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一种广泛保守的G蛋白偶联受体激酶磷酸化机制控制果蝇的Smoothened活性。

A broadly conserved g-protein-coupled receptor kinase phosphorylation mechanism controls Drosophila smoothened activity.

作者信息

Maier Dominic, Cheng Shuofei, Faubert Denis, Hipfner David R

机构信息

Institut de recherches cliniques de Montréal (IRCM), Montreal, Quebec, Canada; Department of Anatomy & Cell Biology, McGill University, Montreal, Quebec, Canada.

Institut de recherches cliniques de Montréal (IRCM), Montreal, Quebec, Canada; Proteomics Core Facility, IRCM, Montreal, Quebec, Canada.

出版信息

PLoS Genet. 2014 Jul 10;10(7):e1004399. doi: 10.1371/journal.pgen.1004399. eCollection 2014 Jul.

Abstract

Hedgehog (Hh) signaling is essential for normal growth, patterning, and homeostasis of many tissues in diverse organisms, and is misregulated in a variety of diseases including cancer. Cytoplasmic Hedgehog signaling is activated by multisite phosphorylation of the seven-pass transmembrane protein Smoothened (Smo) in its cytoplasmic C-terminus. Aside from a short membrane-proximal stretch, the sequence of the C-terminus is highly divergent in different phyla, and the evidence suggests that the precise mechanism of Smo activation and transduction of the signal to downstream effectors also differs. To clarify the conserved role of G-protein-coupled receptor kinases (GRKs) in Smo regulation, we mapped four clusters of phosphorylation sites in the membrane-proximal C-terminus of Drosophila Smo that are phosphorylated by Gprk2, one of the two fly GRKs. Phosphorylation at these sites enhances Smo dimerization and increases but is not essential for Smo activity. Three of these clusters overlap with regulatory phosphorylation sites in mouse Smo and are highly conserved throughout the bilaterian lineages, suggesting that they serve a common function. Consistent with this, we find that a C-terminally truncated form of Drosophila Smo consisting of just the highly conserved core, including Gprk2 regulatory sites, can recruit the downstream effector Costal-2 and activate target gene expression, in a Gprk2-dependent manner. These results indicate that GRK phosphorylation in the membrane proximal C-terminus is an evolutionarily ancient mechanism of Smo regulation, and point to a higher degree of similarity in the regulation and signaling mechanisms of bilaterian Smo proteins than has previously been recognized.

摘要

刺猬信号通路(Hh)对于多种生物体中许多组织的正常生长、模式形成和体内平衡至关重要,并且在包括癌症在内的多种疾病中失调。细胞质中的刺猬信号通路通过七次跨膜蛋白平滑化蛋白(Smo)的细胞质C末端的多位点磷酸化而被激活。除了靠近膜的一小段序列外,C末端的序列在不同门中高度不同,并且有证据表明Smo激活以及信号向下游效应器转导的精确机制也不同。为了阐明G蛋白偶联受体激酶(GRKs)在Smo调节中的保守作用,我们绘制了果蝇Smo膜近端C末端被果蝇的两个GRKs之一Gprk2磷酸化的四个磷酸化位点簇。这些位点的磷酸化增强了Smo的二聚化并增加了Smo的活性,但不是必需的。其中三个簇与小鼠Smo中的调节性磷酸化位点重叠,并且在整个两侧对称动物谱系中高度保守,这表明它们具有共同的功能。与此一致,我们发现果蝇Smo的C末端截短形式仅由高度保守的核心组成,包括Gprk2调节位点,能够以Gprk2依赖的方式募集下游效应器Costal-2并激活靶基因表达。这些结果表明,膜近端C末端的GRK磷酸化是Smo调节的一种进化上古老的机制,并表明两侧对称动物Smo蛋白在调节和信号传导机制上的相似程度比以前认识到的更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a834/4091690/e90d262df741/pgen.1004399.g001.jpg

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