Center for Research on Occupational and Environmental Toxicology, School of Medicine, Oregon Health and Science University, 3181 SW Sam Jackson Park Road, Portland, OR 97239-3098, USA.
Acta Histochem. 2011 May;113(3):248-55. doi: 10.1016/j.acthis.2010.01.006. Epub 2010 Feb 1.
Notch signaling is firmly established as a form of cell-to-cell communication that is critical throughout development. Dysregulation of Notch has been linked to cancer and developmental disorders, making it an important target for therapeutic intervention. One aspect of this pathway that sets it apart from others is its apparent reliance on endocytosis by signal-sending and signal-receiving cells. The subtle details of endocytosis-mediated molecular processing within both ligand- and receptor-presenting cells that are required for the Notch signal to maintain fidelity remain unclear. The endosomal system has long been known to play an important role in terminating signal transduction by directing lysosomal trafficking and degradation of cell surface receptors. More recently, endocytic trafficking has also been shown to be critical for activation of signaling. This review highlights four models of endocytic processing in the context of the Notch pathway. In ligand-presenting cells, endocytosis may be required for pre-processing of ligands to make them competent for interaction with Notch receptors and/or for exerting a pulling force on the ligand/Notch complex. In receptor-presenting cells, endocytosis may be a prerequisite for Notch cleavage and thus activation and/or it could be a means of limiting ligand-independent Notch activation. Recent advances in our understanding of how and why endocytosis of Notch receptors and ligands is required for activation and termination of signaling during normal development and in disease states are discussed.
Notch 信号通路被明确为一种细胞间通讯形式,在整个发育过程中都至关重要。 Notch 的失调与癌症和发育障碍有关,使其成为治疗干预的重要目标。该途径的一个方面使其有别于其他途径,即信号发送和接收细胞显然依赖于内吞作用。对于 Notch 信号保持保真度所需的配体和受体呈递细胞中内吞介导的分子处理的微妙细节仍然不清楚。内体系统长期以来一直被认为在终止信号转导中起着重要作用,通过指导溶酶体运输和细胞表面受体的降解。最近,内吞运输也被证明对信号的激活至关重要。这篇综述强调了 Notch 途径中内吞处理的四种模型。在配体呈递细胞中,内吞作用可能是配体进行预加工所必需的,以使它们能够与 Notch 受体相互作用,和/或对配体/Notch 复合物施加拉力。在受体呈递细胞中,内吞作用可能是 Notch 切割的前提,因此是激活和/或限制配体非依赖性 Notch 激活的一种手段。讨论了我们对 Notch 受体和配体的内吞作用如何以及为何需要激活和终止正常发育和疾病状态下信号转导的理解的最新进展。