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果蝇中δ蛋白运输、受体结合及信号传导的结构-功能分析

Structure-function analysis of delta trafficking, receptor binding and signaling in Drosophila.

作者信息

Parks Annette L, Stout Jane R, Shepard Scott B, Klueg Kristin M, Dos Santos Ana A, Parody Todd R, Vaskova Martina, Muskavitch Marc A T

机构信息

Biology Department, Boston College, Chestnut Hill, Massachusetts 02467, USA.

出版信息

Genetics. 2006 Dec;174(4):1947-61. doi: 10.1534/genetics.106.061630. Epub 2006 Oct 8.

Abstract

The transmembrane proteins Delta and Notch act as ligand and receptor in a conserved signaling pathway required for a variety of cell fate specification events in many organisms. Binding of Delta to Notch results in a proteolytic cascade that releases the Notch intracellular domain, allowing it to participate in transcriptional activation in the nucleus. Recent research has implicated the endocytic and ubiquitylation machinery as essential components of Delta-Notch signaling. Our analysis of chimeric and missense Delta variants has delineated a number of structural requirements for Delta trafficking, receptor binding, and signaling. We find that while the Delta N-terminal domain is necessary and sufficient for binding to Notch, the integrity of the epidermal-growth-factor-like repeat (ELR) 2 is also required for Notch binding. Screening of 117 Delta mutant lines for proteins that exhibit aberrant subcellular trafficking has led to the identification of 18 Delta alleles (DlTD alleles) that encode "trafficking-defective" Delta proteins. We find, unexpectedly, that many DlTD alleles contain missense mutations in ELRs within the Delta extracellular domain. Finally, we find that two DlTD alleles contain lysine missense mutations within the Delta intracellular domain (DeltaICD) that may identify residues important for DeltaICD mono-ubiquitylation and subsequent Delta endocytosis and signaling.

摘要

跨膜蛋白Delta和Notch在许多生物体中多种细胞命运决定事件所需的保守信号通路中分别作为配体和受体发挥作用。Delta与Notch的结合会引发蛋白水解级联反应,释放出Notch细胞内结构域,使其能够参与细胞核内的转录激活。最近的研究表明,内吞作用和泛素化机制是Delta-Notch信号传导的重要组成部分。我们对嵌合和错义Delta变体的分析已经明确了Delta转运、受体结合和信号传导的一些结构要求。我们发现,虽然Delta的N端结构域对于与Notch结合是必要且充分的,但表皮生长因子样重复序列(ELR)2的完整性对于Notch结合也是必需的。对117个Delta突变系进行筛选,以寻找表现出异常亚细胞转运的蛋白质,从而鉴定出18个Delta等位基因(DlTD等位基因),这些等位基因编码“转运缺陷型”Delta蛋白。我们意外地发现,许多DlTD等位基因在Delta细胞外结构域的ELR中含有错义突变。最后,我们发现两个DlTD等位基因在Delta细胞内结构域(DeltaICD)中含有赖氨酸错义突变,这些突变可能确定了对DeltaICD单泛素化以及随后的Delta内吞作用和信号传导很重要的残基。

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