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c-myc基因诱导的蛋白激酶C表达改变:一种促进myc-ras基因互补的可能机制。

c-myc gene-induced alterations in protein kinase C expression: a possible mechanism facilitating myc-ras gene complementation.

作者信息

Barr L F, Mabry M, Nelkin B D, Tyler G, May W S, Baylin S B

机构信息

Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.

出版信息

Cancer Res. 1991 Oct 15;51(20):5514-9.

PMID:1655253
Abstract

The mechanism(s) by which the c-myc nuclear protein and the membrane-associated ras protein interact to mediate phenotypic changes is unknown. We now find that c-mcy gene expression is associated with alterations in the principal signal transduction pathway through which the ras protein is thought to function. We studied the transcript and protein expression of protein kinase C (PKC) isoforms in a culture line of human small cell lung cancer cells (NCI H209) in which expression of inserted c-myc and Ha-ras genes together, but not alone, causes a transition to a large cell phenotype. In control H209 cells, at the transcript and cell membrane protein levels, PKC-alpha is the dominant PKC species. In this cell line, the expression of an exogenous c-myc gene, but not of a viral Ha-ras gene, causes a 5- to 10-fold increase in the PKC-beta isoform transcript and protein. The insertion of ras into the exogenous myc-expressing 209 cells, in addition to causing phenotypic transition, results in the translocation of the PKC-beta protein from the cytosol to the membrane fraction and a decrease in membrane-associated PKC-alpha. Concomitant with these changes, the increased PKC isoform transcript levels induced by myc alone are completely reversed. These observations suggest that a complex set of PKC transcript and protein alterations, most prominently involving an increased PKC-beta protein level in the cell membrane, a decrease in PKC-alpha protein, and a decrease in all PKC isoform transcripts, may represent a fundamental event(s) for c-myc collaboration with Ha-ras to alter cell phenotype.

摘要

c-myc核蛋白与膜相关的ras蛋白相互作用以介导表型变化的机制尚不清楚。我们现在发现,c-mcy基因表达与ras蛋白发挥作用所通过的主要信号转导途径的改变有关。我们研究了人小细胞肺癌细胞系(NCI H209)中蛋白激酶C(PKC)同工型的转录本和蛋白表达,在该细胞系中,插入的c-myc和Ha-ras基因共同表达(而非单独表达)会导致向大细胞表型的转变。在对照H209细胞中,在转录本和细胞膜蛋白水平上,PKC-α是主要的PKC种类。在该细胞系中,外源性c-myc基因的表达而非病毒Ha-ras基因的表达会导致PKC-β同工型转录本和蛋白增加5至10倍。将ras插入表达外源性myc的209细胞中,除了引起表型转变外,还会导致PKC-β蛋白从胞质溶胶转运至膜部分,并使膜相关的PKC-α减少。伴随着这些变化,单独由myc诱导的PKC同工型转录本水平升高完全逆转。这些观察结果表明,一组复杂的PKC转录本和蛋白改变,最显著的是细胞膜中PKC-β蛋白水平增加、PKC-α蛋白减少以及所有PKC同工型转录本减少,可能代表了c-myc与Ha-ras协同改变细胞表型的一个基本事件。

相似文献

1
c-myc gene-induced alterations in protein kinase C expression: a possible mechanism facilitating myc-ras gene complementation.c-myc基因诱导的蛋白激酶C表达改变:一种促进myc-ras基因互补的可能机制。
Cancer Res. 1991 Oct 15;51(20):5514-9.
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Increased expression of a high molecular weight (130 KD) protein kinase C isoform in a differentiation-defective ras-transfected keratinocyte line.在一个分化缺陷的ras转染角质形成细胞系中,一种高分子量(130KD)蛋白激酶C亚型的表达增加。
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The growth inhibitory effect of N1,N12-bis(ethyl)spermine in small cell lung cancer cells is maintained in cells expressing the c-myc and Ha-ras oncogenes.N1,N12-双(乙基)精胺在小细胞肺癌细胞中的生长抑制作用在表达c-myc和Ha-ras癌基因的细胞中得以维持。
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Transition from SCLC to NSCLC phenotype is accompanied by an increased TRE-binding activity and recruitment of specific AP-1 proteins.从肺小细胞癌(SCLC)表型向非小细胞肺癌(NSCLC)表型的转变伴随着TRE结合活性的增加以及特定活化蛋白-1(AP-1)蛋白的募集。
Oncogene. 1998 Jun 11;16(23):3057-68. doi: 10.1038/sj.onc.1201845.

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Proteins kinase Cɛ is required for non-small cell lung carcinoma growth and regulates the expression of apoptotic genes.蛋白激酶 Cɛ 对于非小细胞肺癌的生长是必需的,并且调节凋亡基因的表达。
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Towards selective pharmacological modulation of protein kinase C--opportunities for the development of novel antineoplastic agents.迈向蛋白激酶C的选择性药理学调控——新型抗肿瘤药物研发的机遇
Br J Cancer. 1992 Jul;66(1):10-9. doi: 10.1038/bjc.1992.209.