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Notch 激活的内吞途径。

Endocytic routes to Notch activation.

机构信息

Faculty of Life Sciences, University of Manchester, Michael Smith Building, Oxford Road, Manchester M13 9PT, UK.

出版信息

Semin Cell Dev Biol. 2012 Jun;23(4):437-42. doi: 10.1016/j.semcdb.2012.01.008. Epub 2012 Jan 23.

DOI:10.1016/j.semcdb.2012.01.008
PMID:22285298
Abstract

It is well established that Notch signalling is activated in response to ligand binding through a series of proteolytic cleavages that release the Notch intracellular domain, allowing it to translocate to the nucleus to regulate downstream target gene expression. However there is still much to learn about the mechanisms that can bring about these proteolytic events in the numerous physiological contexts in which signal activation occurs. A number of studies have suggested that endocytosis of Notch contributes to the signal activation process, but the molecular details are unclear and controversial. There is conflicting data as to whether endocytosis of the receptor is essential for ligand-induced signalling or supplements it. Other studies have revealed that Notch can be activated in the endosomal pathway, independently of its ligands, through the activity of Deltex, a Ring-domain Ubiquitin ligase that binds to the Notch intracellular domain. However, it is unclear how the Deltex-activation mechanism relates to that of ligand-induced signalling, or to ectopic Notch signalling brought about by disruption of ESCRT complexes that affect multivesicular body formation. This review will address these issues and argue that the data are best reconciled by proposing distinct activation mechanisms in different cellular locations that contribute to the cellular pool of the soluble Notch intracellular domain. The resulting signalling network may provide developmental robustness to environmental and genetic variation.

摘要

众所周知,Notch 信号通路在配体结合后被激活,通过一系列蛋白水解切割释放 Notch 细胞内结构域,使其易位到细胞核中调节下游靶基因的表达。然而,在信号激活发生的众多生理环境中,仍有许多关于可以引发这些蛋白水解事件的机制需要了解。一些研究表明,Notch 的内吞作用有助于信号激活过程,但分子细节尚不清楚,存在争议。关于受体的内吞作用对于配体诱导的信号转导是否必需或只是补充,存在相互矛盾的数据。其他研究表明,Notch 可以通过与 Notch 细胞内结构域结合的 Ring 结构域泛素连接酶 Deltex 在内体途径中独立于其配体被激活。然而,尚不清楚 Deltex 激活机制与配体诱导的信号转导机制或通过影响多泡体形成的 ESCRT 复合物的破坏引起的异位 Notch 信号转导之间的关系。这篇综述将讨论这些问题,并认为通过提出不同细胞位置的不同激活机制可以最好地调和这些数据,这些机制有助于可溶性 Notch 细胞内结构域的细胞池的形成。由此产生的信号网络可能为环境和遗传变异提供发育稳健性。

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