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M Kolosov

Publications and source records attributed to M Kolosov.

8 recordsLinked to original sources

Interleukin-1-mediated stabilization of mouse KC mRNA depends on sequences in both 5'- and 3'-untranslated regions.

mRNA transcribed from the mouse KC chemokine gene accumulated to significantly higher levels in multiple cell types after treatment with interleukin 1alpha (IL-1alpha) as compared with tumor necrosis factor-alpha (TNFalpha). Although TNFalpha and IL-1alpha both signaled the activation of nuclear factor kappaB and enhanced transcription of the KC gene with equal potency, only IL-1alpha treatment resulted in stabilization of KC mRNA. Nucleotide sequences that confer sensitivity for IL-1alpha-mediated mRNA stabilization were identified within the 5'- and 3'-untranslated regions (UTRs) of KC mRNA using transient transfection of chimeric plasmids containing specific portions of KC mRNA linked to the chloramphenicol acetyltransferase (CAT) gene. When plasmids containing either the 3'- or 5'-UTR of KC mRNA were used, the half-life of CAT mRNA was unaltered either in untreated or IL-1alpha-stimulated cells. In contrast, CAT mRNA transcribed from plasmids that contained both the 5'- and 3'-UTRs of the KC mRNA decayed more rapidly than control CAT mRNA, and this enhanced decay was prevented in cells treated with IL-1alpha. A cluster of four overlapping AUUUA motifs within the 3'-UTR was required, whereas the 5'-UTR region exhibited orientation dependence. These findings indicate that cooperative function of the two nucleotide sequences involves a distinct signaling pathway used by IL-1alpha but not TNFalpha.

3' Untranslated Regions↗

Cutting edge: clustered AU-rich elements are the target of IL-10-mediated mRNA destabilization in mouse macrophages.

In the present study we show that IL-10-mediated inhibition of inflammatory gene expression can be mediated by an AU-rich element (ARE) cluster present in the 3' untranslated region (3'UTR) of sensitive genes. A series of chloramphenicol acetyl transferase (CAT) reporter gene constructs were prepared in which different fragments from the IL-10-sensitive KC mRNA 3'UTR were placed downstream of the coding region of the reporter gene CAT. CAT mRNA containing the KC 3'UTR was markedly destabilized as compared with the control CAT mRNA, and the decay rate was further increased in cells stimulated with IL-10. The KC 3'UTR contains an ARE cluster and three isolated ARE motifs. The ARE cluster spanning nucleotides 378-399 appeared to be both necessary and sufficient to mediate sensitivity to IL-10 because a 116-nucleotide fragment that contains the cluster conferred sensitivity, while mutation of the sequence between positions 378 and 399 eliminated sensitivity. The destabilizing effect of IL-10 was relatively selective, as the stability of chimeric CAT mRNAs was not modulated in cells treated with IFN-gamma or IL-4.

3' Untranslated Regions↗

IFN-alpha beta reconstitutes the deficiency in lipid A-activated AKR macrophages for nitric oxide synthase.

AKR mouse peritoneal macrophages (PM) were previously found to have a defect in their response to lipid A for nitric oxide (NO)-mediated tumor cytotoxicity, which was related to a lower level of C1q synthesis and reconstituted by exogenous IFN-gamma or C1q. We used AKR-PM as a model to further define the role of IFN-alpha beta in modulation of induction of macrophage nitric oxide synthase (NOS) in response to lipid A. Studies have revealed that AKR-PM produced a significantly lower level of IFN-alpha beta than responsive C3H-PM in response to lipid A. AKR-PM failed to increase NOS mRNA synthesis and NO generation when exposed to lipid A, although they had normal levels of TNF-alpha bioactivity and mRNA expression. This partial deficiency of AKR-PM to lipid A stimulation was reconstituted completely by exogenous IFN-alpha beta for both synthesis of NOS mRNA and release of NO. The failure of AKR-PM to produce NOS to lipid A stimulation appears to be related to reduced secretion of IFN-alpha beta and the resultant failure to express TNF-alpha type II receptor (TNF-RII) mRNA, which in turn decreases TNF-alpha binding to its receptor for autocrine induction of NOS. Insufficient synthesis and secretion of endogenous IFN-alpha beta may be the primary reason for AKR-PM refractoriness to induction of NOS in response to lipid A. furthermore, the close correlation between lack of IFN-alpha beta secretion and decreased TNF-RII mRNA synthesis may implicate a critical role for IFN-alpha beta in the upregulation of macrophage TNF-RII receptor expression for autocrine induction of NOS during lipid A stimulation.

Animals↗

Evidence for endogenous C1q modulates TNF-alpha receptor synthesis and autocrine binding of TNF-alpha associated with lipid A activation of murine macrophages for nitric oxide production.

The role of endogenously synthesized complement subcomponent C1q on autocrine binding of tumor necrosis factors (TNF-alpha) and on TNF-alpha receptor (TNF-R) mRNA synthesis by mouse macrophages was investigated. Activation of C3H mouse peritoneal macrophages (C3H-PM phi) by Lipid A induced TNF-alpha and nitric oxide (NO) to kill tumor targets. Such activation also increased macrophage-endogenous C1q synthesis and secretion in a dose-dependent fashion. Antibody for C1q markedly inhibited C3H-PM phi NO production in response to Lipid A, but had no effect on TNF-alpha production. C3H-PM phi treated with C1q or Lipid A displayed increased TNF-R mRNA synthesis and in combination with Lipid A and anti-C1q antibody inhibited TNF-R and nitric oxide synthase (NOS) mRNA synthesis compared with Lipid A only, but had no effect on TNF mRNA synthesis. In vitro treatment of C3H-PM phi with C1q also increased TNF-alpha binding to their surfaces. Taken together, the data indicate that endogenously synthesized C1q is operative in promoting TNF-R mRNA synthesis and resultant autocrine binding of TNF-alpha for induction of NOS in the process of NO-mediated tumor cytotoxicity by Lipid A-activated macrophages.

