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UNC-45A is preferentially expressed in epithelial cells and binds to and co-localizes with interphase MTs

机译:UNC-45a优选地在上皮细胞中表达,并与间间MTS结合并共同定位

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摘要

UNC-45A is an ubiquitously expressed protein highly conserved throughout evolution. Most of what we currently know about UNC-45A pertains to its role as a regulator of the actomyosin system. However, emerging studies from both our and other laboratories support a role of UNC-45A outside of actomyosin regulation. This includes studies showing that UNC-45A: regulates gene transcription, co-localizes and biochemically co-fractionates with gamma tubulin and regulates centrosomal positioning, is found in the same subcellular fractions where MT-associated proteins are, and is a mitotic spindle-associated protein with MT-destabilizing activity in absence of the actomyosin system. Here, we extended our previous findings and show that UNC45A is variably expressed across a spectrum of cell lines with the highest level being found in HeLa cells and in ovarian cancer cells inherently paclitaxel-resistant. Furthermore, we show that UNC-45A is preferentially expressed in epithelial cells, localizes to mitotic spindles in clinical tumor specimens of cancer and co-localizes and co-fractionates with MTs in interphase cells independent of actin or myosin. In sum, we report alteration of UNC45A localization in the setting of chemotherapeutic treatment of cells with paclitaxel, and localization of UNC45A to MTs both in vitro and in vivo. These findings will be important to ongoing and future studies in the field that further identify the important role of UNC45A in cancer and other cellular processes.
机译:UNC-45A是在整个进化中高度保守的普遍表达的蛋白质。我们目前了解UNC-45A的大部分是涉及其作为侵入性系统系统的调节作用的作用。然而,来自我们和其他实验室的新兴研究都支持UNC-45A外部的侵入症监管的作用。这包括表明UNC-45a:调节基因转录,与γ管蛋白的生物化学和生物化学上共分配的研究,并在相同的亚细胞级分中发现了MT相关蛋白质的相同亚细胞分数,并且是有丝分裂的主轴相关的蛋白质缺乏缺失的Actomyosin系统。在这里,我们扩展了先前的发现,并表明UNC45A在Hela细胞中发现最高水平的细胞系和卵巢癌细胞具有最高水平的细胞系中可变地表达UNC45a。此外,我们表明UNC-45A优先在上皮细胞中表达,本地化癌症临床肿瘤标本中的有丝分裂主轴,并与肌动蛋白或肌肽无关的间间细胞中的MTS共定位和共分级。总而言之,我们报告了UNC45A定位在用紫杉醇的细胞化学治疗的环境中的改变,以及UNC45a的定位在体外和体内。这些发现对于持续和未来的领域的研究对于进一步确定UNC45A在癌症和其他细胞过程中的重要作用。

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