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Cell-cycle dependent localization of MELK and its new partner RACK1 in epithelial versus mesenchyme-like cells in Xenopus embryo

机译:爪蟾及其上皮细胞与间充质样细胞中MELK及其新伴侣RACK1的细胞周期依赖性定位

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Maternal Embryonic Leucine zipper Kinase (MELK) was recently shown to be involved in cell division of Xenopus embryo epithelial cells. The cytokinetic furrow of these cells ingresses asymmetrically and is developmentally regulated. Two subpopulations of xMELK, the mMELK (for “mitotic” xMELK) and iMELK (“interphase” xMELK), which differ in their spatial and temporal regulation, are detected in Xenopus embryo. How cells regulate these two xMELK populations is unknown. In this study we show that, in epithelial cells, xMELK is present at a higher concentration at the apical junctional complex, in contrast to mesenchyme-like cells, which have uniform distribution of cortical MELK. Interestingly, mMELK and iMELK also differ by their requirements towards cell–cell contacts to establish their proper cortical localization both in epithelial and mesenchyme-like cells. Receptor for Activated protein Kinase C (RACK1), which we identified as an xMELK partner, co-localizes with xMELK at the tight junction. Moreover, a truncated RACK1 construct interferes with iMELK localization at cell–cell contacts. Collectively, our results suggest that iMELK and RACK1 are present in the same complex and that RACK1 is involved in the specific recruitment of iMELK at the apical junctional complex in epithelial cells of Xenopus embryos.
机译:最近显示,母体胚胎亮氨酸拉链激酶(MELK)参与非洲爪蟾胚胎上皮细胞的细胞分裂。这些细胞的细胞动力学沟不对称地进入并受到发育调控。在非洲爪蟾的胚胎中检测到xMELK的两个亚群,即mMELK(用于“有丝分裂” xMELK)和iMELK(“相间” xMELK),它们在空间和时间上的调控不同。细胞如何调节这两个xMELK种群尚不清楚。在这项研究中,我们表明,与具有均匀分布的MELK的间充质样细胞相比,在上皮细胞中,xMELK的浓度较高,存在于顶端连接复合体中。有趣的是,mMELK和iMELK在细胞间接触方面的要求也有所不同,以在上皮细胞和间充质样细胞中建立适当的皮质定位。我们确定为xMELK伴侣的活化蛋白激酶C(RACK1)受体与xMELK在紧密连接处共定位。此外,截短的RACK1构建体会干扰iMELK在细胞间接触中的定位。总的来说,我们的结果表明,iMELK和RACK1存在于同一复合物中,并且RACK1参与了非洲爪蟾胚胎上皮细胞顶端结合复合体中iMELK的特异性募集。

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