Casso David J, Liu Songmei, Iwaki D David, Ogden Stacey K, Kornberg Thomas B
Department of Pharmacology and Toxicology, Dartmouth Medical School, Hanover, New Hampshire 03755, USA.
Genetics. 2008 Mar;178(3):1399-413. doi: 10.1534/genetics.107.081638. Epub 2008 Feb 3.
Signaling by Hedgehog (Hh) proteins shapes most tissues and organs in both vertebrates and invertebrates, and its misregulation has been implicated in many human diseases. Although components of the signaling pathway have been identified, key aspects of the signaling mechanism and downstream targets remain to be elucidated. We performed an enhancer/suppressor screen in Drosophila to identify novel components of the pathway and identified 26 autosomal regions that modify a phenotypic readout of Hh signaling. Three of the regions include genes that contribute constituents to the pathway-patched, engrailed, and hh. One of the other regions includes the gene microtubule star (mts) that encodes a subunit of protein phosphatase 2A. We show that mts is necessary for full activation of Hh signaling. A second region includes the gene second mitotic wave missing (swm). swm is recessive lethal and is predicted to encode an evolutionarily conserved protein with RNA binding and Zn(+) finger domains. Characterization of newly isolated alleles indicates that swm is a negative regulator of Hh signaling and is essential for cell polarity.
刺猬索尼克(Hh)蛋白信号传导塑造了脊椎动物和无脊椎动物的大多数组织和器官,其失调与许多人类疾病有关。尽管已经确定了信号通路的组成部分,但信号传导机制和下游靶点的关键方面仍有待阐明。我们在果蝇中进行了增强子/抑制子筛选,以鉴定该通路的新成分,并确定了26个常染色体区域,这些区域可改变Hh信号传导的表型读数。其中三个区域包含对该通路有贡献的基因——patched、engrailed和hh。其他区域之一包含编码蛋白磷酸酶2A亚基的微管星(mts)基因。我们表明,mts对于Hh信号传导的完全激活是必需的。第二个区域包含第二次有丝分裂波缺失(swm)基因。swm是隐性致死的,预计编码一种具有RNA结合和锌(+)指结构域的进化保守蛋白。新分离等位基因的特征表明,swm是Hh信号传导的负调节因子,对细胞极性至关重要。