Baldwin Amy E, Khan Mateen A, Tumer Nilgun E, Goss Dixie J, Friedland Diana E
Department of Chemistry, Pace University, New York, NY, 10038, USA.
Biochim Biophys Acta. 2009 Feb;1789(2):109-16. doi: 10.1016/j.bbagrm.2008.09.001. Epub 2008 Sep 20.
Pokeweed antiviral protein (PAP) is a type I ribosomal inactivating protein (RIP). PAP binds to and depurinates the sarcin/ricin loop (SRL) of ribosomal RNA resulting in the cessation of protein synthesis. PAP has also been shown to bind to mRNA cap analogs and depurinate mRNA downstream of the cap structure. The biological role of cap binding and its possible role in PAP activity are not known. Here we show the first direct quantitative evidence for PAP binding to the cap analog m(7)GTP. We report a binding affinity of 43.3+/-0.1 nM at 25 degrees C as determined by fluorescence quenching experiments. This is similar to the values reported for wheat cap-binding proteins eIFiso4E and eIFiso4F. van't Hoff analysis of m(7)GTP-PAP equilibrium reveals a binding reaction that is enthalpy driven and entropy favored with TDeltaS degrees contributing 15% to the overall value of DeltaG degrees . This is in contrast to the wheat cap-binding proteins which are enthalpically driven in the DeltaG degrees for binding. Competition experiments indicate that ATP and GTP compete for the cap-binding site on PAP with slightly different affinities. Fluorescence studies of PAP-eIFiso4G binding reveal a protein-protein interaction with a K(d) of 108.4+/-0.3 nM. eIFiso4G was shown to enhance the interaction of PAP with m(7)GTP cap analog by 2.4-fold. These results suggest the involvement of PAP-translation initiation factor complexes in RNA selection and depurination.
商陆抗病毒蛋白(PAP)是一种I型核糖体失活蛋白(RIP)。PAP与核糖体RNA的肌动蛋白/蓖麻毒素环(SRL)结合并使其脱嘌呤,导致蛋白质合成停止。PAP还被证明能与mRNA帽类似物结合,并使帽结构下游的mRNA脱嘌呤。帽结合的生物学作用及其在PAP活性中的可能作用尚不清楚。在这里,我们展示了PAP与帽类似物m(7)GTP结合的首个直接定量证据。我们通过荧光猝灭实验报告了在25摄氏度下的结合亲和力为43.3±0.1 nM。这与报道的小麦帽结合蛋白eIFiso4E和eIFiso4F的值相似。对m(7)GTP-PAP平衡的范特霍夫分析表明,结合反应是由焓驱动且熵有利的,TDeltaS度对DeltaG度总值的贡献为15%。这与小麦帽结合蛋白不同,后者在结合的DeltaG度中是由焓驱动的。竞争实验表明,ATP和GTP以略有不同的亲和力竞争PAP上的帽结合位点。PAP-eIFiso4G结合的荧光研究揭示了一种蛋白质-蛋白质相互作用,其解离常数(Kd)为108.4±0.3 nM。eIFiso4G被证明能使PAP与m(7)GTP帽类似物的相互作用增强2.4倍。这些结果表明PAP-翻译起始因子复合物参与了RNA的选择和脱嘌呤过程。