Koukiekolo Roger, Sagan Selena M, Pezacki John Paul
The Steacie Institute for Molecular Sciences, National Research Council of Canada, Ottawa, Canada.
FEBS Lett. 2007 Jun 26;581(16):3051-6. doi: 10.1016/j.febslet.2007.05.064. Epub 2007 Jun 4.
The RNA silencing pathway is an important component of the anti-viral immune response in eukaryotes, particularly in plants. In turn, many viruses have evolved mechanisms to evade or suppress this pathway. Tombusviruses such as the Carnation Italian ringspot virus (CIRV) express a 19kDa protein (p19) that is a suppressor of RNA silencing in infected plants. This protein acts as a dimer and binds specifically to short-interfering RNA (siRNA) through electrostatic interactions between charged residues in the binding cleft. Since pH and salt concentrations can vary widely from host to host, we have investigated the influence of these parameters on the siRNA binding activity of CIRV p19. Previously, we established a convenient fluorescence-based method for assaying CIRV p19:siRNA binding using Ni(2+)-NTA coated 96-well plates. Using this method, we observe that the CIRV p19 protein binds to siRNA with nanomolar affinity and that this binding is sensitive to pH and salt concentration. The pH-dissociation constant profile shows that CIRV p19:siRNA binding is dependent on three different apparent pK(a) values. The values extrapolated from the curve are 7.1, 8.0 and 10.6 that we interpret as the ionization of one or more histidine, cysteine and lysine residues, respectively. We find that the optimal suppression of RNA silencing by CIRV p19 occurs in the pH range from 6.2 to 7.6.
RNA沉默途径是真核生物,尤其是植物抗病毒免疫反应的重要组成部分。反过来,许多病毒已经进化出逃避或抑制该途径的机制。番茄丛矮病毒属病毒,如香石竹意大利环斑病毒(CIRV),表达一种19kDa的蛋白质(p19),它是受感染植物中RNA沉默的抑制因子。该蛋白质以二聚体形式起作用,并通过结合裂隙中带电荷残基之间的静电相互作用特异性结合短干扰RNA(siRNA)。由于宿主之间的pH值和盐浓度差异很大,我们研究了这些参数对CIRV p19的siRNA结合活性的影响。此前,我们建立了一种方便的基于荧光的方法,用于使用镍(2+)-NTA包被的96孔板检测CIRV p19与siRNA的结合。使用该方法,我们观察到CIRV p19蛋白以纳摩尔亲和力结合siRNA,并且这种结合对pH值和盐浓度敏感。pH解离常数曲线表明,CIRV p19与siRNA的结合取决于三个不同的表观pK(a)值。从曲线外推得到的值分别为7.1、8.0和10.6,我们将其分别解释为一个或多个组氨酸、半胱氨酸和赖氨酸残基的电离。我们发现,CIRV p19对RNA沉默的最佳抑制发生在pH值为6.2至7.6的范围内。