Castrillo A, de Las Heras B, Hortelano S, Rodriguez B, Villar A, Bosca L
Instituto de Bioquimica, Centro Mixto Consejo Superior de Investigaciones Cientificas-Universidad Complutense de Madrid, Spain.
J Biol Chem. 2001 May 11;276(19):15854-60. doi: 10.1074/jbc.M100010200. Epub 2001 Feb 9.
The anti-inflammatory action of most terpenes has been explained in terms of the inhibition of nuclear factor kappaB (NF-kappaB) activity. Ent-kaurene diterpenes are intermediates of the synthesis of gibberellins and inhibit the expression of NO synthase-2 and the release of tumor necrosis factor-alpha in J774 macrophages challenged with lipopolysaccharide. These diterpenes inhibit NF-kappaB and IkappaB kinase (IKK) activation in vivo but failed to affect in vitro the function of NF-kappaB, the phosphorylation and targeting of IkappaBalpha, and the activity of IKK-2. Transient expression of NF-kappaB-inducing kinase (NIK) activated the IKK complex and NF-kappaB, a process that was inhibited by kaurenes, indicating that the inhibition of NIK was one of the targets of these diterpenes. These results show that kaurenes impair the inflammatory signaling by inhibiting NIK, a member of the MAPK kinase superfamily that interacts with tumor necrosis factor receptor-associated factors, and mediate the activation of NF-kappaB by these receptors. Moreover, kaurenes delayed the phosphorylation of p38, ERK1, and ERK2 MAPKs, but not that of JNK, in response to lipopolysaccharide treatment of J774 cells. The absence of a coordinate activation of MAPK and IKK might contribute to a deficient activation of NF-kappaB that is involved in the anti-inflammatory activity of these molecules.
大多数萜类化合物的抗炎作用已根据对核因子κB(NF-κB)活性的抑制来解释。对映-贝壳杉烯二萜是赤霉素合成的中间体,可抑制脂多糖刺激的J774巨噬细胞中一氧化氮合酶-2的表达和肿瘤坏死因子-α的释放。这些二萜在体内抑制NF-κB和IκB激酶(IKK)的激活,但在体外未能影响NF-κB的功能、IκBα的磷酸化和靶向以及IKK-2的活性。NF-κB诱导激酶(NIK)的瞬时表达激活了IKK复合物和NF-κB,这一过程被贝壳杉烯抑制,表明对NIK的抑制是这些二萜的靶点之一。这些结果表明,贝壳杉烯通过抑制NIK来损害炎症信号传导,NIK是丝裂原活化蛋白激酶(MAPK)激酶超家族的成员,与肿瘤坏死因子受体相关因子相互作用,并介导这些受体对NF-κB的激活。此外,在对J774细胞进行脂多糖处理后,贝壳杉烯延迟了p38、ERK1和ERK2 MAPK的磷酸化,但未延迟JNK的磷酸化。MAPK和IKK缺乏协同激活可能导致这些分子抗炎活性中涉及的NF-κB激活不足。