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首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Lipopolysaccharide tolerance in murine peritoneal macrophages induces downregulation of the lipopolysaccharide signal transduction pathway through mitogen-activated protein kinase and nuclear factor-kappaB cascades, but not lipopolysaccharide-incorpo
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Lipopolysaccharide tolerance in murine peritoneal macrophages induces downregulation of the lipopolysaccharide signal transduction pathway through mitogen-activated protein kinase and nuclear factor-kappaB cascades, but not lipopolysaccharide-incorpo

机译:小鼠腹膜巨噬细胞中的脂多糖耐受性通过有丝分裂原激活的蛋白激酶和核因子-κB级联反应而不是脂多糖-内含物诱导脂多糖信号转导途径的下调

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Endotoxin/lipopolysaccharide (LPS) tolerance, a hyporesponsive state to endotoxin or LPS stimulation, was induced in murine peritoneal macrophages by previous exposure of macrophages to LPS. Expression of tumor necrosis factor (TNF)-alpha and interleukin (IL)-6 mRNA in response to LPS stimulation was suppressed in LPS-tolerant macrophages. Tyrosine phosphorylations in response to LPS of 40-45-kDa proteins in non-tolerant macrophages were also suppressed in LPS-tolerant macrophages. These proteins corresponded to two members of the mitogen-activated protein kinase (MAPK) family, ERK and p38. In addition to these proteins, another MAPK family protein, JNK, was also suppressed in LPS-tolerant macrophages. Activation of Raf-1, located in the upstream portion of ERK cascades, was also suppressed by LPS-tolerance induction. These suppressions in LPS-tolerant macrophages were exhibited against stimulation by an LPS agonist like taxol, but not towards stimulation by an unrelated activator like phorbol ester (PMA). Activation of the transcription factor NF-kappaB, which is supposed to be one of the components of another important pathway for transduction of LPS-stimulated cytokine producing signals, was strongly suppressed and degradation of IkappaB, an inhibitor of NF-kappaB, was also severely diminished in LPS-tolerant macrophages. Although a monosaccharide lipid A analog, GLA-58, was able to stimulate macrophages to activate ERK proteins without cytokine production, pretreatment of macrophages with this compound suppressed both LPS-stimulated activation of ERK and cytokine production. Furthermore, downregulation of LPS-uptake in LPS-tolerant macrophages was not observed. Based on all these findings, LPS tolerance might be caused by the previous activation of some components on LPS-signaling pathways. This may then induce a refractory state in key LPS-signal transducer molecules located downstream of the cell membrane LPS receptor and upstream of the branching point in intracellular cascades for activation of MAPK and NF-kappaB, probably in some initial steps of intracellular signaling.
机译:内毒素/脂多糖(LPS)耐受性,对内毒素或LPS刺激的反应低下状态,是通过事先使巨噬细胞接触LPS诱导的。在耐LPS的巨噬细胞中,响应LPS刺激的肿瘤坏死因子(TNF)-α和白介素(IL)-6 mRNA的表达被抑制。在耐LPS的巨噬细胞中,对非耐受巨噬细胞中的40-45-kDa蛋白的LPS的酪氨酸磷酸化也被抑制。这些蛋白质对应于有丝分裂原激活的蛋白激酶(MAPK)家族的两个成员,ERK和p38。除这些蛋白外,另一种MAPK家族蛋白JNK在耐LPS的巨噬细胞中也被抑制。 LPS耐受诱导也抑制了位于ERK级联上游的Raf-1的激活。这些对LPS耐受的巨噬细胞的抑制作用是针对LPS激动剂(如紫杉酚)的刺激而表现出来的,而不是针对无关的活化剂(佛波酯(PMA))的刺激。转录因子NF-kappaB的激活被认为是LPS刺激的细胞因子产生信号转导的另一个重要途径的组成部分,其激活被强烈抑制,并且NF-kappaB的抑制剂IkappaB的降解也被严重地抑制了。在耐LPS的巨噬细胞中减少。尽管单糖脂质A类似物GLA-58能够刺激巨噬细胞激活ERK蛋白而无细胞因子生成,但是用该化合物预处理巨噬细胞既抑制了LPS刺激的ERK激活,也抑制了细胞因子生成。此外,未观察到耐LPS的巨噬细胞中LPS摄取的下调。基于所有这些发现,LPS耐受性可能是由LPS信号通路中某些成分的先前激活引起的。然后,这可能会在细胞内LPS受体下游和细胞内级联中分支点上游的关键LPS信号转导分子中诱导难治性状态,以激活MAPK和NF-κB,可能是在细胞内信号转导的某些初始步骤中。

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