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首页> 外文期刊>Oncogene >Opposite long-term regulation of c-Myc and p27Kip1 through overactivation of Raf-1 and the MEK|[sol]|ERK module in proliferating human choroidal melanoma cells
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Opposite long-term regulation of c-Myc and p27Kip1 through overactivation of Raf-1 and the MEK|[sol]|ERK module in proliferating human choroidal melanoma cells

机译:通过RAF-1和MEK | [溶胶] | ERK模块在增殖人脉络膜瘤细胞中的过增值来对C-MYC和P27KIP1的长期调节

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Although there is no current evidence for ras gene mutation in choroidal melanoma, there is an increasing body of evidence indicating that deregulated intracellular signalling pathways are involved in choroidal melanoma pathogenesis. The various components of the linear Raf/MEK/ERK signalling pathway have been implicated in various tumours. We therefore investigated the role of Raf-1 and the MEK/ERK module in the proliferation of human normal choroidal melanocytes (NCM) and cells from the ocular choroidal melanoma (OCM-1) cell line. OCM-1 cells proliferated four times faster than NCM. High basal activation of the MEK/ERK module was observed in unstimulated OCM-1 cells, whereas rapid and persistent activation was detected after serum stimulation, throughout the 24-h period of culture. In contrast, the activation of MEK/ERK was barely detectable in unstimulated NCM and occurred late (6h) after the stimulation of cell proliferation. Inhibition of Raf-1 and MEK1/2 activation by pharmacological approaches and of the production of Raf-1 and ERK1/2 by antisense oligonucleotide approaches demonstrated that Raf-1 and the MEK/ERK module controlled proliferation in OCM-1 cells, but not in NCM. OCM-1 cells produced very low levels of p27Kip1, whereas NCM produced constant, high levels of p27Kip1. The inhibition of Raf-1 or MEK1/2 induced a large increase in p27Kip1 in OCM-1 cells, associated with an arrest of cell proliferation. Levels of c-Myc production were high and constant in OCM-1 cells and low in NCM, in contrast to what was observed for p27Kip1. The inhibition of both Raf-1 and MEK1/2 induced a decrease in c-Myc production and downregulated c-Myc activity by preventing c-Myc phosphorylation in OCM-1 cells. We conclude that Raf-1 and the MEK/ERK module control the production of both p27Kip1 and c-Myc, and the activation of c-Myc for OCM-1 cell proliferation.
机译:虽然脉络膜马兰瘤中Ras基因突变没有目前的证据,但是有一种增加的证据表明,注释的细胞内信号传导途径涉及脉络膜黑色素瘤的发病机制。线性RAF / MEK / ERK信号通路的各种组分涉及各种肿瘤。因此,我们研究了RAF-1和MEK / ERK模块在人体正常脉络膜黑素细胞(NCM)和来自眼部脉络膜黑色素瘤(OCM-1)细胞系细胞的增殖中的作用。 OCM-1细胞增殖比NCM快四倍。在未暗示的OCM-1细胞中观察到MEK / ERK模块的高基础激活,而在培养的24-H型血清刺激后检测到快速和持续的激活。相比之下,在未刺激的NCM中,在未刺激的NCM中勉强可检测到MEK / ERK的活化,并在刺激细胞增殖后发生(6H)。通过药理学方法和通过反义寡核苷酸的RAF-1和ERK1 / 2产生的RAF-1和MEK1 / 2激活的抑制证明了OCM-1细胞中的RAF-1和MEK / ERK模块控制的增殖,但不是在NCM。 OCM-1细胞产生的P27KIP1水平非常低,而NCM产生恒定,高水平的P27KIP1。抑制RAF-1或MEK1 / 2诱导OCM-1细胞中P27KIP1的大幅增加,与阻塞细胞增殖相关。与P27KIP1的观察到观察到,C-1 myc生产水平高且恒定,低于NCM。通过防止OCM-1细胞中的C-MYC磷酸化抑制RAF-1和MEK1 / 2诱导C-MYC生产和下调的C-MYC活性的抑制。我们得出结论,RAF-1和MEK / ERK模块控制P27KIP1和C-MYC的产生,以及用于OCM-1细胞增殖的C-MYC的激活。

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