Zhao Yun, Tong Chao, Jiang Jin
Department of Developmental Biology, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
Nature. 2007 Nov 8;450(7167):252-8. doi: 10.1038/nature06225. Epub 2007 Oct 24.
Hedgehog (HH) morphogen is essential for metazoan development. The seven-transmembrane protein smoothened (SMO) transduces the HH signal across the plasma membrane, but how SMO is activated remains poorly understood. In Drosophila melanogaster, HH induces phosphorylation at multiple Ser/Thr residues in the SMO carboxy-terminal cytoplasmic tail, leading to its cell surface accumulation and activation. Here we provide evidence that phosphorylation activates SMO by inducing a conformational switch. This occurs by antagonizing multiple Arg clusters in the SMO cytoplasmic tail. The Arg clusters inhibit SMO by blocking its cell surface expression and keeping it in an inactive conformation that is maintained by intramolecular electrostatic interactions. HH-induced phosphorylation disrupts the interaction, and induces a conformational switch and dimerization of SMO cytoplasmic tails, which is essential for pathway activation. Increasing the number of mutations in the Arg clusters progressively activates SMO. Hence, by employing multiple Arg clusters as inhibitory elements counteracted by differential phosphorylation, SMO acts as a rheostat to translate graded HH signals into distinct responses.
刺猬蛋白(HH)形态发生素对后生动物的发育至关重要。七次跨膜蛋白平滑受体(SMO)将HH信号转导穿过质膜,但SMO如何被激活仍知之甚少。在黑腹果蝇中,HH诱导SMO羧基末端胞质尾中的多个丝氨酸/苏氨酸残基发生磷酸化,导致其在细胞表面积累并被激活。在此,我们提供证据表明磷酸化通过诱导构象转换来激活SMO。这是通过拮抗SMO胞质尾中的多个精氨酸簇来实现的。精氨酸簇通过阻断其细胞表面表达并使其保持在由分子内静电相互作用维持的无活性构象来抑制SMO。HH诱导的磷酸化破坏了这种相互作用,并诱导了SMO胞质尾的构象转换和二聚化,这对于信号通路激活至关重要。增加精氨酸簇中的突变数量会逐渐激活SMO。因此,通过将多个精氨酸簇用作由差异磷酸化抵消的抑制元件,SMO充当变阻器,将分级的HH信号转化为不同的反应。