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小鼠Notch配体DLL1中破坏单个表皮生长因子重复序列结构完整性的突变的上下文依赖性敏感性

Context-Dependent Sensitivity to Mutations Disrupting the Structural Integrity of Individual EGF Repeats in the Mouse Notch Ligand DLL1.

作者信息

Schuster-Gossler Karin, Cordes Ralf, Müller Julia, Geffers Insa, Delany-Heiken Patricia, Taft Manuel, Preller Matthias, Gossler Achim

机构信息

Institut für Molekularbiologie, Medizinische Hochschule Hannover, 30625 Hannover, Germany.

Institut für Biophysikalische Chemie, Medizinische Hochschule Hannover, 30625 Hannover, Germany.

出版信息

Genetics. 2016 Mar;202(3):1119-33. doi: 10.1534/genetics.115.184515. Epub 2016 Jan 22.

Abstract

The highly conserved Notch-signaling pathway mediates cell-to-cell communication and is pivotal for multiple developmental processes and tissue homeostasis in adult organisms. Notch receptors and their ligands are transmembrane proteins with multiple epidermal-growth-factor-like (EGF) repeats in their extracellular domains. In vitro the EGF repeats of mammalian ligands that are essential for Notch activation have been defined. However, in vivo the significance of the structural integrity of each EGF repeat in the ligand ectodomain for ligand function is still unclear. Here, we analyzed the mouse Notch ligand DLL1. We expressed DLL1 proteins with mutations disrupting disulfide bridges in each individual EGF repeat from single-copy transgenes in the HPRT locus of embryonic stem cells. In Notch transactivation assays all mutations impinged on DLL1 function and affected both NOTCH1 and NOTCH2 receptors similarly. An allelic series in mice that carried the same point mutations in endogenous Dll1, generated using a mini-gene strategy, showed that early developmental processes depending on DLL1-mediated NOTCH activation were differently sensitive to mutation of individual EGF repeats in DLL1. Notably, some mutations affected only somite patterning and resulted in vertebral column defects resembling spondylocostal dysostosis. In conclusion, the structural integrity of each individual EGF repeat in the extracellular domain of DLL1 is necessary for full DLL1 activity, and certain mutations in Dll1 might contribute to spondylocostal dysostosis in humans.

摘要

高度保守的Notch信号通路介导细胞间通讯,对成年生物体的多个发育过程和组织稳态至关重要。Notch受体及其配体是跨膜蛋白,其胞外结构域含有多个表皮生长因子样(EGF)重复序列。在体外,已确定哺乳动物配体中对Notch激活至关重要的EGF重复序列。然而,在体内,配体胞外结构域中每个EGF重复序列的结构完整性对配体功能的意义仍不清楚。在此,我们分析了小鼠Notch配体DLL1。我们从胚胎干细胞HPRT基因座中的单拷贝转基因表达了在每个单独的EGF重复序列中破坏二硫键的突变型DLL1蛋白。在Notch反式激活试验中,所有突变均影响DLL1功能,并同样影响NOTCH1和NOTCH2受体。使用小基因策略在内源性Dll1中携带相同点突变的小鼠等位基因系列表明,依赖DLL1介导的Notch激活的早期发育过程对DLL1中单个EGF重复序列的突变敏感性不同。值得注意的是,一些突变仅影响体节模式,并导致类似于脊椎肋骨发育不良的脊柱缺陷。总之,DLL1胞外结构域中每个单独的EGF重复序列的结构完整性对于DLL1的完全活性是必需的,并且Dll1中的某些突变可能导致人类的脊椎肋骨发育不良。

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