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咖啡酸苯乙酯(CAPE)对5型腺病毒E1A介导的转化作用及转化表型表达的抑制

Suppression of adenovirus type 5 E1A-mediated transformation and expression of the transformed phenotype by caffeic acid phenethyl ester (CAPE).

作者信息

Su Z Z, Grunberger D, Fisher P B

机构信息

Department of Urology, Columbia University, College of Physicians and Surgeons, New York 10032.

出版信息

Mol Carcinog. 1991;4(3):231-42. doi: 10.1002/mc.2940040310.

Abstract

Viral transformation and DNA-transfection assays were employed to investigate the differential toxic effect of caffeic acid phenethyl ester (CAPE), an extract of the honeybee hive product propolis, on adenovirus type 5 (Ad5)-transformed cloned rat embryo fibroblast (CREF) cells. CAPE inhibited, in a dose-dependent manner, both de novo and carcinogen-enhanced transformation of CREF cells by H5hr1, the cold-sensitive (cs) host-range mutant of Ad5. CAPE had a selective inhibitory effect on Ad5-induced transformation when a wild-type (wt) Ad5 E1A gene or a cs Ad5 E1A gene (at 37 degrees C, but not at 32 degrees C) was cotransfected into CREF cells with a dominant-acting bacterial hygromycin-resistance gene. A requirement for the expression of Ad5 E1A-encoded mRNAs and transforming proteins and sensitivity to CAPE was demonstrated using CREF cells stably transformed by a cs Ad5 E1A gene and an Ad5 E1A gene under the transcriptional control of a mouse mammary tumor virus promoter. To distinguish between the effects of the two Ad5 E1A-encoded proteins of 289 amino acids (aa) and 243 aa, CREF cells were stably transformed with cDNAs encoding either the 13S or the 12S E1A mRNA. CREF cells expressing the 13S E1A-encoded 289-aa protein were more sensitive to the growth-suppressing effect of CAPE than cells producing only the 12S E1A-encoded 243-aa protein. However, the growth-suppressing and toxic effects of CAPE were greatest in cells expressing both E1A-encoded transforming proteins. Analysis of the effect of CAPE on E1A and beta-actin gene expression in wt and cs E1A and H5hr1-transformed CREF cells indicated that low levels of CAPE, which were growth suppressive, did not selectively suppress E1A expression. These results demonstrated that cellular changes induced in CREF cells by the 13S E1A-encoded 289-aa protein of Ad5, when expressed alone or in combination with the 12S E1A-encoded 243-aa protein, rendered transformed cells sensitive to the growth-suppressing and toxic effects of CAPE.

摘要

采用病毒转化和DNA转染试验,研究蜜蜂蜂巢产品蜂胶提取物咖啡酸苯乙酯(CAPE)对5型腺病毒(Ad5)转化的克隆大鼠胚胎成纤维细胞(CREF)的差异毒性作用。CAPE以剂量依赖性方式抑制Ad5的冷敏感(cs)宿主范围突变体H5hr1对CREF细胞的从头转化和致癌物增强的转化。当野生型(wt)Ad5 E1A基因或cs Ad5 E1A基因(在37℃,而非32℃)与显性作用的细菌潮霉素抗性基因共转染到CREF细胞中时,CAPE对Ad5诱导的转化具有选择性抑制作用。使用由cs Ad5 E1A基因和在小鼠乳腺肿瘤病毒启动子转录控制下的Ad5 E1A基因稳定转化的CREF细胞,证明了对Ad5 E1A编码的mRNA和转化蛋白表达的需求以及对CAPE的敏感性。为了区分Ad5 E1A编码的两种289个氨基酸(aa)和243个aa的蛋白质的作用,用编码13S或12S E1A mRNA的cDNA稳定转化CREF细胞。表达13S E1A编码的289-aa蛋白质的CREF细胞比仅产生12S E1A编码的243-aa蛋白质的细胞对CAPE的生长抑制作用更敏感。然而,CAPE的生长抑制和毒性作用在表达两种E1A编码的转化蛋白的细胞中最大。分析CAPE对wt和cs E1A以及H5hr1转化的CREF细胞中E1A和β-肌动蛋白基因表达的影响表明,低水平的具有生长抑制作用的CAPE不会选择性地抑制E1A表达。这些结果表明,Ad5的13S E1A编码的289-aa蛋白质单独或与12S E

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