Smelkinson Margery G, Kalderon Daniel
Department of Biological Sciences, Columbia University, New York, New York 10027, USA.
Curr Biol. 2006 Jan 10;16(1):110-6. doi: 10.1016/j.cub.2005.12.012. Epub 2005 Dec 29.
Signaling by extracellular Hedgehog (Hh) molecules is crucial for the correct allocation of cell fates and patterns of cell proliferation in humans and other organisms . Responses to Hh are universally mediated by regulating the activity and the proteolysis of the Gli family of transcriptional activators such that they induce target genes only in the presence of Hh . In the absence of Hh, the sole Drosophila Gli homolog, Cubitus interruptus (Ci), undergoes partial proteolysis to Ci-75, which represses key Hh target genes . This processing requires phosphorylation of full-length Ci (Ci-155) by protein kinase A (PKA), casein kinase 1 (CK1), and glycogen synthase kinase 3 (GSK3), as well as the activity of Slimb . Slimb is homologous to vertebrate beta-TRCP1, which binds as part of an SCF (Skp1/Cullin1/F-box) complex to a defined phosphopeptide motif to target proteins for ubiquitination and subsequent proteolysis . Here, we show that phosphorylation of Ci at the specific PKA, GSK-3, and CK1 sites required in vivo for partial proteolysis stimulates binding to Slimb in vitro. Furthermore, a consensus Slimb/beta-TRCP1 binding site from another protein can substitute for phosphorylated residues of Ci-155 to direct conversion to Ci-75 in vivo. From this, we conclude that Slimb binds directly to phosphorylated Ci-155 to initiate processing to Ci-75. We also explore the phosphorylated motifs in Ci that are recognized by Slimb and provide some evidence that silencing of Ci-155 by phosphorylation may involve more than binding to Slimb.
细胞外刺猬因子(Hh)分子发出的信号对于人类和其他生物体中细胞命运的正确分配以及细胞增殖模式至关重要。对Hh的反应普遍通过调节转录激活因子Gli家族的活性和蛋白水解来介导,从而使它们仅在Hh存在时诱导靶基因。在没有Hh的情况下,果蝇唯一的Gli同源物,即分节翅(Ci),会经历部分蛋白水解成为Ci-75,后者会抑制关键的Hh靶基因。这种加工过程需要蛋白激酶A(PKA)、酪蛋白激酶1(CK1)和糖原合酶激酶3(GSK3)对全长Ci(Ci-155)进行磷酸化,以及Slimb的活性。Slimb与脊椎动物的β-TRCP1同源,β-TRCP1作为SCF(Skp1/Cullin1/F-box)复合物的一部分,与特定的磷酸肽基序结合,将蛋白质靶向泛素化并随后进行蛋白水解。在这里,我们表明,体内部分蛋白水解所需的特定PKA、GSK-3和CK1位点上Ci的磷酸化在体外刺激了与Slimb的结合。此外,来自另一种蛋白质的一致Slimb/β-TRCP1结合位点可以替代Ci-155的磷酸化残基,以在体内指导其转化为Ci-75。由此,我们得出结论,Slimb直接与磷酸化的Ci-155结合,以启动向Ci-75的加工过程。我们还探索了Slimb识别的Ci中的磷酸化基序,并提供了一些证据表明,通过磷酸化使Ci-155沉默可能涉及的不仅仅是与Slimb的结合。