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M Kitaura

Publications and source records attributed to M Kitaura.

28 records · Page 2Linked to original sources

Interferon-alpha and interferon-beta induce Ia expression in limited protein synthesis condition.

We investigated the regulatory effect of interferons (IFNs) on macrophage (m phi) Ia antigen expression. Unlike type II IFN (IFN-gamma), type I IFNs (IFN-alpha and IFN-beta) were incapable of inducing the accumulation of Ia mRNA. However, when cultured with type I IFN plus cycloheximide (CHX), M phi accumulated significant amounts of Ia-specific mRNA, which was translated into Ia molecules expressed on the cell surface after the removal of CHX. Significant enhancement of Ia mRNA accumulation and the Ia expression were observed also in M phi stimulated with IFN-gamma plus CHX. Type I IFNs suppressed IFN-gamma-dependent Ia expression through the inhibition of Ia mRNA accumulation, but such suppression was not directed to the post-transcriptional step in M phi that had accumulated Ia mRNA in response to stimulation by type I or type II IFN plus CHX. These results seem to indicate that type I IFNs can induce Ia mRNA accumulation but that they also induce some inhibitory protein, the synthesis of which precedes it and is dominant, so that the Ia expression is masked.

Animals↗

Suppression of macrophage Ia antigen expression by endogenous interferon-alpha/beta.

Exogenous interferon-alpha (IFN-alpha) and interferon-beta (IFN-beta) (type I IFNs) are known to suppress the IFN-gamma-dependent expression of class II MHC (Ia) antigens on macrophages (M phi). We report here that the endogenous type I IFNs produced by M phi in response to IFN inducers regulate Ia expression of the M phi themselves. Coculture of M phi with IFN-gamma and polyinosinic-polycytidylic acid [poly(I):poly(C)] resulted in the reduction of Ia expression in comparison with those cultured without poly(I):poly(C). Pretreatment of M phi with poly(I):poly(C) or a bacterial lipopolysaccharide (LPS), which is also a potent IFN inducer, in vitro or in vivo, before being exposed to IFN-gamma was also effective in suppressing the Ia expression. Such suppression was abolished by the addition of anti-IFN-alpha/beta antibodies to the M phi culture along with IFN-gamma. M phi cultured with L-cell conditioned medium (LCM) containing M-CSF were less capable of expressing Ia antigens than those cultured without LCM. The Ia-expressing ability of LCM-treated M phi was also restored by the addition of anti-IFN-alpha/beta antibodies. M phi in the early stage of sterile inflammation were less responsive to IFN-gamma than those in the late stage. These results suggest that endogenous type I IFNs, which are produced in response to natural or synthetic IFN-inducers, regulate M phi Ia expression in an autocrinal manner.

Acute-Phase Reaction↗

Neuraminidase-treated macrophages stimulate allogenic CD8+ T cells in the presence of exogenous interleukin 2.

Prior work has shown that purified, resident, and inflammatory peritoneal macrophages are weak stimulators of the allogeneic MLR. We have identified conditions whereby thioglycollate-elicited macrophages become stimulatory, but primarily for the CD8+ T cell subset. The conditions were to treat the macrophages with neuraminidase and to supplement the MLR with rIL-2. These treatments together led to proliferative and cytotoxic responses by isolated CD8+ but not CD4+ T cells. Likewise when MHC-congenic strains were evaluated, an MLR was observed across isolated class I but not class II MHC barriers. Pretreatment of the macrophages with IFN-gamma further enhanced expression of class I MHC products and stimulatory activity, but did not seem essential. While these treatments did not render macrophages stimulatory for an MLR in purified CD4+ cells, blastogenesis of CD4+ cells was observed when the MLR involved bulk T cells. Small allogeneic B lymphocytes behaved similarly to macrophages, in the pretreatment with neuraminidase and supplementation with rIL-2 rendered B cells stimulatory for allogeneic, enriched, CD8+, but not CD4+, T cells. Spleen adherent cells, which are mixtures of macrophages and dendritic cells, stimulated both CD4+ and CD8+ T cells, and neither neuraminidase nor exogenous IL-2 was required. We think that these data suggest that most macrophages and small B cells lack three important functions of dendritic cells: a T cell-binding function that can be remedied by neuraminidase treatment, a T cell growth factor-inducing function that can be bypassed with exogenous IL-2, and an IL-2 responsiveness function that is required by CD4+ lymphocytes.

Animals↗

Effect of recombinant human interferon-alpha A/D on in vivo murine tumor cell growth.

