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The PNT domain from Drosophila pointed-P2 contains a dynamic N-terminal helix preceded by a disordered phosphoacceptor sequence

机译:果蝇指出-P2的PNT域包含一个动态的N末端螺旋其前有无序的磷酸受体序列

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摘要

Pointed-P2, the Drosophila ortholog of human ETS1 and ETS2, is a transcription factor involved in Ras/MAP kinase-regulated gene expression. In addition to a DNA-binding ETS domain, Pointed-P2 contains a PNT (or SAM) domain that serves as a docking module to enhance phosphorylation of an adjacent phosphoacceptor threonine by the ERK2 MAP kinase Rolled. Using NMR chemical shift, 15N relaxation, and amide hydrogen exchange measurements, we demonstrate that the Pointed-P2 PNT domain contains a dynamic N-terminal helix H0 appended to a core conserved five-helix bundle diagnostic of the SAM domain fold. Neither the secondary structure nor dynamics of the PNT domain is perturbed significantly upon in vitro ERK2 phosphorylation of three threonine residues in a disordered sequence immediately preceding this domain. These data thus confirm that the Drosophila Pointed-P2 PNT domain and phosphoacceptors are highly similar to those of the well-characterized human ETS1 transcription factor. NMR-monitored titrations also revealed that the phosphoacceptors and helix H0, as well as region of the core helical bundle identified previously by mutational analyses as a kinase docking site, are selectively perturbed upon ERK2 binding by Pointed-P2. Based on a homology model derived from the ETS1 PNT domain, helix H0 is predicted to partially occlude the docking interface. Therefore, this dynamic helix must be displaced to allow both docking of the kinase, as well as binding of Mae, a Drosophila protein that negatively regulates Pointed-P2 by competing with the kinase for its docking site.
机译:Pointed-P2是人ETS1和ETS2的果蝇直系同源物,是涉及Ras / MAP激酶调节的基因表达的转录因子。除了与DNA结合的ETS结构域之外,Pointed-P2还包含一个PNT(或SAM)结构域,该结构域用作对接模块,以增强ERK2 MAP激酶Rolled使相邻磷酸受体苏氨酸的磷酸化。使用NMR化学位移, 15 N弛豫和酰胺氢交换测量,我们证明了Pointed-P2 PNT域包含一个动态N末端螺旋H0,附加到核心保守的5螺旋束诊断SAM域折叠。 PNT结构域的二级结构或动力学都不会在该结构域之前的无序序列中三个苏氨酸残基的体外ERK2磷酸化后受到明显干扰。因此,这些数据证实了果蝇指向P2 PNT域和磷酸受体与特征明确的人ETS1转录因子高度相似。 NMR监测的滴定还表明,磷酸化受体和螺旋H0以及先前通过突变分析鉴定为激酶停靠位点的核心螺旋束区域在被Pointed-P2结合ERK2时受到选择性干扰。基于源自ETS1 PNT域的同源性模型,可以预测螺旋H0将部分封闭对接界面。因此,必须置换该动态螺旋,以允许激酶对接,以及结合Mae(果蝇蛋白),后者通过与激酶竞争其对接位点而对Pointed-P2产生负调控。

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