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泛素化对于 Notch 受体进入腔内小泡的形成是必需的,以防止该途径的持续和配体非依赖性激活。

Ubiquitylation is required for the incorporation of the Notch receptor into intraluminal vesicles to prevent prolonged and ligand-independent activation of the pathway.

机构信息

Institute of Genetics, Heinrich-Heine-University Duesseldorf, Universitaetsstr. 1, 40225, Duesseldorf, Germany.

School of Biological Sciences, University of Manchester, Michael Smith Building, Oxford Road, Manchester, M13 9PT, UK.

出版信息

BMC Biol. 2022 Mar 10;20(1):65. doi: 10.1186/s12915-022-01245-y.

Abstract

BACKGROUND

Ubiquitylation of the ligands and the receptor plays an important part in the regulation of the activity of the evolutionary conserved Notch signalling pathway. However, its function for activation of Notch is not completely understood, despite the identification of several E3 ligases devoted to the receptor.

RESULTS

Here we analysed a variant of the Notch receptor where all lysines in its intracellular domain are replaced by arginines. Our analysis of this variant revealed that ubiquitylation of Notch is not essential for its endocytosis. We identified two functions for ubiquitylation of lysines in the Notch receptor. First, it is required for the degradation of free Notch intracellular domain (NICD) in the nucleus, which prevents a prolonged activation of the pathway. More importantly, it is also required for the incorporation of Notch into intraluminal vesicles of maturing endosomes to prevent ligand-independent activation of the pathway from late endosomal compartments.

CONCLUSIONS

The findings clarify the role of lysine-dependent ubiquitylation of the Notch receptor and indicate that Notch is endocytosed by several independent operating mechanisms.

摘要

背景

配体和受体的泛素化在进化保守的 Notch 信号通路活性的调节中起着重要作用。然而,尽管已经鉴定出几种专门用于受体的 E3 连接酶,但对于 Notch 的激活功能仍不完全了解。

结果

在这里,我们分析了 Notch 受体的一种变体,其细胞内结构域中的所有赖氨酸都被精氨酸取代。我们对该变体的分析表明,Notch 的泛素化对于其内吞作用并不是必需的。我们确定了 Notch 受体中赖氨酸泛素化的两个功能。首先,它是游离 Notch 细胞内结构域(NICD)在核内降解所必需的,这可防止途径的长时间激活。更重要的是,它还需要 Notch 整合到成熟内体的管腔内小泡中,以防止从晚期内体隔室中的配体非依赖性途径激活。

结论

这些发现阐明了 Notch 受体赖氨酸依赖性泛素化的作用,并表明 Notch 通过几种独立的作用机制被内吞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a1d/8908686/b7786b52dc16/12915_2022_1245_Fig1_HTML.jpg

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