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Anti-cooperative assembly of the SRP19 and SRP68/72 components of the signal recognition particle

机译:信号识别粒子的SRP19和SRP68 / 72组件的反配合组装

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pThe mammalian SRP (signal recognition particle) represents an important model for the assembly and role of inter-domain interactions in complex RNPs (ribonucleoproteins). In the present study we analysed the interdependent interactions between the SRP19, SRP68 and SRP72 proteins and the SRP RNA. SRP72 binds the SRP RNA largely via non-specific electrostatic interactions and enhances the affinity of SRP68 for the RNA. SRP19 and SRP68 both bind directly and specifically to the same two RNA helices, but on opposite faces and at opposite ends. SRP19 binds at the apices of helices 6 and 8, whereas the SRP68/72 heterodimer binds at the three-way junction involving RNA helices 5, 6 and 8. Even though both SRP19 and SRP68/72 stabilize a similar parallel orientation for RNA helices 6 and 8, these two proteins bind to the RNA with moderate anti-cooperativity. Long-range anti-cooperative binding by SRP19 and SRP68/72 appears to arise from stabilization of distinct conformations in the stiff intervening RNA scaffold. Assembly of large RNPs is generally thought to involve either co-operative or energetically neutral interactions among components. By contrast, our findings emphasize that antagonistic interactions can play significant roles in assembly of multi-subunit RNPs./p
机译:>哺乳动物的SRP(信号识别颗粒)代表了复杂RNP(核糖核蛋白)中域间相互作用的组装和作用的重要模型。在本研究中,我们分析了SRP19,SRP68和SRP72蛋白与SRP RNA之间的相互依赖性相互作用。 SRP72主要通过非特异性静电相互作用与SRP RNA结合,并增强SRP68对RNA的亲和力。 SRP19和SRP68都直接且特异性地与相同的两个RNA螺旋结合,但位于相对的表面和相对的末端。 SRP19在螺旋6和8的末端结合,而SRP68 / 72异二聚体在涉及RNA螺旋5、6和8的三向连接处结合。即使SRP19和SRP68 / 72都稳定了RNA螺旋6的相似平行取向。 8,这两种蛋白质以适度的抗合作性结合到RNA。 SRP19和SRP68 / 72的远距离抗合作结合看来是由于僵化的中间RNA支架中独特构象的稳定所致。通常认为,大型RNP的组装涉及组件之间的合作或能量中立相互作用。相比之下,我们的研究结果强调,拮抗作用在多亚基RNP装配中起重要作用。

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