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1.
Nat Immunol ; 9(1): 89-96, 2008 Jan.
Article in English | MEDLINE | ID: mdl-18059270

ABSTRACT

CRACM1 (also called Orai1) constitutes the pore subunit of store-operated calcium release-activated calcium channels. A point mutation in the gene encoding CRACM1 is associated with severe combined immunodeficiency disease in humans. Here we generated CRACM1-deficient mice in which beta-galactosidase activity 'reported' CRACM1 expression. CRACM1-deficient mice were smaller in size. Mast cells derived from CRACM1-deficient mice showed grossly defective degranulation and cytokine secretion, and the allergic reactions elicited in vivo were inhibited in CRACM1-deficient mice. We detected robust CRACM1 expression in skeletal muscles and some regions of the brain, heart and kidney but not in the lymphoid regions of thymus and spleen. In contrast, we found CRACM2 expression to be much higher in mouse T cells. In agreement with those findings, the store-operated calcium influx and development and proliferation of CRACM1-deficient T cells was unaffected. Thus, CRACM1 is crucial in mouse mast cell effector function, but mouse T cell calcium release-activated calcium channels are functional in the absence of CRACM1.


Subject(s)
Calcium Channels/physiology , Mast Cells/immunology , Animals , Calcium/metabolism , Calcium Channels/biosynthesis , Cell Degranulation , Cell Proliferation , Cells, Cultured , Cytokines/metabolism , Mast Cells/metabolism , Mice , Mice, Knockout , ORAI1 Protein , ORAI2 Protein , Organ Specificity , Protein Subunits/biosynthesis , Protein Subunits/physiology , T-Lymphocytes/cytology , T-Lymphocytes/metabolism
2.
J Virol ; 78(2): 947-57, 2004 Jan.
Article in English | MEDLINE | ID: mdl-14694126

ABSTRACT

Reovirus type 1 Lang (T1L) adheres to M cells in the follicle-associated epithelium of mouse intestine and exploits the transport activity of M cells to enter and infect the Peyer's patch mucosa. Adult mice that have previously cleared a reovirus T1L infection have virus-specific immunoglobulin G (IgG) in serum and IgA in secretions and are protected against reinfection. Our aim in this study was to determine whether secretory IgA is sufficient for protection of Peyer's patches against oral reovirus challenge and, if so, against which reovirus antigen(s) the IgA may be directed. Monoclonal antibodies (MAbs) of the IgA isotype, directed against the sigma1 protein of reovirus T1L, the viral adhesin, were produced and tested along with other, existing IgA and IgG MAbs against reovirus T1L outer capsid proteins. Anti-sigma1 IgA and IgG MAbs neutralized reovirus T1L in L cell plaque reduction assays and inhibited T1L adherence to L cells and Caco-2(BBe) intestinal epithelial cells in vitro, but MAbs against other proteins did not. Passive oral administration of anti-sigma1 IgA and IgG MAbs prevented Peyer's patch infection in adult mice, but other MAbs did not. When anti-sigma1 IgA and IgG MAbs were produced in mice from hybridoma backpack tumors, however, the IgA prevented Peyer's patch infection, but the IgG did not. The results provide evidence that neutralizing IgA antibodies specific for the sigma1 protein are protective in vitro and in vivo and that the presence of these antibodies in intestinal secretions is sufficient for protection against entry of reovirus T1L into Peyer's patches.


Subject(s)
Capsid Proteins/immunology , Immunoglobulin A, Secretory/immunology , Orthoreovirus, Mammalian/immunology , Peyer's Patches/immunology , Peyer's Patches/virology , Reoviridae Infections/prevention & control , Animals , Antibodies, Monoclonal/biosynthesis , Antibodies, Monoclonal/immunology , Antibodies, Viral/biosynthesis , Antibodies, Viral/immunology , Caco-2 Cells , Female , Humans , Hybridomas , Mice , Mice, Inbred BALB C , Neutralization Tests , Reoviridae Infections/immunology , Reoviridae Infections/virology
3.
J Virol ; 77(14): 7964-77, 2003 Jul.
Article in English | MEDLINE | ID: mdl-12829836

ABSTRACT

Type 1 reoviruses invade the intestinal mucosa of mice by adhering selectively to M cells in the follicle-associated epithelium and then exploiting M cell transport activity. The purpose of this study was to identify the apical cell membrane component and viral protein that mediate the M cell adherence of these viruses. Virions and infectious subviral particles of reovirus type 1 Lang (T1L) adhered to rabbit M cells in Peyer's patch mucosal explants and to tissue sections in an overlay assay. Viral adherence was abolished by pretreatment of sections with periodate and in the presence of excess sialic acid or lectins MAL-I and MAL-II (which recognize complex oligosaccharides containing sialic acid linked alpha2-3 to galactose). The binding of T1L particles to polarized human intestinal (Caco-2(BBe)) cell monolayers was correlated with the presence of MAL-I and MAL-II binding sites, blocked by excess MAL-I and -II, and abolished by neuraminidase treatment. Other type 1 reovirus isolates exhibited MAL-II-sensitive binding to rabbit M cells and polarized Caco-2(BBe) cells, but type 2 or type 3 isolates including type 3 Dearing (T3D) did not. In assays using T1L-T3D reassortants and recoated viral cores containing T1L, T3D, or no sigma1 protein, MAL-II-sensitive binding to rabbit M cells and polarized Caco-2(BBe) cells was consistently associated with the T1L sigma1. MAL-II-recognized oligosaccharide epitopes are not restricted to M cells in vivo, but MAL-II immobilized on virus-sized microparticles bound only to the follicle-associated epithelium and M cells. The results suggest that selective binding of type 1 reoviruses to M cells in vivo involves interaction of the type 1 sigma1 protein with glycoconjugates containing alpha2-3-linked sialic acid that are accessible to viral particles only on M cell apical surfaces.


Subject(s)
Capsid Proteins/chemistry , Glycoconjugates/chemistry , Intestinal Mucosa/virology , Membrane Fusion , Orthoreovirus, Mammalian/physiology , Sialic Acids/chemistry , Animals , Binding Sites , Caco-2 Cells , Capsid Proteins/metabolism , Cell Membrane/chemistry , Cell Membrane/metabolism , Cell Membrane/virology , Cell Polarity , Cells, Cultured , Female , Glycoconjugates/metabolism , Humans , Intestinal Mucosa/cytology , Mice , Mice, Inbred BALB C , Orthoreovirus, Mammalian/pathogenicity , Peyer's Patches/virology , Rabbits , Sialic Acids/metabolism
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