Sun Huaiyu, Bristow Benjamin N, Qu Guowei, Wasserman Steven A
Center for Molecular Genetics, Section of Cell and Developmental Biology, Division of Biology, University of California at San Diego, La Jolla, CA 92093, USA.
Proc Natl Acad Sci U S A. 2002 Oct 1;99(20):12871-6. doi: 10.1073/pnas.202396399. Epub 2002 Sep 26.
Signaling from the transmembrane receptor Toll to Rel-related transcription factors regulates dorsoventral patterning of the Drosophila embryo, as well as larval and adult immunity. To identify additional pathway components, we have used double-stranded RNA interference to investigate Drosophila counterparts of genes that regulate the mammalian Rel family member NF-kappaB. Experiments in cultured cells reveal that the fly orthologue of the adaptor protein MyD88 is essential for signal transduction from Toll to a second adaptor protein, Tube. By using coimmunoprecipitation studies, we find a heterotrimeric association of the death domains of MyD88, Tube, and the protein kinase Pelle. Site-directed mutational analyses of interaction sites defined by crystallographic studies demonstrate that Tube recruits MyD88 and Pelle into the heterotrimer by two distinct binding surfaces on the Tube death domain. Furthermore, functional assays confirm that the formation of this heterotrimer is critical for signal transduction by the Toll pathway.
跨膜受体Toll向Rel相关转录因子发出的信号调控果蝇胚胎的背腹模式形成,以及幼虫和成虫的免疫反应。为了鉴定其他通路成分,我们利用双链RNA干扰来研究调控哺乳动物Rel家族成员NF-κB的基因在果蝇中的对应基因。在培养细胞中进行的实验表明,衔接蛋白MyD88的果蝇直系同源物对于从Toll到另一个衔接蛋白Tube的信号转导至关重要。通过共免疫沉淀研究,我们发现MyD88、Tube和蛋白激酶Pelle的死亡结构域存在异源三聚体结合。对晶体学研究确定的相互作用位点进行定点突变分析表明,Tube通过Tube死亡结构域上两个不同的结合表面将MyD88和Pelle招募到异源三聚体中。此外,功能分析证实这种异源三聚体的形成对于Toll通路的信号转导至关重要。