Uhlenbeck O C, Carey J, Romaniuk P J, Lowary P T, Beckett D
Department of Biochemistry, University of Illinois, Urbana 61801.
J Biomol Struct Dyn. 1983 Oct;1(2):539-52. doi: 10.1080/07391102.1983.10507460.
The interaction between bacteriophage R17 coat protein and its RNA binding site for translational repression was studied as an example of a sequence-specific RNA-protein interaction. A nitrocellulose filter retention assay is used to demonstrate equimolar binding between the coat protein and a synthetic 21 nucleotide RNA fragment. The Kd at 2 degrees C in a buffer containing 0.19 M salt is about 1 nM. The relatively weak ionic strength dependence of Ka and a delta H = -19 kcal/mole indicates that most of the binding free energy is due to non-electrostatic interactions. Since a variety of RNAs failed to compete with the 21 nucleotide fragment for coat protein binding, the interaction appears highly sequence specific. We have synthesized more than 30 different variants of the binding site sequence in order to identify the portions of the RNA molecule which are important for protein binding. Out of the five single stranded residues examined, four were essential for protein binding whereas the fifth could be replaced by any nucleotide. One variant was found to bind better than the wild type sequence. Substitution of nucleotides which disrupted the secondary structure of the binding fragment resulted in very poor binding to the protein. These data indicated that there are several points of contact between the RNA and the protein and the correct hairpin secondary structure of the RNA is essential for protein binding.
以噬菌体R17外壳蛋白与其用于翻译抑制的RNA结合位点之间的相互作用作为序列特异性RNA-蛋白质相互作用的一个例子进行了研究。采用硝酸纤维素滤膜滞留试验来证明外壳蛋白与一个合成的21核苷酸RNA片段之间的等摩尔结合。在含0.19 M盐的缓冲液中,2℃时的解离常数(Kd)约为1 nM。结合常数(Ka)对离子强度的依赖性相对较弱,且焓变(ΔH) = -19千卡/摩尔,这表明大部分结合自由能归因于非静电相互作用。由于多种RNA无法与21核苷酸片段竞争外壳蛋白结合,这种相互作用似乎具有高度的序列特异性。我们合成了30多种结合位点序列的不同变体,以确定RNA分子中对蛋白质结合重要的部分。在所研究的五个单链残基中,四个对蛋白质结合至关重要,而第五个可以被任何核苷酸取代。发现一种变体比野生型序列结合得更好。破坏结合片段二级结构的核苷酸取代导致与蛋白质的结合非常差。这些数据表明RNA与蛋白质之间存在几个接触点,并且RNA正确的发夹二级结构对于蛋白质结合至关重要。