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Mpl traffics to the cell surface through conventional and unconventional routes

机译:Mpl通过常规和非常规路由传输到细胞表面

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摘要

Myeloproliferative neoplasms (MPNs) are often characterized by JAK2 or calreticulin mutations, indicating aberrant trafficking in pathogenesis. This study focuses on Mpl trafficking and Jak2 association using two model systems: Human Erythroleukemia cells (HEL; JAK2V617F) and K562 myeloid leukemia cells (JAK2WT). Consistent with a putative chaperone role for Jak2, Mpl and Jak2 associate on both intracellular and plasma membranes (shown by proximity ligation assay) and siRNA-mediated knockdown of Jak2 led to Mpl trapping in the ER. Even in Jak2 sufficient cells, Mpl accumulates in punctate structures that partially co-localize with ER-Tracker, the ER exit site marker (ERES) Sec31a, the autophagy marker LC3 and LAMP1. Mpl was fused to miniSOG, a genetically-encoded tag for correlated light and electron microscopy. Results suggest that a fraction of Mpl is taken up into autophagic structures from the ER and routed to autolyososomes. Surface biotinylation shows that both immature and mature Mpl reach the cell surface; in K562 cells Mpl is also released in exosomes. Both forms rapidly internalize upon ligand addition, while recovery is primarily attributed to immature Mpl. Mpl appears to reach the plasma membrane via both conventional ER-Golgi and autolysosome secretory pathways, as well as recycling.
机译:骨髓增生性肿瘤(MPN)通常以JAK2或钙网蛋白突变为特征,表明发病机理中的异常贩运。这项研究集中于使用两种模型系统的Mpl贩运和Jak2关联:人类红白血病细胞(HEL; JAK2V617F)和K562髓样白血病细胞(JAK2WT)。与Jak2的假定伴侣作用一致,Mpl和Jak2在细胞内和质膜上缔合(通过邻近连接测定法显示),并且siRNA介导的Jak2敲低导致Mpl捕获在ER中。即使在足够的Jak2细胞中,Mpl也会在点状结构中积聚,这些结构与ER-Tracker,ER出口位点标记(ERES)Sec31a,自噬标记物LC3和LAMP1部分共定位。 Mpl与miniSOG融合,miniSOG是用于相关光学和电子显微镜的遗传编码标签。结果表明,一部分Mpl从ER进入自噬结构,并被路由至自溶体。表面生物素化表明,未成熟的Mpl和成熟的Mpl都到达细胞表面。在K562细胞中,Mpl也在外泌体中释放。两种形式在配体添加后迅速内在化,而回收率主要归因于未成熟的Mpl。 Mpl似乎通过常规的ER-高尔基体和溶酶体分泌途径到达质膜,并循环利用。

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