A novel series of barbituric acid derivatives were identified as selective inhibitors of alpha4beta7 MAdCAM (mucosal addressin cell adhesion molecule-1) interactions via a high throughput screening exercise. These inhibitors were optimized to submicromolar potencies in whole cell adhesion assays, retaining their selectivity over alpha4beta1 VCAM.
The selective emigration of blood born leukocytes into tissues is mediated, in part by interactions of Ig-like cell adhesion molecules (IgCAMs) expressed on vascular endothelium and their cognate ligands, the leukocyte integrins. Within mucosal lymphoid tissues and gastrointestinal sites the mucosal vascular addressin. MAdCAM-1 is the predominant IgCAM, mediating specific lymphocyte homing via interactions with its ligand on lymphocytes, the integrin alpha4beta7. Previous studies have shown that an essential binding motif resides in the first Ig domain of all IgCAMs, containing an acidic residue (D or E) preceded by an aliphatic residue (L or I) that resides in strand C or the CD loop. However, domain swap experiments with MAdCAM-1 and VCAM-1 have shown a requirement for both Ig domains 1 and 2 for efficient integrin binding. We describe the use of chimeric MAdCAM-1/VCAM-1 receptors and point mutations in MAdCAM-1 to define other sites that are required for binding to the integrin alpha4beta7. We find that, in addition to critical CD loop residues, other regions in both domain one and two contribute to MAdCAM-1/alpha4beta7 interactions, including a buried arginine residue in the F strand of domain one and several acidic residues in a highly extended DE ribbon in domain 2. These mutations, when placed in the recently solved crystal structure of human MAdCAM-1 give insight into the integrin binding preference of this unique receptor.
Lymphocyte homing to normal tissues and recruitment to inflammatory tissue sites are controlled, in part, by the selective expression of chemokines, pro-inflammatory cytokines and mediators, and various adhesion proteins and molecules. In the mouse, mucosal addressin cell adhesion molecule-1 (MAdCAM-1) is selectively expressed on endothelium of high endothelial venules in gut and gut-associated lymphoid tissue. By interaction with its integrin ligand, alpha 4 beta 7, lymphocytes presumed to be involved in mucosal immunity are selectively recruited to these intestinal sites. After generating monoclonal antibodies against a murine cell line expressing recombinant human MAdCAM-1, we qualitatively and semiquantitatively assessed MAdCAM-1 expression in human tissue sections from various normal and inflammatory disorders. We found that human MAdCAM-1, as in the mouse, is expressed in a tissue-selective manner. In normal tissues, MAdCAM-1 is constitutively expressed to endothelium of venules of intestinal lamina propria. Interestingly, using computer-assisted morphometric analysis, the proportion of venular endothelium within lamina propria that expresses MAdCAM-1 is increased, compared with normal tissues, at inflammatory foci associated with ulcerative colitis and Crohn's disease. Moreover, for the most part, MAdCAM-1 is not detected in the majority of normal or inflamed extra-intestinal tissues, including those with mucosal surfaces. These results are consistent with a role, as originally defined in the mouse, for human MAdCAM-1 in the localization of alpha 4 beta 7(+) lymphocytes in the gastrointestinal tract and associated lymphoid tissue. As such, the pathway defined by MAdCAM-1/alpha 4 beta 7 may be a relevant tissue-specific therapeutic target for the modulation of inflammatory bowel disease activity.
beta(7) integrins serve special roles in mucosal immunity, alpha(4) beta(7)-mediated adhesion to mucosal addressin cell adhesion molecule-1 (MAdCAM-1) directs lymphocyte homing to the gut, and alpha(E) beta(7) mediates binding of lymphocytes to E-cadherin on epithelial cells. Since alpha(4) beta(7) mediates adhesion to MAdCAM-1 but alpha(4) beta(1) does not, we used beta(7)/beta(1) chimeras to directly assess the importance of specific regions of beta 7 in MAdCAM-1 binding, We found a region of beta(7) (residues 46-386)that accounts for specificity of alpha(4) beta(7) binding to MAdCAM-1, We also used human/mouse and human/rat chimeric beta(7) subunits to map epitopes recognized by fifteen anti-beta(7) mAbs, Six of seven Abs that block adhesion to MAdCAM-1;and E-cadherin (Fib 21, 22, 27, 30, 504; Act-1) mapped to amino acid residues 176-250, Residues 176-250 lie within the region of beta(7) that specifies MAdCAM-1 binding and also within a region that has a predicted structure homologous to the metal ion-dependent adhesion site (MIDAS) domains of the integrin subunits alpha(L) and alpha(M), Three new Abs that recognize beta(7) in the presence of Mn2+, but not Ca2+, and promote adhesion to MAdCAM-1, mapped to amino acids 46-149, One blocking and five other Abs mapped to other regions (amino acids 387-725),We conclude that a MIDAS-like domain serves a critical role in beta 7 integrin-mediated adhesion.
The expression of major carbohydrate antigens carried by polylactosaminyl chains in human erythroleukemia cell lines, K562 and HEL, was investigated by applying monoclonal antibodies recognizing specific carbohydrate determinants. The two cell lines showed common differences in their glycolipid compositions: (1) the presence of significant amounts of ganglio-series glycolipids, which are absent in normal erythrocytes; and (2) a remarkable reduction in the amount of globo-series glycolipids, which are the major glycolipids in normal human erythrocytes. A variety of differences were also detected in the carbohydrate antigens carried by lacto-series glycolipids and glycoproteins having related carbohydrate chains. K562 cells were i+H- X+, with a minor population of I+ cells. HEL cells were I-i+H+X-. The presence of the I+ population in K562 cells is particularly noteworthy, since I-antigen is characteristic of adult mature erythrocytes and is absent in most human leukemic cell lines. Several clones showing I+, I+/-i+/-, or I-i+ specificities were isolated from K562 cells by cloning in either methylcellulose media or limiting dilution, and I+ and I- cells were sorted by FACS fluorometer. HEL cells and these K562 clones provide a useful experimental model for studying the biologic significance and enzymatic control in expression of cell surface polylactosamines.