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1 ficantly higher IL-10, IP-10, MIP-1betam and MCP-2.
2 is essential for the chemotactic activity of MCP-2.
3 d this accounts for the unique activities of MCP-2.
6 ) brain samples in which decreased levels of MCP-2 and increased levels of mir-146a were observed, su
7 nt (eotaxin, monocyte chemotactic protein-2 (MCP-2) and -3 (MCP-3), liver and activation-regulated ch
8 monocyte chemotactic protein 1 [MCP-1], and MCP-2) and the serum levels of other proinflammatory cyt
9 monocyte chemoattractant protein 1 (MCP-1), MCP-2, and granulocyte colony-stimulating factor in endo
10 significant increases in MIP-1beta, IL-28A, MCP-2, and IFN-alpha as compared with mock-infected cell
11 a, monocyte chemoattractant protein (MCP)-1, MCP-2, and interferon-inducible protein-10 in the pancre
14 naling, and related cytokines (CXCL10, MCP1, MCP-2, and MCP-3) associated with subsequent disease pro
17 e sequence homology to other C-C chemokines, MCP-2 appears to have unique functional properties in co
19 ansfected with C-C chemokine receptors, 125I-MCP-2 bound to human embryonic kidney 293 cells transfec
20 ies of MCP-2 on leukocytes, we observed that MCP-2, but not MCP-1, effectively competed with MIP-1bet
22 MIP-1beta/CCL-4, MIP-2/CXCL2/3, MCP-1/CCL-2, MCP-2/CCL-8, MCP-3/CCL-7, MCP-5/CCL-12, KC/CXCL-1, and L
23 merization of the CCR2 ligands MCP-1 (CCL2), MCP-2 (CCL8), MCP-3 (CCL7), MCP-4 (CCL13), and eotaxin (
24 ractions of three CC chemokines, MCP-1/CCL2, MCP-2/CCL8, and MCP-3/CCL7, with HS-derived oligosacchar
25 of the chemokine receptor, CCR2 (MCP-1/CCL2, MCP-2/CCL8, MCP-3/CCL7, MCP-4/CCL13, and Eotaxin/CCL11),
26 CL4) and monocyte chemoattractant protein 2 (MCP-2; CCL8) mRNA levels from mycoplasma-infected mice a
27 Mig (CXCR3 ligand), TARC (CCR4 ligand), and MCP-2 (CCR5 ligand) were detected in intratumoral blood
31 evels of monocyte chemoattractant protein 2 (MCP-2), demonstrating that chemokine induction also occu
32 nal interactions between the two subunits of MCP-2 dimer: a hydrogen bond between pGlu1 and Asn17 and
35 showed significant migration in response to MCP-2, in addition to responding to other specific chemo
38 in-2 (IL-2), monocyte chemotactic protein 2 (MCP-2), interferon gamma inducible protein-10 (IP-10), i
40 ene targets for mir-146a, the chemokine CCL8/MCP-2 is a ligand for the CCR5 chemokine receptor and a
45 ta1, and TNF-alpha cytokines while restoring MCP-2 levels, suggesting that H4K12ac may be playing a m
47 ed from studies on leukocytes suggested that MCP-2 may share the receptors with these C-C chemokines,
48 response of eosinophils to eotaxin, RANTES, MCP-2, MCP-3, and MCP-4 was shown to be mediated through
50 (GRO), IL-5, IL-6, IL-7, IL-8, IL-10, MCP-1, MCP-2, MCP-3, and monokine induced by gamma-interferon.
51 9, monocyte chemoattractant protein (MCP)-1, MCP-2, MCP-3, CXCL9, CXCL10, CXCL5, ENRAGE, and poly (AD
52 9, monocyte chemoattractant protein (MCP)-1, MCP-2, MCP-3, CXCL9, CXCL10, CXCL5, ENRAGE, and poly (AD
56 ), monocyte chemoattractant protein (MCP)-1, MCP-2, MCP-3, MCP-4, macrophage-derived chemokine (MDC),
58 beta interferon) and chemokine (RANTES, MIG, MCP-2, MIP-1alpha, and interleukin-8) expression was exa
62 rther characterize the binding properties of MCP-2 on leukocytes, we observed that MCP-2, but not MCP
63 tractant protein-1 (MCP-1), MCP-3, MCP-5, or MCP-2 plus MCP-5 revealed that MCP-3 and MCP-1 are the C
66 after transplantation, the chemokines MCP-1, MCP-2, RANTES, MIG, IP-10, I-TAC, and two CC chemokine r
69 determined the complete crystal structure of MCP-2 that contains both pGlu1 and an intact C-terminus.
70 eptor for RANTES, MIP-1alpha, MIP-1beta, and MCP-2 that functions as the front line coreceptor for hu
71 ed genes, including chemokine ligand 8 (CCL8/MCP-2), that may provide possible targets for early-stag