학술논문

Inhibition by glucocorticoid and staurosporine of IL-4-dependent CD23 production in B lymphocytes is reversed on engaging CD40.
Document Type
Article
Source
Clinical & Experimental Immunology. May1993, Vol. 92 Issue 2, p347-352. 6p.
Subject
*LYMPHOCYTES
*B cells
*PROTEIN kinases
*ANTINEOPLASTIC agents
*AMINO acids
*PROTEIN-tyrosine kinases
Language
ISSN
0009-9104
Abstract
IL-4 synergizes with signals delivered through CD40 both for the induction of CD23/FecRII expression and for IgE synthesis. Moreover, engagement of CD40 on the B cell surface by MoAb overcomes the ability of interferons, transforming growth factor-beta, or anti-CD 19 to inhibit IL-4- dependent change. We now report that occupancy of CD40 relieves potent suppression of lL-4-induced CD23 production by glucocorticoid or the relatively broad-acting kinase inhibitor staurosporine. Interruption of the IL-4 signal was observed with concentrations of staurosporine considered to be selective for protein kinase C(PKC) inhibition (IC50 = 10nM) but not with genistein or tyrphostins. efective inhibitors of tyrosine kinase activity. On ligation of CD40, staurosporine no longer inhibited the IL-4 signal: at concentrations of between 1 and 20 nM, staurosporine actually increased by as much as 100% the rate of CD23 production stimulated on simultaneous activation through CD40 and IL-4R. Such augmentation was not observed when the more specific PKC inhibitor RO-31-8220 was used: indeed. CD40 engagement was unable to overcome the ability of this inhibitor to block IL-4-promoted CD23 induction (IC50 = 10μM). Occupancy of CD40 did, however, thwart completely the usual ability of prednisolone to inhibit the IL-4 signal leading lo CD23 induction. Activation through CD40 left inhibition of phorbol ester-induced CD23 expression by staurosporine, RO-31-8220, or glucoeortieoid unchecked. These findings further highlight the intimate level of cross-talk existing between CD40 and IL-4R on resting B lymphocytes to promote CD23 expression, a phenotypic change which preludes IgE synthesis. [ABSTRACT FROM AUTHOR]