Goldson Tovë M, Vielhauer George, Staub Eveline, Miller Steve, Shim Hyunsuk, Hagedorn Curt H
Program in Biochemistry, Cell and Developmental Biology, Emory University School of Medicine, Atlanta, Georgia, USA.
Mol Carcinog. 2007 Jan;46(1):71-84. doi: 10.1002/mc.20276.
Eukaryotic initiation factor 4E (eIF4E) binds to the 5' m(7)G cap of mRNAs and is a focal point of regulation of initiation of mRNA translation. High levels of expression of eIF4E in many epithelial cancers, including breast, head and neck, colon, and bladder, correlate with increased tissue invasion and metastasis. To further examine the role of eIF4E in the biology of cancer cells, variants of eIF4E with impaired 5' cap binding function were expressed in MDA-MB-435 carcinoma cells. Cell lines overexpressing variants of eIF4E had impaired growth properties and exhibited a different morphology compared to cells expressing similar amounts of exogenous wild-type eIF4E or control cells. Cells expressing variant eIF4E did not form foci in culture and produced smaller colonies in soft agar compared to cells expressing wild-type eIF4E. In addition, analysis of polyribosomes for vascular endothelial growth factor (VEGF) mRNA demonstrated a shift from translationally active to inactive fractions in variant eIF4E cells, while GAPDH mRNA did not. The long G-C rich 5' untranslated region of VEGF mRNA is a feature of other mRNAs encoding growth regulating proteins that are predicted to have their translation enhanced by increases in eIF4E; whereas mRNA with shorter and less structured 5' UTRs, like that of GAPDH, are predicted to be largely unaffected. These data suggest that targeting the 5' cap-binding domain of eIF4E may be a viable option to slow cancer cell growth and alter the malignant phenotype.
真核生物起始因子4E(eIF4E)与mRNA的5' m(7)G帽结合,是mRNA翻译起始调控的一个焦点。在包括乳腺癌、头颈癌、结肠癌和膀胱癌在内的许多上皮癌中,eIF4E的高表达水平与组织侵袭和转移增加相关。为了进一步研究eIF4E在癌细胞生物学中的作用,在MDA-MB-435癌细胞中表达了5'帽结合功能受损的eIF4E变体。与表达相似量外源性野生型eIF4E的细胞或对照细胞相比,过表达eIF4E变体的细胞系生长特性受损且表现出不同的形态。与表达野生型eIF4E的细胞相比,表达变体eIF4E的细胞在培养中不形成集落,并且在软琼脂中形成的菌落较小。此外,对血管内皮生长因子(VEGF)mRNA的分析表明,在变体eIF4E细胞中,VEGF mRNA从翻译活性部分转移到非活性部分,而甘油醛-3-磷酸脱氢酶(GAPDH)mRNA则没有。VEGF mRNA富含G-C的长5'非翻译区是其他编码生长调节蛋白的mRNA的一个特征,预计这些mRNA的翻译会因eIF4E增加而增强;而像GAPDH那样5'非翻译区较短且结构较少的mRNA预计基本不受影响。这些数据表明,靶向eIF4E的5'帽结合结构域可能是减缓癌细胞生长和改变恶性表型的一个可行选择。