Ruel Laurent, Gallet Armel, Raisin Sophie, Truchi Arnaud, Staccini-Lavenant Laurence, Cervantes Alexandra, Thérond Pascal P
Institute of Signaling, Developmental Biology and Cancer Research, CNRS UMR 6543, Université de Nice-Sophia Antipolis, Parc Valrose, 06108 Nice Cedex 02, France.
Development. 2007 Oct;134(20):3677-89. doi: 10.1242/dev.011577. Epub 2007 Sep 19.
The Hedgehog (Hh) family of secreted proteins is involved both in developmental and tumorigenic processes. Although many members of this important pathway are known, the mechanism of Hh signal transduction is still poorly understood. In this study, we analyse the regulation of the kinesin-like protein Costal2 (Cos2) by Hh. We show that a residue on Cos2, serine 572 (Ser572), is necessary for normal transduction of the Hh signal from the transmembrane protein Smoothened (Smo) to the transcriptional mediator Cubitus interruptus (Ci). This residue is located in the serine/threonine kinase Fused (Fu)-binding domain and is phosphorylated as a consequence of Fu activation. Although Ser572 does not overlap with known Smo- or Ci-binding domains, the expression of a Cos2 variant mimicking constitutive phosphorylation and the use of a specific antibody to phosphorylated Ser572 showed a reduction in the association of phosphorylated Cos2 with Smo and Ci, both in vitro and in vivo. Moreover, Cos2 proteins with an Ala or Asp substitution of Ser572 were impaired in their regulation of Ci activity. We propose that, after activation of Smo, the Fu kinase induces a conformational change in Cos2 that allows the disassembly of the Smo-Fu-Cos2-Ci complex and consequent activation of Hh target genes. This study provides new insight into the mechanistic regulation of the protein complex that mediates Hh signalling and a unique antibody tool for directly monitoring Hh receptor activity in all activated cells.
分泌蛋白刺猬(Hh)家族参与发育和肿瘤发生过程。尽管该重要信号通路的许多成员已为人所知,但Hh信号转导机制仍知之甚少。在本研究中,我们分析了Hh对驱动蛋白样蛋白Costal2(Cos2)的调控。我们发现,Cos2上的一个残基丝氨酸572(Ser572)对于Hh信号从跨膜蛋白平滑(Smo)正常转导至转录调节因子间断翅脉(Ci)是必需的。该残基位于丝氨酸/苏氨酸激酶融合(Fu)结合域,并因Fu激活而被磷酸化。尽管Ser572不与已知的Smo或Ci结合域重叠,但模拟组成型磷酸化的Cos2变体的表达以及使用针对磷酸化Ser572的特异性抗体表明,无论是在体外还是体内,磷酸化的Cos2与Smo和Ci的结合均减少。此外,Ser572被丙氨酸或天冬氨酸取代的Cos2蛋白在其对Ci活性的调控方面存在缺陷。我们提出,在Smo激活后,Fu激酶诱导Cos2发生构象变化,从而使Smo-Fu-Cos2-Ci复合物解体,进而激活Hh靶基因。本研究为介导Hh信号传导的蛋白复合物的机制调控提供了新见解,并为直接监测所有活化细胞中的Hh受体活性提供了独特的抗体工具。