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诱导性MEK1激活对淋巴细胞细胞因子依赖性的影响。

Effects of inducible MEK1 activation on the cytokine dependency of lymphoid cells.

作者信息

Blalock W L, Pearce M, Chang F, Lee J T, Pohnert S C, Burrows C, Steelman L S, Franklin R A, McMahon M, McCubrey J A

机构信息

Department of Microbiology and Immunology, Brody School of Medicine at East Carolina University, Greenville, NC 27858, USA.

出版信息

Leukemia. 2001 May;15(5):794-807. doi: 10.1038/sj.leu.2402109.

Abstract

The Raf/MEK/MAP kinase cascade plays a critical role in transducing growth signals from activated cell surface receptors. Using deltaMEK1:ER, a conditionally active form of MEK1, we demonstrate the ability of this dual specificity protein kinase to abrogate the cytokine dependency of the murine lymphoid hematopoietic cell line FL5.12. Cytokine-independent cells were obtained from FL5.12 cells at a frequency of 1 x 10(-7), indicating that a low frequency of cells expressing deltaMEK1:ER were factor-independent. In general, cells that were converted to a cytokine-independent phenotype displayed a higher level of MAP kinase activity in response to deltaMEK1:ER activation than those that remained cytokine-dependent. deltaMEK1:ER-responsive cells could be maintained long-term in the presence of beta-estradiol, as well as the estrogen-receptor antagonist 4-hydroxy-tamoxifen. Removal of hormone led to the rapid cessation of cell growth in a manner similar to that observed when cytokine is withdrawn from the parental cells. GM-CSF mRNA transcripts were detected in the MEK1-responsive cells indicating that activated deltaMEK1:ER may induce a pathway leading to autocrine proliferation. Cytokine-dependent deltaMEK1:ER cells were found to increase the expression of GM-CSF receptor alpha (GM-CSFRalpha) in response to beta-estradiol. In contrast, MEK1-responsive cells were found to express constitutively lower levels of GM-CSFRalpha and beta common (betac) chains indicating that constitutive GM-CSF expression resulted in a decrease in GM-CSFR expression. Treatment of parental cells with supernatant from MEK1-responsive FL5.12 cells was sufficient to promote [3H]-thymidine incorporation. GM-CSF was found to enhance the viability of FL5.12 cells. The cell lines described here will be useful for elaborating the ability of the MAP kinase pathway to regulate cell proliferation in hematopoietic cells.

摘要

Raf/MEK/MAP激酶级联在转导来自活化细胞表面受体的生长信号中起关键作用。使用deltaMEK1:ER(一种MEK1的条件活性形式),我们证明了这种双特异性蛋白激酶消除小鼠淋巴造血细胞系FL5.12对细胞因子依赖性的能力。以1×10⁻⁷的频率从FL5.12细胞中获得了不依赖细胞因子的细胞,这表明表达deltaMEK1:ER的细胞频率较低且不依赖因子。一般来说,转化为不依赖细胞因子表型的细胞在响应deltaMEK1:ER激活时,比那些仍然依赖细胞因子的细胞表现出更高水平的MAP激酶活性。deltaMEK1:ER反应性细胞在存在β-雌二醇以及雌激素受体拮抗剂4-羟基他莫昔芬的情况下可以长期维持。去除激素导致细胞生长迅速停止,其方式类似于从亲代细胞中撤除细胞因子时观察到的情况。在MEK1反应性细胞中检测到GM-CSF mRNA转录本,表明活化的deltaMEK1:ER可能诱导一条导致自分泌增殖的途径。发现依赖细胞因子的deltaMEK1:ER细胞在响应β-雌二醇时会增加GM-CSF受体α(GM-CSFRα)的表达。相比之下,发现MEK1反应性细胞组成性表达较低水平的GM-CSFRα和β共同(βc)链,这表明组成性GM-CSF表达导致GM-CSFR表达降低。用MEK1反应性FL5.12细胞的上清液处理亲代细胞足以促进[³H]-胸腺嘧啶核苷掺入。发现GM-CSF可增强FL5.12细胞的活力。这里描述的细胞系将有助于阐明MAP激酶途径调节造血细胞中细胞增殖的能力。

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