Slobin L I, Jordan P
Eur J Biochem. 1984 Nov 15;145(1):143-50. doi: 10.1111/j.1432-1033.1984.tb08533.x.
Poly(A)-containing mRNA was prepared from polyribosomes and postpolyribosomal messenger ribonucleoprotein particles (mRNP) from Friend erythroleukemic cells. Both mRNA types were translated in vitro and the 35S-labeled translation products examined by two-dimensional gel electrophoresis. Among the most abundant untranslated mRNA species was the mRNA coding for eucaryotic elongation factor Tu (eEF-Tu). In addition, the mRNA for eucaryotic elongation factor Ts was also present in Friend cells in untranslated form. Calculations based on translation assays indicate that eEF-Tu represents about 15% of the translation products of RNP mRNA and that approximately 40% of the eEF-Tu synthesized in vitro is encoded by translationally repressed mRNA. This repressed mRNA can be activated by addition of cycloheximide to cell cultures. At the level of 0.1 micrograms/ml, cycloheximide was found to inhibit cellular protein synthesis by about 50% while augmenting the relative rate of eEF-Tu synthesis 1.6-fold. This result suggested that eEF-Tu mRNA might initiate poorly. However, addition of supersaturating levels of mRNA to a reticulocyte lysate augmented eEF-Tu synthesis about twofold, while generally depressing the synthesis of other proteins by about 40%. Thus the storage of large amounts of eEF-Tu mRNA in vivo is unlikely to be due directly to the ineffectiveness of the mRNA in competing for the initiation machinery of the cell. The results presented in this report suggest that the supply of active eEF-Tu in erythroleukemic cells is controlled, at least in part, by a translational mechanism.
从Friend红白血病细胞的多核糖体和多核糖体后信使核糖核蛋白颗粒(mRNP)中制备了含聚腺苷酸(Poly(A))的mRNA。这两种mRNA类型都在体外进行翻译,并通过二维凝胶电泳检测35S标记的翻译产物。在最丰富的未翻译mRNA种类中,有一种是编码真核延伸因子Tu(eEF-Tu)的mRNA。此外,真核延伸因子Ts的mRNA在Friend细胞中也以未翻译形式存在。基于翻译分析的计算表明,eEF-Tu约占RNP mRNA翻译产物的15%,并且体外合成的eEF-Tu中约40%由翻译抑制的mRNA编码。这种被抑制的mRNA可以通过向细胞培养物中添加环己酰亚胺来激活。在0.1微克/毫升的水平下,发现环己酰亚胺可抑制细胞蛋白质合成约50%,同时使eEF-Tu的相对合成速率提高1.6倍。这一结果表明eEF-Tu mRNA的起始效率可能较低。然而,向网织红细胞裂解物中添加超饱和水平的mRNA可使eEF-Tu合成增加约两倍,同时通常使其他蛋白质的合成降低约40%。因此,体内大量储存eEF-Tu mRNA不太可能直接归因于mRNA在竞争细胞起始机制方面的无效性。本报告中的结果表明,红白血病细胞中活性eEF-Tu的供应至少部分受翻译机制的控制。