Hebchen Dana Maureen, Schröder Katrin
Institute of Physiology, Medical Faculty, Goethe University, Theodor-Stern-Kai 7, 60590 Frankfurt am Main, Germany.
Antioxidants (Basel). 2024 Oct 9;13(10):1215. doi: 10.3390/antiox13101215.
Early endosomes represent first-line sorting compartments or even organelles for internalized molecules. They enable the transport of molecules or ligands to other compartments of the cell, such as lysosomes, for degradation or recycle them back to the membrane by various mechanisms. Moreover, early endosomes function as signaling and scaffolding platforms to initiate or prolong distinct signaling pathways. Accordingly, early endosomes have to be recognized as either part of a degradation or recycling pathway. The physical proximity of many ligand-binding receptors with other membrane-bound proteins or complexes such as NADPH oxidases may result in an interaction of second messengers, like reactive oxygen species (ROS) and early endosomes, that promote the correct recognition of individual early endosomes. In fact, redoxosomes comprise an endosomal subsection of signaling endosomes. One example of such potential interaction is epidermal growth factor receptor (EGFR) signaling. Here we summarize recent findings on EGFR signaling as a well-studied example for receptor trafficking and -activation and illustrate the interplay between cellular and endosomal ROS.
早期内体是内化分子的一线分选区室甚至细胞器。它们能够将分子或配体运输到细胞的其他区室,如溶酶体,以便进行降解,或者通过各种机制将它们循环回细胞膜。此外,早期内体作为信号传导和支架平台,启动或延长不同的信号通路。因此,早期内体必须被视为降解或循环途径的一部分。许多配体结合受体与其他膜结合蛋白或复合物(如NADPH氧化酶)在物理上的接近,可能导致第二信使(如活性氧(ROS))与早期内体发生相互作用,从而促进对单个早期内体的正确识别。事实上,氧化还原体包含信号内体的一个内体亚部分。这种潜在相互作用的一个例子是表皮生长因子受体(EGFR)信号传导。在这里,我们总结了关于EGFR信号传导的最新发现,这是一个研究充分的受体运输和激活的例子,并阐述了细胞内ROS与内体ROS之间的相互作用。