Literature DB >> 3126236

The requirement for surface Ig signaling as a prerequisite for T cell:B cell interactions. A possible role for desialylation.

K P Kearse1, D R Cassatt, A M Kaplan, D A Cohen.   

Abstract

Models for T cell:B cell collaboration suggest that activated B cells process and present Ag to Th cells which subsequently induce B cell proliferation and differentiation. In contrast to activated B cells, resting B cells have generally been shown to be less efficient APC. If this model of T:B collaboration is physiologically correct, then resting B cells must undergo a phenotypic change that permits effective interaction with T cells. In this report, the requirement for rapid signaling through surface Ig on resting B cells for the induction of T:B interaction was investigated with an in vitro clustering assay. Resting splenic B cells were unable to form specific conjugates with T cell clones, unless the B cells were first treated with neuraminidase to remove sialic acid. In contrast, LPS-activated B cells were able to form conjugates without prior treatment. The ability of antibody against LFA-1 or L3T4 to inhibit cluster formation depended on the state of B cell activation in that anti-LFA-1 and anti-L3T4 mAb inhibited cluster formation by neuraminidase-treated resting B cells, but not by LPS-activated B cells. In addition, Ag-specific B cells which were isolated by their capacity to bind specific Ag were able to form clusters without any additional treatment. Moreover, treatment of resting splenic B cells with anti-mu-antibody induced clustering potential in B cells in as little as 10 min, suggesting that signaling through surface Ig was sufficient to induce this phenotypic change in B cells. Furthermore, activation of protein kinase C and Ca2+ mobilization were shown to be involved in that PMA and ionomycin treatment were also able to induce clustering potential in resting B cells. The rapid induction of clustering potential in resting B cells after signaling through surface Ig may represent a fundamental change in B cell physiology which occurs after recognition of specific Ag and may be required for effective cognate recognition between resting hapten-specific B cells and carrier-specific T cells. The potential role of desialylation for the induction of T:B interaction is discussed.

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Year:  1988        PMID: 3126236

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  11 in total

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Review 2.  Heparin-induced thrombocytopenia: molecular pathogenesis.

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4.  The effect of alpha2,6-linked sialic acid on anti-IgM antibody-induced apoptosis in Ramos cells.

Authors:  Y Azuma; M Sakanashi; K Matsumoto
Journal:  Glycoconj J       Date:  2001-05       Impact factor: 2.916

5.  Regulation of phagocytosis in macrophages by neuraminidase 1.

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6.  Neuraminidase reprograms lung tissue and potentiates lipopolysaccharide-induced acute lung injury in mice.

Authors:  Chiguang Feng; Lei Zhang; Chinh Nguyen; Stefanie N Vogel; Simeon E Goldblum; William C Blackwelder; Alan S Cross
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7.  Sialyl residues modulate LPS-mediated signaling through the Toll-like receptor 4 complex.

Authors:  Chiguang Feng; Nicholas M Stamatos; Anatoliy I Dragan; Andrei Medvedev; Melissa Whitford; Lei Zhang; Chang Song; Prasad Rallabhandi; Leah Cole; Quan M Nhu; Stefanie N Vogel; Chris D Geddes; Alan S Cross
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8.  Leukosialin (CD43)-major histocompatibility class I molecule interactions involved in spontaneous T cell conjugate formation.

Authors:  J Stöckl; O Majdic; P Kohl; W F Pickl; J E Menzel; W Knapp
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9.  Localization of sialidase-positive cells expressing Mac-1 and immunoglobulin in the mouse thymus.

Authors:  Shigeko Kijimoto-Ochiai; Naoko Doi; Hiroko Matsukawa; Miwako Fujii; Koji Tomobe
Journal:  Glycoconj J       Date:  2004       Impact factor: 3.009

10.  Glycosylation of CD44 negatively regulates its recognition of hyaluronan.

Authors:  S Katoh; Z Zheng; K Oritani; T Shimozato; P W Kincade
Journal:  J Exp Med       Date:  1995-08-01       Impact factor: 14.307

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