Bikkavilli Rama Kamesh, Feigin Michael E, Malbon Craig C
Department of Pharmacology, Health Sciences Center, State University of New York at Stony Brook, Stony Brook, NY 11794-8651, USA.
J Cell Sci. 2008 Jan 15;121(Pt 2):234-45. doi: 10.1242/jcs.021964.
In Drosophila, activation of Jun N-terminal Kinase (JNK) mediated by Frizzled and Dishevelled leads to signaling linked to planar cell polarity. A biochemical delineation of WNT-JNK planar cell polarity was sought in mammalian cells, making use of totipotent mouse F9 teratocarcinoma cells that respond to WNT3a via Frizzled-1. The canonical WNT-beta-catenin signaling pathway requires both G alpha o and G alpha q heterotrimeric G-proteins, whereas we show that WNT-JNK signaling requires only G alpha o protein. G alpha o propagates the signal downstream through all three Dishevelled isoforms, as determined by epistasis experiments using the Dishevelled antagonist Dapper1 (DACT1). Suppression of either Dishevelled-1 or Dishevelled-3, but not Dishevelled-2, abolishes WNT3a activation of JNK. Activation of the small GTPases RhoA, Rac1 and Cdc42 operates downstream of Dishevelled, linking to the MEKK 1/MEKK 4-dependent cascade, and on to JNK activation. Chemical inhibitors of JNK (SP600125), but not p38 (SB203580), block WNT3a activation of JNK, whereas both the inhibitors attenuate the WNT3a-beta-catenin pathway. These data reveal both common and unique signaling elements in WNT3a-sensitive pathways, highlighting crosstalk from WNT3a-JNK to WNT3a-beta-catenin signaling.
在果蝇中,由卷曲蛋白(Frizzled)和散乱蛋白(Dishevelled)介导的Jun氨基末端激酶(JNK)激活会导致与平面细胞极性相关的信号传导。利用通过卷曲蛋白-1对WNT3a有反应的全能小鼠F9畸胎瘤细胞,在哺乳动物细胞中对WNT-JNK平面细胞极性进行了生化分析。经典的WNT-β-连环蛋白信号通路需要Gαo和Gαq异源三聚体G蛋白,而我们发现WNT-JNK信号传导仅需要Gαo蛋白。通过使用散乱蛋白拮抗剂Dapper1(DACT1)的上位性实验确定,Gαo通过所有三种散乱蛋白异构体向下游传递信号。抑制散乱蛋白-1或散乱蛋白-3,但不抑制散乱蛋白-2,会消除WNT3a对JNK的激活。小GTP酶RhoA、Rac1和Cdc42的激活在散乱蛋白下游起作用,与MEKK 1/MEKK 4依赖性级联相关,并进而激活JNK。JNK的化学抑制剂(SP600125),而非p38的化学抑制剂(SB203580),可阻断WNT3a对JNK的激活,而这两种抑制剂都会减弱WNT3a-β-连环蛋白信号通路。这些数据揭示了WNT3a敏感信号通路中共同和独特的信号元件,突出了从WNT3a-JNK到WNT3a-β-连环蛋白信号传导的相互作用。