MAHLA, Ranjeet Singh; REDDY, Madhava C.; PRASAD, D. Vijaya Raghava. Sweeten PAMPs: Role of Sugar Complexed PAMPs in Innate Immunity and Vaccine Biology. Frontiers in Immunology, 2013-09-02, roč. 4, s. 248. PMID 24032031
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IRVING, Aaron T.; MIMURO, Hitomi; KUFER, Thomas A.. The Immune Receptor NOD1 and Kinase RIP2 Interact with Bacterial Peptidoglycan on Early Endosomes to Promote Autophagy and Inflammatory Signaling. Cell Host & Microbe, 2014-05, roč. 15, čís. 5, s. 623–635. Dostupné online [cit. 2019-05-10]. ISSN1931-3128. DOI: 10.1016/j.chom.2014.04.001.
MARINIS, Jill M.; HOMER, Craig R.; MCDONALD, Christine. A Novel Motif in the Crohn's Disease Susceptibility Protein, NOD2, Allows TRAF4 to Down-regulate Innate Immune Responses. Journal of Biological Chemistry, 2010-11-19, roč. 286, čís. 3, s. 1938–1950. Dostupné online [cit. 2019-05-10]. ISSN0021-9258. DOI: 10.1074/jbc.m110.189308.
CANTÓ, Elisabet; RICART, Elena; BUSQUETS, David. Influence of a nucleotide oligomerization domain 1 (NOD1) polymorphism and NOD2 mutant alleles on Crohn's disease phenotype. World Journal of Gastroenterology, 2007-11-07, roč. 13, čís. 41, s. 5446–5453. PMID 17907287
PMCID: PMC4171278. Dostupné online [cit. 2019-05-10]. ISSN1007-9327. DOI: 10.3748/wjg.v13.i41.5446.
OKAFUJI, Ikuo; NISHIKOMORI, Ryuta; KANAZAWA, Nobuo. Role of the NOD2 genotype in the clinical phenotype of Blau syndrome and early-onset sarcoidosis. Arthritis and Rheumatism, 2009-1, roč. 60, čís. 1, s. 242–250. PMID 19116920. Dostupné online [cit. 2019-05-10]. ISSN0004-3591. DOI: 10.1002/art.24134.
PASHENKOV, Mikhail V.; DAGIL, Yulia A.; PINEGIN, Boris V.. NOD1 and NOD2: Molecular targets in prevention and treatment of infectious diseases. International Immunopharmacology, 2018-01, roč. 54, s. 385–400. Dostupné online [cit. 2019-05-10]. ISSN1567-5769. DOI: 10.1016/j.intimp.2017.11.036.
SHARMA, Deepika; KANNEGANTI, Thirumala-Devi. The cell biology of inflammasomes: Mechanisms of inflammasome activation and regulation. The Journal of Cell Biology, 2016-06-20, roč. 213, čís. 6, s. 617–629. Dostupné online [cit. 2019-05-10]. ISSN0021-9525. DOI: 10.1083/jcb.201602089.
YIN, Xi; HAN, Gen-Cheng; JIANG, Xing-Wei. Increased Expression of the NOD-like Receptor Family, Pyrin Domain Containing 3 Inflammasome in Dermatomyositis and Polymyositis is a Potential Contributor to Their Pathogenesis. Chinese Medical Journal, 2016-05, roč. 129, čís. 9, s. 1047–1052. Dostupné online [cit. 2019-05-10]. ISSN0366-6999. DOI: 10.4103/0366-6999.180528.
DAVIS, Beckley K.; WEN, Haitao; TING, Jenny P.-Y.. The Inflammasome NLRs in Immunity, Inflammation, and Associated Diseases. Annual Review of Immunology, 2011-04-23, roč. 29, čís. 1, s. 707–735. Dostupné online [cit. 2019-05-10]. ISSN0732-0582. DOI: 10.1146/annurev-immunol-031210-101405.
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ncbi.nlm.nih.gov
MAHLA, Ranjeet Singh; REDDY, Madhava C.; PRASAD, D. Vijaya Raghava. Sweeten PAMPs: Role of Sugar Complexed PAMPs in Innate Immunity and Vaccine Biology. Frontiers in Immunology, 2013-09-02, roč. 4, s. 248. PMID 24032031
PMCID: PMC3759294. Dostupné online [cit. 2019-05-10]. ISSN1664-3224. DOI: 10.3389/fimmu.2013.00248.
