Macián F, López-Rodríguez C, Rao A
Department of Pathology, Harvard Medical School and the Center for Blood Research, 200 Longwood Avenue, Boston, Massachusetts, MA 02115, USA.
Oncogene. 2001 Apr 30;20(19):2476-89. doi: 10.1038/sj.onc.1204386.
Combinatorial regulation is a powerful mechanism that enables tight control of gene expression, via integration of multiple signaling pathways that induce different transcription factors required for enhanceosome assembly. The four calcium-regulated transcription factors of the NFAT family act synergistically with AP-1 (Fos/Jun) proteins on composite DNA elements which contain adjacent NFAT and AP-1 binding sites, where they form highly stable ternary complexes to regulate the expression of diverse inducible genes. Concomitant induction of NFAT and AP-1 requires concerted activation of two different signaling pathways: calcium/calcineurin, which promotes NFAT dephosphorylation, nuclear translocation and activation; and protein kinase C (PKC)/Ras, which promotes the synthesis, phosphorylation and activation of members of the Fos and Jun families of transcription factors. A fifth member of the NFAT family, NFAT5, controls the cellular response to osmotic stress, by a mechanism that requires dimer formation and is independent of calcineurin or of interaction with AP-1. Pharmacological interference with theNFAT:AP-1 interaction may be useful in selective manipulation of the immune response. Balanced activation of NFAT and AP-1 is known to be required for productive immune responses, but the role of NFAT:AP-1 interactions in other cell types and biological processes remains to be understood.
组合调控是一种强大的机制,它通过整合多种信号通路来严格控制基因表达,这些信号通路诱导增强体组装所需的不同转录因子。NFAT家族的四种钙调节转录因子与AP-1(Fos/Jun)蛋白在含有相邻NFAT和AP-1结合位点的复合DNA元件上协同作用,在那里它们形成高度稳定的三元复合物来调节多种诱导基因的表达。NFAT和AP-1的同时诱导需要两种不同信号通路的协同激活:钙/钙调磷酸酶,它促进NFAT去磷酸化、核转位和激活;蛋白激酶C(PKC)/Ras,它促进转录因子Fos和Jun家族成员的合成、磷酸化和激活。NFAT家族的第五个成员NFAT5通过一种需要二聚体形成且独立于钙调磷酸酶或与AP-1相互作用的机制来控制细胞对渗透压应激的反应。对NFAT:AP-1相互作用的药理学干扰可能有助于选择性地调控免疫反应。已知有效的免疫反应需要NFAT和AP-1的平衡激活,但NFAT:AP-1相互作用在其他细胞类型和生物学过程中的作用仍有待了解。