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果蝇神经化E3连接酶在Notch信号通路中NHR1结构域的结构与功能表征

Structural and functional characterization of the NHR1 domain of the Drosophila neuralized E3 ligase in the notch signaling pathway.

作者信息

He Fahu, Saito Kohei, Kobayashi Naohiro, Harada Takushi, Watanabe Satoru, Kigawa Takanori, Güntert Peter, Ohara Osamu, Tanaka Akiko, Unzai Satoru, Muto Yutaka, Yokoyama Shigeyuki

机构信息

RIKEN Systems and Structural Biology Center, Tsurumi-ku, Yokohama, Japan.

出版信息

J Mol Biol. 2009 Oct 23;393(2):478-95. doi: 10.1016/j.jmb.2009.08.020. Epub 2009 Aug 14.

Abstract

The Notch signaling pathway is critical for many developmental processes and requires complex trafficking of both Notch receptor and its ligands, Delta and Serrate. In Drosophila melanogaster, the endocytosis of Delta in the signal-sending cell is essential for Notch receptor activation. The Neuralized protein from D. melanogaster (Neur) is a ubiquitin E3 ligase, which binds to Delta through its first neuralized homology repeat 1 (NHR1) domain and mediates the ubiquitination of Delta for endocytosis. Tom, a Bearded protein family member, inhibits the Neur-mediated endocytosis through interactions with the NHR1 domain. We have identified the domain boundaries of the novel NHR1 domain, using a screening system based on our cell-free protein synthesis method, and demonstrated that the identified Neur NHR1 domain had binding activity to the 20-residue peptide corresponding to motif 2 of Tom by isothermal titration calorimetry experiments. We also determined the solution structure of the Neur NHR1 domain by heteronuclear NMR methods, using a (15)N/(13)C-labeled sample. The Neur NHR1 domain adopts a characteristic beta-sandwich fold, consisting of a concave five-stranded antiparallel beta-sheet and a convex seven-stranded antiparallel beta-sheet. The long loop (L6) between the beta6 and beta7 strands covers the hydrophobic patch on the concave beta-sheet surface, and the Neur NHR1 domain forms a compact globular fold. Intriguingly, in spite of the slight, but distinct, differences in the topology of the secondary structure elements, the structure of the Neur NHR1 domain is quite similar to those of the B30.2/SPRY domains, which are known to mediate specific protein-protein interactions. Further NMR titration experiments of the Neur NHR1 domain with the 20-residue Tom peptide revealed that the resonances originating from the bottom area of the beta-sandwich (the L3, L5, and L11 loops, as well as the tip of the L6 loop) were affected. In addition, a structural comparison of the Neur NHR1 domain with the first NHR domain of the human KIAA1787 protein, which is from another NHR subfamily and does not bind to the 20-residue Tom peptide, suggested the critical amino acid residues for the interactions between the Neur NHR1 domain and the Tom peptide. The present structural study will shed light on the role of the Neur NHR1 domain in the Notch signaling pathway.

摘要

Notch信号通路对许多发育过程至关重要,并且需要Notch受体及其配体Delta和Serrate进行复杂的运输。在黑腹果蝇中,信号发送细胞中Delta的内吞作用对于Notch受体激活至关重要。黑腹果蝇的Neuralized蛋白(Neur)是一种泛素E3连接酶,它通过其第一个Neuralized同源重复序列1(NHR1)结构域与Delta结合,并介导Delta的泛素化以进行内吞作用。Tom是Bearded蛋白家族的成员,它通过与NHR1结构域相互作用来抑制Neur介导的内吞作用。我们使用基于无细胞蛋白质合成方法的筛选系统确定了新型NHR1结构域的结构域边界,并通过等温滴定量热实验证明,鉴定出的Neur NHR1结构域与对应于Tom基序2的20个残基肽具有结合活性。我们还使用(15)N/(13)C标记的样品,通过异核NMR方法确定了Neur NHR1结构域的溶液结构。Neur NHR1结构域采用特征性的β-三明治折叠结构,由一个凹面的五链反平行β-折叠片和一个凸面的七链反平行β-折叠片组成。β6和β7链之间的长环(L6)覆盖了凹面β-折叠片表面的疏水区域,并且Neur NHR1结构域形成了紧密的球状折叠。有趣的是,尽管二级结构元件的拓扑结构存在轻微但明显的差异,但Neur NHR1结构域的结构与已知介导特定蛋白质-蛋白质相互作用的B30.2/SPRY结构域非常相似。Neur NHR1结构域与20个残基的Tom肽的进一步NMR滴定实验表明,源自β-三明治底部区域(L3、L5和L11环以及L6环的末端)的共振受到影响。此外,将Neur NHR1结构域与人类KIAA1787蛋白的第一个NHR结构域进行结构比较,该蛋白来自另一个NHR亚家族且不与20个残基的Tom肽结合,这表明了Neur NHR1结构域与Tom肽相互作用的关键氨基酸残基。目前的结构研究将有助于阐明Neur NHR1结构域在Notch信号通路中的作用。

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