SHAW, Michael H.; REIMER, Thornik; KIM, Yun-Gi. NOD-like receptors (NLRs): bona fide intracellular microbial sensors. Current Opinion in Immunology, 2008-8, roč. 20, čís. 4, s. 377–382. PMID 18585455
PMCID: PMC2572576. Dostupné online [cit. 2019-05-10]. ISSN0952-7915. DOI: 10.1016/j.coi.2008.06.001.
HENDRICKSON, W. A.; WARD, K. B.. Atomic models for the polypeptide backbones of myohemerythrin and hemerythrin. Biochemical and Biophysical Research Communications, 1975-10-27, roč. 66, čís. 4, s. 1349–1356. PMID 5. Dostupné online [cit. 2019-05-10]. ISSN1090-2104.
ANDERSON, T. R.; SLOTKIN, T. A.. Maturation of the adrenal medulla--IV. Effects of morphine. Biochemical Pharmacology, 1975-08-15, roč. 24, čís. 16, s. 1469–1474. PMID 7. Dostupné online [cit. 2019-05-10]. ISSN1873-2968.
CANTÓ, Elisabet; RICART, Elena; BUSQUETS, David. Influence of a nucleotide oligomerization domain 1 (NOD1) polymorphism and NOD2 mutant alleles on Crohn's disease phenotype. World Journal of Gastroenterology, 2007-11-07, roč. 13, čís. 41, s. 5446–5453. PMID 17907287
PMCID: PMC4171278. Dostupné online [cit. 2019-05-10]. ISSN1007-9327. DOI: 10.3748/wjg.v13.i41.5446.
OKAFUJI, Ikuo; NISHIKOMORI, Ryuta; KANAZAWA, Nobuo. Role of the NOD2 genotype in the clinical phenotype of Blau syndrome and early-onset sarcoidosis. Arthritis and Rheumatism, 2009-1, roč. 60, čís. 1, s. 242–250. PMID 19116920. Dostupné online [cit. 2019-05-10]. ISSN0004-3591. DOI: 10.1002/art.24134.
STEIN, J. M.. The effect of adrenaline and of alpha- and beta-adrenergic blocking agents on ATP concentration and on incorporation of 32Pi into ATP in rat fat cells. Biochemical Pharmacology, 1975-09-15, roč. 24, čís. 18, s. 1659–1662. PMID 12. Dostupné online [cit. 2019-05-10]. ISSN0006-2952.
JÄRVISALO, J.; SARIS, N. E.. Action of propranolol on mitochondrial functions--effects on energized ion fluxes in the presence of valinomycin. Biochemical Pharmacology, 1975-09-15, roč. 24, čís. 18, s. 1701–1705. PMID 13. Dostupné online [cit. 2019-05-10]. ISSN0006-2952.
SHAW, Michael H.; REIMER, Thornik; KIM, Yun-Gi. NOD-like receptors (NLRs): bona fide intracellular microbial sensors. Current Opinion in Immunology, 2008-8, roč. 20, čís. 4, s. 377–382. PMID 18585455
PMCID: PMC2572576. Dostupné online [cit. 2019-05-10]. ISSN0952-7915. DOI: 10.1016/j.coi.2008.06.001.
HENDRICKSON, W. A.; WARD, K. B.. Atomic models for the polypeptide backbones of myohemerythrin and hemerythrin. Biochemical and Biophysical Research Communications, 1975-10-27, roč. 66, čís. 4, s. 1349–1356. PMID 5. Dostupné online [cit. 2019-05-10]. ISSN1090-2104.
ANDERSON, T. R.; SLOTKIN, T. A.. Maturation of the adrenal medulla--IV. Effects of morphine. Biochemical Pharmacology, 1975-08-15, roč. 24, čís. 16, s. 1469–1474. PMID 7. Dostupné online [cit. 2019-05-10]. ISSN1873-2968.