We investigated the effect of human recombinant interferon-alpha A/D A/D-IFN), which is known to delay the growth of murine tumor cells, on the growth of S1 and R1 subline cells of murine Meth A fibrosarcoma in the peritoneal cavity of mice. In vitro growth of S1 cells was sensitive to, and that of R1 cells was resistant to, the direct effect of A/D-IFN, as with murine natural IFN-alpha/beta, which was used originally to isolate these sublines. In vivo, however, the growth of not only S1 cells but also R1 cells was suppressed by the administration of A/D-IFN, and the survival time of tumor-bearing mice was prolonged. Although A/D-IFN had a direct effect on S1 cells in vivo, R1 cells were susceptible only to the indirect effect via the host cells. Macrophages (M phi) harvested from the peritoneal cavity of A/D-IFN-treated mice bearing ascitic R1 cells were very effective in suppressing the in vitro growth of R1 cells; those from non-R1-bearing A/D-IFN-treated mice were less effective. The results of in vitro experiments indicate that M phi are very probably activated by the synergism of A/D-IFN and M phi diameter-activating factor(s) produced by lymphoid cells in tumor-bearing mice.

Animals↗

Down-regulation of macrophage Ia mRNA expression by interferon (IFN)-alpha and IFN-beta mediated by de novo synthesized protein.

We investigated the regulation of class I and class II major histocompatibility complex (MHC) antigen expression of murine peritoneal macrophages (M phi) by interferons (IFNs) at the mRNA level. Enhancement of class I antigen expression by IFNs (IFN-alpha, beta, and gamma), induction of class II antigen expression by IFN-gamma, and inhibition of class II antigen expression by IFN-alpha or IFN-beta all corresponded to steady-state levels of these MHC-specific mRNAs. Cycloheximide (CHX), a protein synthesis inhibitor, was used to elucidate whether IFN regulation of MHC mRNA expression depends on the newly synthesized proteins. CHX concentration was carefully chosen so that M phi viability was not decreased, total protein synthesis was considerably but not completely inhibited, and suppression of surface class II expression was virtually perfect. Under these conditions CHX did not affect the levels of either class I or class II mRNA, but it prevented IFN-beta from interfering with class II mRNA induction by IFN-gamma. These results indicate that the augmentation of induction and/or accumulation of MHC mRNA by IFNs is not dependent on the de novo synthesis of protein, but the down-regulation of class II mRNA level by IFN-beta is mediated by some newly synthesized protein(s).

Animals↗

Ontogeny of 'macrophage' function. VI. Down-regulation for Ia-expression of newborn mouse macrophages by endogenous beta-interferon.

Peritoneal exudate macrophages (M phi) of newborn mice (NB-M phi) were apparently almost incapable of expressing Ia antigen even if stimulated by IFN-gamma. No significant difference was observed in the number and the affinity of receptors for IFN-gamma between NB-M phi and M phi of adult mice (Ad-M phi). Addition of indomethacin, a prostaglandin synthesis inhibitor, was ineffective in enhancing the Ia-expression of NB-M phi. Responsiveness of NB-M phi to IFN-gamma, however, was disclosed by the addition to the culture of anti-IFN-beta or anti-IFN-alpha/beta, but not anti-IFN-alpha antibody. Responsiveness of NB-M phi to IFN-gamma was not improved by the depletion of fibroblasts from NB-M phi populations. These results strongly argue that Ia-expression of NB-M phi, which is otherwise to be induced by IFN-gamma, is suppressed by IFN-beta derived from NB-M phi themselves.

Animals↗

Contrasting effect of alpha/beta- and gamma-interferons on expression of macrophage Ia antigens.

IFN-gamma is known to induce the expression of Ia antigens on macrophages. We found that murine IFN-alpha and -beta blocked the effects of IFN-gamma in a dose-dependent manner. The antagonistic effect of IFN-alpha and -beta was observed even when macrophages were prestimulated with IFN-gamma. These inhibitory effects of IFN-alpha or -beta were blocked by their respective antibodies. The block exerted by IFN-alpha/beta was similar whether Ia levels were monitored by immunofluorescence with anti-Ia mAb, or by stimulation of freshly sensitized, alloreactive T lymphoblasts. Adherent macrophage-rich populations from newborn mice were incapable of expressing Ia antigens following stimulation with IFN-gamma, and would inhibit the response of adult macrophages to this lymphokine. Addition of anti-IFN-beta mAb, but not anti-IFN-alpha allowed newborns' macrophages to express Ia in response to IFN-gamma, and ablated the suppressive activity toward adult cells. These results indicate that IFN-alpha and -beta, which can be produced in the course of self-defense responses and during ontogeny, may contribute to the down-regulation of macrophage Ia expression.

Animals↗