Stulic Mate, Lubin Farah D, O'Donnell Phyllis M, Tammariello Steven P, McGee Dennis W
Department of Biological Sciences, Binghamton University (SUNY), Binghamton, NY 13902-6000, USA.
Cytokine. 2007 Feb;37(2):163-70. doi: 10.1016/j.cyto.2007.03.010. Epub 2007 May 3.
Intestinal epithelial cells (IEC) are capable of responding to IL-1 stimulation by producing a variety of pro-inflammatory cytokines. Recently, we have found that binding of the alpha3beta1 integrin may have a regulatory effect on IL-1 responses and intracellular signaling by suppressing cytokine secretion, mRNA expression and the downstream intracellular signaling events from IKK to NF-kappaB activation. In this study, we extend these findings by showing that treatment of the Caco-2 epithelial cells with a cross-linking anti-alpha3 integrin antibody resulted in a suppression in the levels of IL-1 induced AP-1 binding activity in nuclear extracts. Furthermore, suppressed levels of IL-1 induced c-Jun N-terminal kinase (JNK) phosphorylation and kinase activity were seen with the antibody treated cells. Cells cultured on purified laminin-5, the ligand for the alpha3beta1 integrin, did not show significantly elevated levels of JNK phosphorylation after IL-1 stimulation while cells cultured on fibronectin yielded significantly elevated levels of IL-1 induced JNK phosphorylation. These results indicate that binding of the alpha3beta1 integrin results in a suppression in the activation of the IL-1 induced intracellular signaling pathway from JNK to AP-1. This novel regulatory effect may be a potentially important mechanism to regulate IL-1 mediated responses by IEC.
肠上皮细胞(IEC)能够通过产生多种促炎细胞因子来响应白细胞介素-1(IL-1)刺激。最近,我们发现α3β1整合素的结合可能通过抑制细胞因子分泌、mRNA表达以及从IKK到核因子-κB(NF-κB)激活的下游细胞内信号事件,对IL-1反应和细胞内信号传导产生调节作用。在本研究中,我们通过用交联抗α3整合素抗体处理Caco-2上皮细胞,导致核提取物中IL-1诱导的活化蛋白-1(AP-1)结合活性水平受到抑制,从而扩展了这些发现。此外,在用抗体处理的细胞中观察到IL-1诱导的c-Jun氨基末端激酶(JNK)磷酸化和激酶活性水平受到抑制。在纯化的层粘连蛋白-5(α3β1整合素的配体)上培养的细胞,在IL-1刺激后未显示出JNK磷酸化水平明显升高,而在纤连蛋白上培养的细胞产生了IL-1诱导的JNK磷酸化水平显著升高。这些结果表明,α3β1整合素的结合导致从JNK到AP-1的IL-1诱导的细胞内信号通路的激活受到抑制。这种新的调节作用可能是调节IEC介导的IL-1反应的潜在重要机制。