突变生长因子受体及其相关分子的运输改变:对人类癌症的影响。

Cellular logistics Pub Date : 2014-03-18 eCollection Date: 2014-01-01 DOI:10.4161/cl.28461
Shunsuke Kon, Nobuhide Kobayashi, Masanobu Satake
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引用次数: 8

摘要

配体刺激受体酪氨酸激酶(RTKs)被磷酸化/泛素化、内吞并通过内体/多泡体转运到溶酶体,导致信号传递的衰减。如果这种RTK信号下调的生理机制受到干扰,信号转导就会持续存在,并可能导致细胞转化。本文提供了几个这样的例子。在某些情况下,内吞作用受损,激活的RTK留在质膜上。在其他情况下,活化的RTK被内吞到核内体/多泡体中,但随后没有被分类到溶酶体中降解。后一种情况表明,即使是内吞的rtk也可以传递信号。rtk的转运是通过膜泡的形成和运动来完成的。内吞作用/运输的阻滞或延迟可由RTK本身的遗传改变或CBL、Arf GAPs或参与内化和囊泡运输的其他成分的突变引起。文献综述表明,在某些情况下,即使是重新合成的rtk也可以在到达质膜之前在内质网/高尔基体启动信号传导。信号靶向的分子谱在细胞表面和内质网/高尔基定位的rtk之间可能是不同的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Altered trafficking of mutated growth factor receptors and their associated molecules: implication for human cancers.

Ligand-stimulated receptor tyrosine kinases (RTKs) are phosphorylated/ubiquitinated, endocytosed and transported to the lysosomes via endosomes/multivesicular bodies, resulting in the attenuation of signal transmission. If this physiological mechanism of RTK signal downregulation is perturbed, signal transduction persists and may contribute to cellular transformation. This article presents several such examples. In some cases, endocytosis is impaired, and the activated RTK remains on the plasma membrane. In other cases, the activated RTK is endocytosed into endosomes/multivesicular bodies, but not subsequently sorted to the lysosomes for degradation. The latter cases indicate that even endocytosed RTKs can transmit signals. Transport of RTKs is accomplished via the formation and movement of membrane vesicles. Blockage or delay of endocytosis/trafficking can be caused by genetic alterations in the RTK itself or by mutations in CBL, Arf GAPs, or other components involved in internalization and vesicle transport. A survey of the literature indicates that, in some cases, even RTKs synthesized de novo can initiate signaling at the endoplasmic reticulum/Golgi before reaching the plasma membrane. The spectrum of molecules targeted by the signal is likely to be different between cell surface- and endoplasmic reticulum/Golgi-localized RTKs.

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