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鉴定出drm,一个新基因,其在转化细胞中的表达受到抑制,且在培养中能抑制正常细胞而非转化细胞的生长。

Identification of drm, a novel gene whose expression is suppressed in transformed cells and which can inhibit growth of normal but not transformed cells in culture.

作者信息

Topol L Z, Marx M, Laugier D, Bogdanova N N, Boubnov N V, Clausen P A, Calothy G, Blair D G

机构信息

Intramural Research Support Program, SAIC Frederick, NCI-FCRDC, Maryland 21702-1201, USA.

出版信息

Mol Cell Biol. 1997 Aug;17(8):4801-10. doi: 10.1128/MCB.17.8.4801.

Abstract

Using differential display analysis, we compared the expression of RNA in v-mos-transformed cells and their flat revertant and isolated a novel gene, drm (down-regulated in mos-transformed cells), whose expression is down-regulated in parental v-mos-transformed cells but which is expressed at a high level in the revertant and normal rat fibroblasts (REF-1 cells). Analysis of different oncogene-transformed cells revealed that drm gene expression was also suppressed in REF-1 cells transformed by v-ras, v-src, v-raf, and v-fos. The drm cDNA contains a 184-amino-acid-protein-encoding open reading frame which shows no significant homologies to known genes in DNA databases. Polyclonal antibodies raised against drm peptide detect a protein with the predicted size of 20.7 kDa in normal cells and under nonpermissive conditions in cells conditionally transformed by v-mos but not in parental v-mos-transformed cells. Northern analysis of normal adult tissues shows that drm is expressed as a 4.4-kb message in a tissue-specific manner, with high expression in the brain, spleen, kidney, and testis and little or no expression in the heart, liver, and skeletal muscle. In situ hybridization analysis in adult rat tissue reveals good correlation with this pattern and indicates that drm mRNA is most highly expressed in nondividing and terminally differentiated cells, such as neurons, type 1 lung cells, and goblet cells. Transfection of a drug-selectable drm expression vector dramatically reduced the efficiency of colony formation in REF-1 and CHO cells, and the drm-transfected REF-1 survivors expressed low or nondetectable levels of exogenous drm mRNA. The toxic effects of drm can be overcome by cotransfection with constructs expressing oncogenic ras; furthermore, cells expressing high levels of drm and conditionally transformed with mos-expressing Moloney murine sarcoma virus rapidly undergo apoptosis when shifted to the nonpermissive temperature. Taken together, our data suggest that cells expressing high levels of drm undergo apoptotic death in the absence of oncogene-induced transformation and that drm represents a novel gene with potential roles in cell growth control or viability and tissue-specific differentiation.

摘要

通过差异显示分析,我们比较了v-mos转化细胞及其扁平回复细胞中RNA的表达情况,并分离出一个新基因drm(在mos转化细胞中下调),该基因在亲本v-mos转化细胞中的表达下调,但在回复细胞和正常大鼠成纤维细胞(REF-1细胞)中高表达。对不同癌基因转化细胞的分析表明,在v-ras、v-src、v-raf和v-fos转化的REF-1细胞中,drm基因表达也受到抑制。drm cDNA包含一个编码184个氨基酸蛋白质的开放阅读框,在DNA数据库中与已知基因无明显同源性。针对drm肽产生的多克隆抗体在正常细胞以及在非允许条件下由v-mos条件转化的细胞中检测到一种预测大小为20.7 kDa的蛋白质,但在亲本v-mos转化细胞中未检测到。对正常成年组织的Northern分析表明,drm以4.4 kb的转录本以组织特异性方式表达,在脑、脾、肾和睾丸中高表达,而在心脏、肝脏和骨骼肌中几乎不表达或不表达。成年大鼠组织的原位杂交分析显示与该模式具有良好的相关性,并表明drm mRNA在非分裂和终末分化细胞(如神经元、I型肺细胞和杯状细胞)中表达最高。转染药物可选择的drm表达载体显著降低了REF-1和CHO细胞中的集落形成效率,并且转染drm的REF-1存活细胞中外源drm mRNA表达水平低或检测不到。drm的毒性作用可通过与表达致癌性ras的构建体共转染来克服;此外,表达高水平drm并由表达mos的莫洛尼鼠肉瘤病毒条件转化的细胞在转移到非允许温度时会迅速发生凋亡。综上所述,我们的数据表明,在没有癌基因诱导的转化情况下,表达高水平drm的细胞会发生凋亡死亡,并且drm代表一个在细胞生长控制、活力和组织特异性分化中具有潜在作用的新基因。

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