Vijgenboom E, Nilsson L, Bosch L
Department of Biochemistry, University of Leiden, The Netherlands.
Nucleic Acids Res. 1988 Nov 11;16(21):10183-97. doi: 10.1093/nar/16.21.10183.
The polypeptide chain elongation factor EF-Tu of Escherichia coli is encoded by two genes, tufA and tufB, located in two different operons. Experiments in which either tufA or tufB was inactivated demonstrated that expression of the tRNA-tufB operon is dependent on a functioning tufA and thus on EF-Tu (1, to be published). In order to study a possible role of EF-Tu as trans-activator of the tRNA-tufB operon, we have investigated in vitro binding of an EF-Tu. GDP preparation to various DNA fragments of the operon. We demonstrate that specific binding occurs to a cis-acting region delimited from position -134 to the promoter, previously shown to enhance tufB transcription. Electrophoretic retardation assays reveal the formation of maximally three protein/DNA complexes, indicating that more than one protein molecule can bind to the DNA. The EF-Tu preparation used was obtained by affinity chromatography and appeared to be 95% pure. It lost its DNA binding activity upon further purification. That EF-Tu is nonetheless involved in the DNA binding is suggested by the observation that none of the three complexes is formed in the presence of kirromycin, an antibiotic that binds EF-Tu with high specificity. If so, EF-Tu.GDP most likely binds to the activator region of the tRNA-tufB operon in combination with another non-identified protein or component.
大肠杆菌的多肽链延伸因子EF-Tu由位于两个不同操纵子中的两个基因tufA和tufB编码。使tufA或tufB失活的实验表明,tRNA-tufB操纵子的表达依赖于有功能的tufA,因此依赖于EF-Tu(1,即将发表)。为了研究EF-Tu作为tRNA-tufB操纵子反式激活因子的可能作用,我们研究了EF-Tu·GDP制剂与该操纵子各种DNA片段的体外结合。我们证明,特异性结合发生在一个从-134位到启动子的顺式作用区域,该区域先前已被证明可增强tufB转录。电泳迁移率阻滞分析揭示了最多形成三种蛋白质/DNA复合物,这表明不止一个蛋白质分子可以与DNA结合。所用的EF-Tu制剂是通过亲和层析获得的,似乎纯度为95%。进一步纯化后它失去了DNA结合活性。然而,观察到在存在奇霉素(一种能与EF-Tu高特异性结合的抗生素)的情况下,三种复合物都没有形成,这表明EF-Tu参与了DNA结合。如果是这样,EF-Tu·GDP很可能与另一种未鉴定的蛋白质或成分结合,结合到tRNA-tufB操纵子的激活区域。