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网格蛋白包被小凹(Endosomal)结合动力学特异性地调节 RTKs 的降解。

Endosomal binding kinetics of Eps15 and Hrs specifically regulate the degradation of RTKs.

机构信息

Department of Biosciences, Centre of Immune Regulation, University of Oslo, Oslo, Norway.

Kappa Bioscience AS, Oslo, Norway.

出版信息

Sci Rep. 2017 Dec 21;7(1):17962. doi: 10.1038/s41598-017-17320-2.

Abstract

Activation of EGF-R and PDGF-R triggers autophosphorylation and the recruitment of Eps15 and Hrs. These two endosomal proteins are important for specific receptor sorting. Hrs is recruiting ubiquitinated receptors to early endosomes to further facilitate degradation through the ESCRT complex. Upon receptor activation Hrs becomes phosphorylated and is relocated to the cytosol, important for receptor degradation. In this work we have studied the endosomal binding dynamics of Eps15 and Hrs upon EGF-R and PDGF-R stimulation. By analysing the fluorescence intensity on single endosomes after ligand stimulation we measured a time-specific decrease in the endosomal fluorescence level of Eps15-GFP and Hrs-YFP. Through FRAP experiments we could further register a specific change in the endosomal-membrane to cytosol binding properties of Eps15-GFP and Hrs-YFP. This specific change in membrane fractions proved to be a redistribution of the immobile fraction, which was not shown for the phosphorylation deficient mutants. We here describe a mechanism that can explain the previously observed relocation of Hrs from the endosomes to cytosol after EGF stimulation and show that Eps15 follows a similar mechanism. Moreover, this specific redistribution of the endosomal protein binding dynamics proved to be of major importance for receptor degradation.

摘要

EGF-R 和 PDGF-R 的激活触发自身磷酸化,并募集 Eps15 和 Hrs。这两种内体蛋白对于特定的受体分拣很重要。Hrs 将泛素化的受体招募到早期内体中,通过 ESCRT 复合物进一步促进降解。受体激活后,Hrs 发生磷酸化并转移到细胞质中,这对于受体降解很重要。在这项工作中,我们研究了 EGF-R 和 PDGF-R 刺激后 Eps15 和 Hrs 的内体结合动力学。通过分析配体刺激后单个内体的荧光强度,我们测量到 Eps15-GFP 和 Hrs-YFP 的内体荧光水平在时间上特异性下降。通过 FRAP 实验,我们进一步记录了 Eps15-GFP 和 Hrs-YFP 的内体膜到细胞质结合特性的特异性变化。这种特定的膜部分变化被证明是不可动部分的重新分配,而对于磷酸化缺陷突变体则没有显示。我们在这里描述了一种可以解释以前观察到的 EGF 刺激后 Hrs 从内体到细胞质重新定位的机制,并表明 Eps15 遵循类似的机制。此外,这种内体蛋白结合动力学的特定重分布对于受体降解至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5da4/5740074/8e615ca15f8b/41598_2017_17320_Fig1_HTML.jpg

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