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Dickkopf-2的第二个富含半胱氨酸结构域通过低密度脂蛋白受体相关蛋白6(LRP-6)激活经典Wnt信号通路,且不依赖于蓬乱蛋白。

Second cysteine-rich domain of Dickkopf-2 activates canonical Wnt signaling pathway via LRP-6 independently of dishevelled.

作者信息

Li Lin, Mao Junhao, Sun Le, Liu Wenzhong, Wu Dianqing

机构信息

Department of Genetics and Developmental Biology, University of Connecticut, Farmington, Connecticut 06030, USA.

出版信息

J Biol Chem. 2002 Feb 22;277(8):5977-81. doi: 10.1074/jbc.M111131200. Epub 2001 Dec 12.

Abstract

Recent evidence suggests that members of the Dickkopf (Dkk) family can directly bind to LDL-related protein (LRP)-6, resulting in inhibition of Wnt-activated signaling. To further characterize the interactions between Dkk and LRP proteins, conditioned media containing individually conserved cysteine-rich domains of Dkk-1 and Dkk-2 were prepared. Although full-length Dkk-1 and Dkk-2 and the second cysteine-rich domains of both Dkk molecules inhibited Wnt-3a-induced activation of lymphoid enhancing factor (LEF)-1, a downstream target of the canonical pathway, we found that the second cysteine-rich domain of Dkk-2 (Dkk-2C2) was able to stimulate the canonical pathway when LRP-6 was ectopically expressed in NIH3T3 cells. This effect of Dkk-2C2 could be blocked by a monoclonal antibody specific to the second YWTD repeat domain of LRP-5/6, suggesting that Dkk-2C2 acts via LRP-6. We also showed that while both Axin and the DIX domain of Dishevelled (Dvl) could inhibit Dkk-2C2-induced activation of LEF-1, the DEP domain of Dvl, which inhibited Wnt-induced activation of LEF-1, failed to inhibit the activation of LEF-1 by Dkk-2C2 or by an activated form of LRP-5, LRPC2. In addition, glycogen synthase kinase-3 beta, a potent inhibitor for both Dvl and Wnt, also failed to inhibit LRPC2 or Dkk-2C2. Furthermore, knocking-down the expression of Dvl molecules by short interfering RNAs specific to Dvl inhibited Wnt-induced, but not LRPC2-induced, activation of LEF-1. All the evidence indicates that Dkk-2C2 signals through LRP proteins, which does not require Dvl, while Wnt protein may employ both Dvl, presumably through Fz, and LRP to achieve more efficient signal transduction.

摘要

最近有证据表明,Dickkopf(Dkk)家族成员可直接与低密度脂蛋白相关蛋白(LRP)-6结合,从而抑制Wnt激活的信号传导。为了进一步阐明Dkk与LRP蛋白之间的相互作用,制备了分别含有Dkk-1和Dkk-2保守富半胱氨酸结构域的条件培养基。尽管全长Dkk-1和Dkk-2以及两个Dkk分子的第二个富半胱氨酸结构域均抑制了Wnt-3a诱导的淋巴细胞增强因子(LEF)-1的激活,LEF-1是经典途径的下游靶点,但我们发现,当LRP-6在NIH3T3细胞中异位表达时Dkk-2的第二个富半胱氨酸结构域(Dkk-2C2)能够刺激经典途径。Dkk-2C2的这种作用可被针对LRP-5/6第二个YWTD重复结构域的单克隆抗体阻断,这表明Dkk-2C2通过LRP-6发挥作用。我们还表明,虽然Axin和Dishevelled(Dvl)的DIX结构域均可抑制Dkk-2C2诱导的LEF-激活,但抑制Wnt诱导的LEF-1激活的Dvl的DEP结构域却无法抑制Dkk-2C2或活化形式的LRP-5即LRPC2诱导的LEF-1激活。此外,糖原合酶激酶-3β是Dvl和Wnt的强效抑制剂,也无法抑制LRPC2或Dkk-2C2。此外,用针对Dvl的小干扰RNA敲低Dvl分子的表达可抑制Wnt诱导的但不能抑制LRPC2诱导的LEF-1激活。所有证据表明,Dkk-2C2通过LRP蛋白发出信号,这一过程不需要Dvl,而Wnt蛋白可能同时利用Dvl(大概是通过Fz)和LRP来实现更有效的信号转导。

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