doi:10.1371/journal.ppat.1004186
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Pearls
prolekare.web.journal.doi_sk:
https://doi.org/10.1371/journal.ppat.1004186
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Zdroje
1. SelstedME, OuelletteAJ (2005) Mammalian defensins in the antimicrobial immune response. Nat Immunol 6: 551–557 doi:10.1038/ni1206
2. GanzT (2003) Defensins: antimicrobial peptides of innate immunity. Nat Rev Immunol 3: 710–720.
3. ZasloffM (2002) Antimicrobial peptides of multicellular organisms. Nature 415: 389–395 doi:10.1038/415389a
4. SmithJG, NemerowGR (2008) Mechanism of Adenovirus Neutralization by Human α-Defensins. Cell Host Microbe 3: 11–19 doi:10.1016/j.chom.2007.12.001
5. Quiñones-MateuME, LedermanMM, FengZ, ChakrabortyB, WeberJ, et al. (2003) Human epithelial beta-defensins 2 and 3 inhibit HIV-1 replication. AIDS 17: F39–F48 doi:10.1097/01.aids.0000096878.73209.4f
6. WilsonSS, WiensME, SmithJG (2013) Antiviral mechanisms of human defensins. J Mol Biol 425: 4965–4980 doi:10.1016/j.jmb.2013.09.038
7. GounderAP, WiensME, WilsonSS, LuW, SmithJG (2012) Critical Determinants of Human -Defensin 5 Activity against Non-enveloped Viruses. J Biol Chem 287: 24554–24562 doi:10.1074/jbc.M112.354068
8. PazgierM, WeiG, EricksenB, JungG, WuZ, et al. (2012) Sometimes it takes two to tango: contributions of dimerization to functions of human α-defensin HNP1 peptide. J Biol Chem 287: 8944–8953 doi:10.1074/jbc.M111.332205
9. ZouG, de LeeuwE, LiC, PazgierM, LiC, et al. (2007) Toward understanding the cationicity of defensins. Arg and Lys versus their noncoded analogs. J Biol Chem 282: 19653–19665 doi:10.1074/jbc.M611003200
10. DaherKA, SelstedME, LehrerRI (1986) Direct inactivation of viruses by human granulocyte defensins. Journal Virol 60: 1068–1074.
11. KotaS, SabbahA, ChangTH, HarnackR, XiangY, et al. (2008) Role of human beta-defensin-2 during tumor necrosis factor-alpha/NF-kappaB-mediated innate antiviral response against human respiratory syncytial virus. J Biol Chem 283: 22417–22429 doi:10.1074/jbc.M710415200
12. FujiiG, SelstedME, EisenbergD (1993) Defensins promote fusion and lysis of negatively charged membranes. Protein Sci 2: 1301–1312 doi:10.1002/pro.5560020813
13. Shah R, Chang TL (2012) Defensins in Viral Infection. Rajasekaran K, Cary JW, Jaynes JM, Montesinos E, editors. Washington, D.C.: American Chemical Society. 35 p. doi:10.1021/bk-2012-1095.ch007
14. SmithJG, SilvestryM, LindertS, LuW, NemerowGR, et al. (2010) Insight into the mechanisms of adenovirus capsid disassembly from studies of defensin neutralization. PLoS Pathog 6: e1000959 doi:10.1371/journal.ppat.1000959
15. KlotmanME, RapistaA, TeleshovaN, MicsenyiA, JarvisGA, et al. (2008) Neisseria gonorrhoeae-induced human defensins 5 and 6 increase HIV infectivity: role in enhanced transmission. J Immunol 180: 6176–6185.
16. RapistaA, DingJ, BenitoB, LoY-T, NeiditchMB, et al. (2011) Human defensins 5 and 6 enhance HIV-1 infectivity through promoting HIV attachment. Retrovirology 8: 45 doi:10.1186/1742-4690-8-45
17. BowdishDME, DavidsonDJ, HancockREW (2006) Immunomodulatory properties of defensins and cathelicidins. Curr Top Microbiol Immunol 306: 27–66.
18. LeikinaE, Delanoe-AyariH, MelikovK, ChoM-S, ChenA, et al. (2005) Carbohydrate-binding molecules inhibit viral fusion and entry by crosslinking membrane glycoproteins. Nat Immunol 6: 995–1001 doi:10.1038/ni1248
19. RyanLK, DaiJ, YinZ, MegjugoracN, UhlhornV, et al. (2011) Modulation of human beta-defensin-1 (hBD-1) in plasmacytoid dendritic cells (PDC), monocytes, and epithelial cells by influenza virus, Herpes simplex virus, and Sendai virus and its possible role in innate immunity. J Leukoc Biol 90: 343–356 doi:10.1189/jlb.0209079
20. LillardJW, BoyakaPN, ChertovO, OppenheimJJ, McGheeJR (1999) Mechanisms for induction of acquired host immunity by neutrophil peptide defensins. Proc Natl Acad Sci U S A 96: 651–656 doi:10.1073/pnas.96.2.651
21. SalzmanNH, HungK, HaribhaiD, ChuH, Karlsson-SjöbergJ, et al. (2010) Enteric defensins are essential regulators of intestinal microbial ecology. Nat Immunol 11: 76–83 doi:10.1038/ni.1825
22. DingJ, TaskerC, ValereK, SihvonenT, Descalzi-MontoyaDB, et al. (2013) Anti-HIV Activity of Human Defensin 5 in Primary CD4+ T Cells under Serum-Deprived Conditions Is a Consequence of Defensin-Mediated Cytotoxicity. PLoS ONE 8: e76038 doi:10.1371/journal.pone.0076038
23. BevinsCL, SalzmanNH (2011) Paneth cells, antimicrobial peptides and maintenance of intestinal homeostasis. Nat Rev Microbiol 9: 356–368 doi:10.1038/nrmicro2546
Štítky
Hygiena a epidemiológia Infekčné lekárstvo LaboratóriumČlánok vyšiel v časopise
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