首页> 美国卫生研究院文献>PLoS Clinical Trials >Clathrin Assembly Protein CALM Plays a Critical Role in KIT Signaling by Regulating Its Cellular Transport from Early to Late Endosomes in Hematopoietic Cells
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Clathrin Assembly Protein CALM Plays a Critical Role in KIT Signaling by Regulating Its Cellular Transport from Early to Late Endosomes in Hematopoietic Cells

机译:网格蛋白装配蛋白CALM通过调节其从造血细胞早期到晚期内体的细胞转运在KIT信号中起关键作用

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摘要

CALM is implicated in the formation of clathrin-coated vesicles, which mediate endocytosis and intracellular trafficking of growth factor receptors and nutrients. We previously found that CALM-deficient mice suffer from severe anemia due to the impaired clathrin-mediated endocytosis of transferrin receptor in immature erythroblast. However, CALM has been supposed to regulate the growth and survival of hematopoietic stem/progenitor cells. So, in this study, we focused on the function of CALM in these cells. We here show that the number of LinageSca-1+KIT+ (LSK) cells decreased in the fetal liver of CALM −/− mice. Also, colony forming activity was impaired in CALM−/− LSK cells. In addition, SCF, FLT3, and TPO-dependent growth was severely impaired in CALM−/− LSK cells, while they can normally proliferate in response to IL-3 and IL-6. We also examined the intracellular trafficking of KIT using CALM −/− murine embryonic fibroblasts (MEFs) engineered to express KIT. At first, we confirmed that endocytosis of SCF-bound KIT was not impaired in CALM −/− MEFs by the internalization assay. However, SCF-induced KIT trafficking from early to late endosome was severely impaired in CALM −/− MEFs. As a result, although intracellular KIT disappeared 30 min after SCF stimulation in wild-type (WT) MEFs, it was retained in CALM −/− MEFs. Furthermore, SCF-induced phosphorylation of cytosolic KIT was enhanced and prolonged in CALM −/− MEFs compared with that in WT MEFs, leading to the excessive activation of Akt. Similar hyperactivation of Akt was observed in CALM −/− KIT+ cells. These results indicate that CALM is essential for the intracellular trafficking of KIT and its normal functions. Also, our data demonstrate that KIT located in the early endosome can activate downstream molecules as a signaling endosome. Because KIT activation is involved in the pathogenesis of some malignancies, the manipulation of CALM function would be an attractive therapeutic strategy.
机译:CALM牵涉形成网格蛋白包被的囊泡的形成,其介导内吞和生长因子受体和营养物的细胞内运输。我们先前发现,由于网格蛋白介导的不成熟红细胞中转铁蛋白受体的内吞作用受损,导致CALM缺陷的小鼠患有严重的贫血。然而,CALM被认为可调节造血干/祖细胞的生长和存活。因此,在这项研究中,我们专注于CALM在这些细胞中的功能。我们在这里显示,CALM 的胎儿肝脏中Linage - Sca-1 + KIT + (LSK)细胞数量减少-/-小鼠。此外,CALM -/- LSK细胞中的集落形成活性受到损害。此外,CALF -/- LSK细胞中,SCF,FLT3和TPO依赖性生长受到严重损害,而它们通常可以响应IL-3和IL-6增殖。我们还使用工程化表达KIT的CALM -/-鼠胚胎成纤维细胞(MEF)检查了KIT的细胞内运输。首先,我们通过内化分析证实了在CALM -/- MEF中,与SCF结合的KIT的内吞作用没有受到损害。然而,CALF -/- MEFs严重损害了SCF诱导的从早期到晚期内体的KIT转运。结果,尽管在野生型(WT)MEF中SCF刺激后细胞内KIT消失了30分钟,但仍保留在CALM -/- MEF中。此外,与WT MEF相比,CALM -/- MEF中SCF诱导的胞质KIT磷酸化增强和延长,导致Akt过度活化。在CALM -/- KIT + 细胞中观察到类似的Akt超活化现象。这些结果表明CALM对于KIT的细胞内运输及其正常功能是必不可少的。同样,我们的数据表明位于早期内体的KIT可以激活下游分子作为信号内体。由于KIT激活与某些恶性肿瘤的发病机制有关,因此操纵CALM功能将是一种有吸引力的治疗策略。

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