IRVING, Aaron T.; MIMURO, Hitomi; KUFER, Thomas A.. The Immune Receptor NOD1 and Kinase RIP2 Interact with Bacterial Peptidoglycan on Early Endosomes to Promote Autophagy and Inflammatory Signaling. Cell Host & Microbe, 2014-05, roč. 15, čís. 5, s. 623–635. Dostupné online [cit. 2019-05-10]. ISSN1931-3128. DOI: 10.1016/j.chom.2014.04.001.
MARINIS, Jill M.; HOMER, Craig R.; MCDONALD, Christine. A Novel Motif in the Crohn's Disease Susceptibility Protein, NOD2, Allows TRAF4 to Down-regulate Innate Immune Responses. Journal of Biological Chemistry, 2010-11-19, roč. 286, čís. 3, s. 1938–1950. Dostupné online [cit. 2019-05-10]. ISSN0021-9258. DOI: 10.1074/jbc.m110.189308.
CANTÓ, Elisabet; RICART, Elena; BUSQUETS, David. Influence of a nucleotide oligomerization domain 1 (NOD1) polymorphism and NOD2 mutant alleles on Crohn's disease phenotype. World Journal of Gastroenterology, 2007-11-07, roč. 13, čís. 41, s. 5446–5453. PMID 17907287
PMCID: PMC4171278. Dostupné online [cit. 2019-05-10]. ISSN1007-9327. DOI: 10.3748/wjg.v13.i41.5446.
OKAFUJI, Ikuo; NISHIKOMORI, Ryuta; KANAZAWA, Nobuo. Role of the NOD2 genotype in the clinical phenotype of Blau syndrome and early-onset sarcoidosis. Arthritis and Rheumatism, 2009-1, roč. 60, čís. 1, s. 242–250. PMID 19116920. Dostupné online [cit. 2019-05-10]. ISSN0004-3591. DOI: 10.1002/art.24134.
STEIN, J. M.. The effect of adrenaline and of alpha- and beta-adrenergic blocking agents on ATP concentration and on incorporation of 32Pi into ATP in rat fat cells. Biochemical Pharmacology, 1975-09-15, roč. 24, čís. 18, s. 1659–1662. PMID 12. Dostupné online [cit. 2019-05-10]. ISSN0006-2952.
JÄRVISALO, J.; SARIS, N. E.. Action of propranolol on mitochondrial functions--effects on energized ion fluxes in the presence of valinomycin. Biochemical Pharmacology, 1975-09-15, roč. 24, čís. 18, s. 1701–1705. PMID 13. Dostupné online [cit. 2019-05-10]. ISSN0006-2952.
PASHENKOV, Mikhail V.; DAGIL, Yulia A.; PINEGIN, Boris V.. NOD1 and NOD2: Molecular targets in prevention and treatment of infectious diseases. International Immunopharmacology, 2018-01, roč. 54, s. 385–400. Dostupné online [cit. 2019-05-10]. ISSN1567-5769. DOI: 10.1016/j.intimp.2017.11.036.
SHARMA, Deepika; KANNEGANTI, Thirumala-Devi. The cell biology of inflammasomes: Mechanisms of inflammasome activation and regulation. The Journal of Cell Biology, 2016-06-20, roč. 213, čís. 6, s. 617–629. Dostupné online [cit. 2019-05-10]. ISSN0021-9525. DOI: 10.1083/jcb.201602089.
YIN, Xi; HAN, Gen-Cheng; JIANG, Xing-Wei. Increased Expression of the NOD-like Receptor Family, Pyrin Domain Containing 3 Inflammasome in Dermatomyositis and Polymyositis is a Potential Contributor to Their Pathogenesis. Chinese Medical Journal, 2016-05, roč. 129, čís. 9, s. 1047–1052. Dostupné online [cit. 2019-05-10]. ISSN0366-6999. DOI: 10.4103/0366-6999.180528.
DAVIS, Beckley K.; WEN, Haitao; TING, Jenny P.-Y.. The Inflammasome NLRs in Immunity, Inflammation, and Associated Diseases. Annual Review of Immunology, 2011-04-23, roč. 29, čís. 1, s. 707–735. Dostupné online [cit. 2019-05-10]. ISSN0732-0582. DOI: 10.1146/annurev-immunol-031210-101405.