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Items: 1 to 20 of 141

1.

The cytomegalovirus UL146 gene product vCXCL1 targets both CXCR1 and CXCR2 as an agonist.

L├╝ttichau HR.

J Biol Chem. 2010 Mar 19;285(12):9137-46. doi: 10.1074/jbc.M109.002774. Epub 2009 Dec 31.

2.

Rabbit neutrophil chemotactic protein (NCP) activates both CXCR1 and CXCR2 and is the functional homologue for human CXCL6.

Catusse J, Struyf S, Wuyts A, Weyler M, Loos T, Gijsbers K, Gouwy M, Proost P, Van Damme J.

Biochem Pharmacol. 2004 Nov 15;68(10):1947-55.

PMID:
15476666
4.

Murine CXCR1 is a functional receptor for GCP-2/CXCL6 and interleukin-8/CXCL8.

Fan X, Patera AC, Pong-Kennedy A, Deno G, Gonsiorek W, Manfra DJ, Vassileva G, Zeng M, Jackson C, Sullivan L, Sharif-Rodriguez W, Opdenakker G, Van Damme J, Hedrick JA, Lundell D, Lira SA, Hipkin RW.

J Biol Chem. 2007 Apr 20;282(16):11658-66. Epub 2006 Dec 29.

5.

Discrete steps in binding and signaling of interleukin-8 with its receptor.

Wu L, Ruffing N, Shi X, Newman W, Soler D, Mackay CR, Qin S.

J Biol Chem. 1996 Dec 6;271(49):31202-9.

6.
7.

Kaposi sarcoma-associated herpes virus targets the lymphotactin receptor with both a broad spectrum antagonist vCCL2 and a highly selective and potent agonist vCCL3.

L├╝ttichau HR, Johnsen AH, Jurlander J, Rosenkilde MM, Schwartz TW.

J Biol Chem. 2007 Jun 15;282(24):17794-805. Epub 2007 Apr 2.

8.

Differential modes of regulation of cxc chemokine-induced internalization and recycling of human CXCR1 and CXCR2.

Feniger-Barish R, Ran M, Zaslaver A, Ben-Baruch A.

Cytokine. 1999 Dec;11(12):996-1009.

PMID:
10623425
9.
10.
11.

Granulocyte chemotactic protein 2 acts via both IL-8 receptors, CXCR1 and CXCR2.

Wolf M, Delgado MB, Jones SA, Dewald B, Clark-Lewis I, Baggiolini M.

Eur J Immunol. 1998 Jan;28(1):164-70.

12.

CXCR2 stimulation primes CXCR1 [Ca2+]i responses to IL-8 in human neutrophils.

Hauser CJ, Fekete Z, Goodman ER, Kleinstein E, Livingston DH, Deitch EA.

Shock. 1999 Dec;12(6):428-37.

PMID:
10588510
13.

Fatal attraction: cytomegalovirus-encoded chemokine homologs.

Saederup N, Mocarski ES Jr.

Curr Top Microbiol Immunol. 2002;269:235-56.

PMID:
12224512
14.
15.

Characterization of synthetic human granulocyte chemotactic protein 2: usage of chemokine receptors CXCR1 and CXCR2 and in vivo inflammatory properties.

Wuyts A, Van Osselaer N, Haelens A, Samson I, Herdewijn P, Ben-Baruch A, Oppenheim JJ, Proost P, Van Damme J.

Biochemistry. 1997 Mar 4;36(9):2716-23.

PMID:
9054580
17.

Expression and function of the chemokine receptors CXCR1 and CXCR2 in sepsis.

Cummings CJ, Martin TR, Frevert CW, Quan JM, Wong VA, Mongovin SM, Hagen TR, Steinberg KP, Goodman RB.

J Immunol. 1999 Feb 15;162(4):2341-6.

18.

Characterization of the molecular interactions of interleukin-8 (CXCL8), growth related oncogen alpha (CXCL1) and a non-peptide antagonist (SB 225002) with the human CXCR2.

Catusse J, Liotard A, Loillier B, Pruneau D, Paquet JL.

Biochem Pharmacol. 2003 Mar 1;65(5):813-21. Erratum in: Biochem Pharmacol. 2003 Jun 1;65(11):1915-6.

PMID:
12628493
19.

Chemokine-cytokine cross-talk. The ELR+ CXC chemokine LIX (CXCL5) amplifies a proinflammatory cytokine response via a phosphatidylinositol 3-kinase-NF-kappa B pathway.

Chandrasekar B, Melby PC, Sarau HM, Raveendran M, Perla RP, Marelli-Berg FM, Dulin NO, Singh IS.

J Biol Chem. 2003 Feb 14;278(7):4675-86. Epub 2002 Dec 4.

20.

Identification of a potent, selective non-peptide CXCR2 antagonist that inhibits interleukin-8-induced neutrophil migration.

White JR, Lee JM, Young PR, Hertzberg RP, Jurewicz AJ, Chaikin MA, Widdowson K, Foley JJ, Martin LD, Griswold DE, Sarau HM.

J Biol Chem. 1998 Apr 24;273(17):10095-8.

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