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首页> 外文期刊>Cell cycle >RNA-binding motif protein 35A is a novel tumor suppressor for colorectal cancer.
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RNA-binding motif protein 35A is a novel tumor suppressor for colorectal cancer.

机译:RNA结合基序蛋白35A是结直肠癌的新型肿瘤抑制因子。

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The frequent occurrence of inactivating gene mutations in tumors suggests a tumor suppressor function of the mutated gene. The RNA binding motif protein 35A (RBM35A) is mutated in approximately 50% of analyzed primary colon tumors with microsatellite instability. The Tet-off regulated ectopic expression of RBM35A gene in RBM35A-null LS180 colon carcinoma cells inhibited anchorage-independent growth in vitro, suppressed tumorigenic potential in vivo and enhanced adhesiveness of these cancer cells. Using microarray hybridization we found that in response to RBM35A expression a small fraction of genes showed a decrease in polysome-associated mRNA. Experiments using cell-free in vitro translation system demonstrated that RBM35A differentially affects translation of luciferase reporter mediated by various 5'untranslated regions (UTR). We found that Gibbs energy value (DeltaG) of secondary structure formed by 5'UTRs of mRNAs can account for differential effect of RBM35A on reporter translation efficiency. Targeted mutation in the FOS 5'UTR sequence, which increased the DeltaG value of hairpin stem formation, resulted in a stronger inhibitory effect of RBM35A on reporter translation efficiency mediated by this UTR. Immunoblotting revealed that ectopic expression of RBM35A in LS180 cells caused alterations in protein levels for several cancer related genes. Our results demonstrate for the first time that RBM35A functions as a tumor suppressor in colon cancer cells. We propose that RBM35A is involved in posttranscriptional regulation of a number of genes by exerting a differential effect on protein translation via 5'UTRs of mRNAs.
机译:肿瘤中失活基因突变的频繁发生暗示了突变基因的抑癌功能。 RNA结合基序蛋白35A(RBM35A)在大约50%的经分析的原发性结肠肿瘤中发生了突变,具有微卫星不稳定性。 RBM35A无效的LS180结肠癌细胞中RBM35A基因的Tet-off调节异位表达抑制了体外的锚定非依赖性生长,抑制了体内致癌潜力并增强了这些癌细胞的粘附性。使用微阵列杂交我们发现,响应RBM35A表达,一小部分基因显示多核糖体相关mRNA减少。使用无细胞体外翻译系统的实验表明,RBM35A差异性影响由各种5'非翻译区(UTR)介导的萤光素酶报告基因的翻译。我们发现由mRNA的5'UTRs形成的二级结构的吉布斯能量值(DeltaG)可以解释RBM35A对记者翻译效率的不同影响。 FOS 5'UTR序列中的定向突变增加了发夹茎形成的DeltaG值,导致RBM35A对这种UTR介导的报道分子翻译效率的抑制作用更强。免疫印迹显示,RB1803A在LS180细胞中的异位表达导致几种癌症相关基因的蛋白质水平发生改变。我们的结果首次证明RBM35A在结肠癌细胞中起着抑癌作用。我们建议RBM35A通过对mRNA的5'UTRs进行蛋白质翻译产生不同的影响,从而参与许多基因的转录后调控。

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