Shen B, Manley J L
Department of Biological Sciences, Columbia University, New York, NY 10027, USA.
Development. 1998 Dec;125(23):4719-28. doi: 10.1242/dev.125.23.4719.
Determination of dorsal/ventral polarity in Drosophila requires 12 genetically defined, maternally encoded proteins. These include Toll, a transmembrane receptor, Pelle, a ser/thr protein kinase and Tube, all of which function intracytoplasmically to initiate the cascade that ultimately activates Dorsal, an NF-kappaB family transcription factor. Here we describe biochemical interactions between recombinant Toll, Pelle and Tube that provide insights into early events in activation of the signaling cascade. We first show that Pelle binds directly to a region within the Toll intracytoplasmic domain, providing the first evidence that these two evolutionarily conserved molecules physically interact. We then demonstrate that Pelle can be autophosphorylated, and that this prevents binding to Toll as well as Tube. Autophosphorylation occurs in the N-terminal, death-domain-containing region of Pelle, which is dispensable for binding to Toll but required for enzymatic activity. We also show that Pelle phosphorylates Toll, within the region required for Pelle interaction, but this phosphorylation can be blocked by a previously characterized inhibitory domain at the Toll C terminus. These and other results allow us to propose a model by which multiple phosphorylation-regulated interactions between these three proteins lead to activation of the Dorsal signaling pathway.
果蝇背腹极性的确定需要12种由基因定义的母源编码蛋白。这些蛋白包括跨膜受体Toll、丝氨酸/苏氨酸蛋白激酶Pelle和Tube,它们都在细胞质内发挥作用,启动最终激活核因子κB家族转录因子Dorsal的级联反应。在此,我们描述了重组Toll、Pelle和Tube之间的生化相互作用,这些相互作用为信号级联激活的早期事件提供了见解。我们首先表明,Pelle直接与Toll细胞质结构域内的一个区域结合,这首次证明了这两个进化上保守的分子发生了物理相互作用。然后我们证明Pelle可以自磷酸化,而这会阻止其与Toll以及Tube结合。自磷酸化发生在Pelle含死亡结构域的N端区域,该区域对于与Toll结合并非必需,但对于酶活性却是必需的。我们还表明,Pelle在与Pelle相互作用所需的区域内使Toll磷酸化,但这种磷酸化可被Toll C端一个先前已鉴定的抑制结构域阻断。这些及其他结果使我们能够提出一个模型,即这三种蛋白之间多种磷酸化调节的相互作用导致了Dorsal信号通路的激活。