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Endosomal dynamics of Met determine signaling output

机译:Met的内体动力学决定信号输出

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Proteasomal activity is required for Met receptor degradation after acute stimulation with hepatocyte growth factor (HGF). Inhibition of proteasomal activity with lactacystin leads to a block in the endocytic trafficking of Met such that the receptor fails to reach late endosomes/lysosomes, where degradation by acid-dependent proteases takes place (Hammond et al., 2001). In this article, we have biochemically determined Met internalization rates from the cell surface and shown that lactacystin does not inhibit the initial HGF-dependent internalization step of Met. Instead, it promotes the recycling pathway from early endosomes at the expense of sorting to late endosomes, thereby ensuring rapid return of internalized Met to the cell surface. We have used this perturbation of Met endosomal sorting by lactacystin to examine the consequences for HGF-dependent signaling outputs. In control cells HGF-dependent receptor autophosphorylation reaches a maximal level over 5-10 min but then attenuates over the ensuing 50 min. Furthermore, Met dephosphorylation can be kinetically dissociated from Met degradation. In lactacystin-treated cells, we observe a failure of Met dephosphorylation as well as Met degradation. Elements of the mitogen-activated protein kinase cascade, downstream of receptor activation, show a normal kinetic profile of phosphorylation, indicating that the mitogen-activated protein kinase pathway can attenuate in the face of sustained receptor activation. The HGF-dependent phosphorylation of a receptor substrate that is localized to clathrin-coated regions of sorting endosomes, Hrs, is dramatically reduced by lactacystin treatment. Reduction of cellular Hrs levels by short interfering RNA modestly retards Met degradation and markedly prevents the attenuation of Met phosphorylation. HGF-dependent Hrs phosphorylation and Met dephosphorylation may provide sipatures for retention of the receptor in coated regions of the endosome implicated in sorting to lysosomes. [References: 43]
机译:肝细胞生长因子(HGF)急性刺激后,Met受体降解需要蛋白酶体活性。乳酸菌素对蛋白酶体活性的抑制会导致Met的内吞运输受阻,从而使受体无法到达晚期的内体/溶酶体,在该处发生酸依赖性蛋白酶降解(Hammond等,2001)。在本文中,我们已经从细胞表面生化确定了Met的内在化速率,并表明乳酸菌素不抑制Met的初始HGF依赖性内在化步骤。取而代之的是,它促进了从早期内体的回收途径,以分选到晚期内体的代价,从而确保了内化的Met快速返回细胞表面。我们已经使用了乳酸菌素对Met内体分类的扰动来检查HGF依赖性信号输出的后果。在对照细胞中,HGF依赖性受体的自磷酸化作用在5-10分钟内达到最高水平,但在随后的50分钟内减弱。此外,Met的去磷酸化可以从Met的降解动力学解离。在经乳胞素处理的细胞中,我们观察到了Met脱磷酸作用以及Met降解的失败。受体激活下游的丝裂原激活的蛋白激酶级联元件显示出正常的磷酸化动力学特征,表明在持续的受体激活面前,丝裂原激活的蛋白激酶途径可以减弱。乳酸胞嘧啶处理可显着减少受体底物的HGF依赖性磷酸化,该底物位于网格蛋白包被的内体分选区域Hrs。通过短时干扰RNA降低细胞Hrs水平可适度延迟Met降解,并显着防止Met磷酸化的减弱。 HGF依赖的Hrs磷酸化和Met脱磷酸化可能提供sipatures,用于将受体保留在与溶酶体分选有关的内体包衣区域。 [参考:43]

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