Villaseñor Roberto, Kalaidzidis Yannis, Zerial Marino
Roche Innovation Center Basel, Grenzacherstrasse, CH-4070 Basel, Switzerland.
Max-Planck-Institute of Molecular Cell Biology and Genetics, Pfotenhauerstr. 108, 01307 Dresden, Germany.
Curr Opin Cell Biol. 2016 Apr;39:53-60. doi: 10.1016/j.ceb.2016.02.002. Epub 2016 Feb 24.
Cells need to decode chemical or physical signals from their environment in order to make decisions on their fate. In the case of signalling receptors, ligand binding triggers a cascade of chemical reactions but also the internalization of the activated receptors in the endocytic pathway. Here, we highlight recent studies revealing a new role of the endosomal network in signal processing. The diversity of entry pathways and endosomal compartments is exploited to regulate the kinetics of receptor trafficking, and interactions with specific signalling adaptors and effectors. By governing the spatio-temporal distribution of signalling molecules, the endosomal system functions analogously to a digital-analogue computer that regulates the specificity and robustness of the signalling response.
细胞需要解读来自其环境的化学或物理信号,以便对其命运做出决定。就信号受体而言,配体结合不仅会引发一系列化学反应,还会促使活化的受体在内吞途径中内化。在此,我们重点介绍了近期揭示内体网络在信号处理中发挥新作用的研究。利用进入途径和内体区室的多样性来调节受体运输的动力学,以及与特定信号衔接蛋白和效应器的相互作用。通过控制信号分子的时空分布,内体系统的功能类似于调节信号反应特异性和稳健性的数字模拟计算机。