Adjuvants, Immunologic↗

Autocrine induction of macrophage synthesis of complement subcomponent C1q by endogenous interferon-alpha/beta.

Peritoneal macrophages (M phi) constitutively synthesize and secrete interferon-alpha (IFN-alpha) and IFN-beta, as well as complement subcomponent C1q. Because exogenous interferon-gamma (IFN-gamma) stimulates Mø synthesis of C1q, our purpose was to determine if endogenous secretion of IFN-alpha/beta regulated the constitutive level of endogenous C1q mRNA synthesis in an autocrine fashion. Both exogenous IFN-alpha and IFN-beta effectively substituted for IFN-gamma in stimulating M phi C1q mRNA expression in a dose-dependent fashion by northern blot analysis. Neutralizing anti-INF-alpha/beta antibodies inhibited M phi constitutive C1q mRNA synthesis by approximately twofold and abrogated the feedback stimulatory effects of exogenous C1q on C1q mRNA expression. Paraffin oil-elicited inflammatory M phi displayed distinctively different constitutive levels of C1q mRNA expression from thioglycollate brothelicited M phi, which was correlated with their relative levels of secretory IFN-alpha/beta by ELISA. Exogenous IFN-alpha/beta also restored C1q mRNA synthesis of AKR mouse M phi with low constitutive C1q mRNA expression. The cumulative results support the concept that constitutive synthesis of C1q by M phi is regulated by the endogenous synthesis and secretion of IFN-alpha/beta, which appears to act in an autocrine fashion.

Animals↗

Stimulation of macrophage synthesis of complement C1q by interferon-gamma mediated by endogenous interferon-alpha/beta.

Both exogenous interferon-gamma (IFN-gamma) and interferon-alpha/beta (IFN-alpha/beta) stimulate C1q mRNA synthesis in murine macrophages. Previous studies suggested that IFN-gamma induced endogenous synthesis of IFN-alpha/beta by murine macrophages. In the present study, we determined the indirect effect of IFN-gamma on macrophage synthesis of C1q mRNA mediated by endogenous IFN-alpha/beta production. Upregulation of macrophage synthesis of C1q mRNA by both IFN-gamma and IFN-alpha/beta was reversed by neutralizing antibody to IFN-alpha/beta but not by nonimmune control serum. IFN-gamma was confirmed by ELISA to stimulate a six- to eightfold increase in macrophage secretion of IFN-alpha/beta compared with untreated control cells. We tentatively conclude that IFN-gamma stimulates macrophage synthesis and secretion of IFN-alpha/beta, which in turn promotes C1q mRNA synthesis in an autocrine or paracrine manner. Thus, exogenous IFN-gamma, derived from activated T lymphocytes, may act primarily on the macrophage to stimulate the endogenous synthesis of IFN-alpha/beta for autocrine modulation of a variety of biologic functions, including C1q synthesis.

Animals↗

mRNA stabilization in continuous flow translation system.

In contrast with standard in vitro translation systems, where 1 to 2 copies of polypeptide per mRNA molecule are produced, the continuous flow cell-free translation system is able to synthesize hundreds of polypeptide molecules per one mRNA molecule. Our investigations have shown that the poor yield obtained in the standard analytical system is due to rapid mRNA decay as opposed feedback inhibition by low molecular weight translation by products. In contrast, continuous flow system was found to stabilize mRNA for up to two-three days. RNAse activity can not be removed from wheat germ extract unless mRNA is added and compartmentalization of the translational machinery occurs.

Cell-Free System↗

Exogenous interferon-gamma induces endogenous synthesis of interferon-alpha and -beta by murine macrophages for induction of nitric oxide synthase.

Murine macrophages (M phi) are activated either by interferon-gamma (IFN-gamma) or interferon-alpha/beta (IFN-alpha/beta) in combination with bacterial lipopolysaccharide (LPS) to induce synthesis of tumor necrosis factor alpha (TNF-alpha) and nitric oxide synthase (iNOS) mRNA synthesis for generation of tumor cytotoxic nitric oxide (NO). In the present study, the effect of exogenous IFN-gamma on the induction of endogenous mRNA synthesis and secretion of IFN-alpha/beta by murine M phi was investigated. Neutralizing antibodies to IFN-alpha/beta reversed TNF-alpha and NOS mRNA synthesis, as well as nitric oxide (NO)-mediated tumor cytotoxicity. Quantitative reverse transcription polymerase chain reaction (RT-PCR) revealed that treatment of M phi with IFN-gamma induced increases in both IFN-alpha and IFN-beta mRNA synthesis by approximately 2-fold and 10-fold, respectively, which corresponded to a 2-fold increase in secretion of IFN-alpha/beta by ELISA. These data indicate that exogenous IFN-gamma induces endogenous synthesis and secretion of IFN-alpha/beta by M phi, which appears to act in concert with endogenously synthesized TNF-alpha for the autocrine induction of NOS mRNA synthesis.

Animals↗