首页> 美国卫生研究院文献>Journal of Virology >Interaction of the C-Terminal Domains of Sendai Virus N and P Proteins: Comparison of Polymerase-Nucleocapsid Interactions within the Paramyxovirus Family
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Interaction of the C-Terminal Domains of Sendai Virus N and P Proteins: Comparison of Polymerase-Nucleocapsid Interactions within the Paramyxovirus Family

机译:仙台病毒N和P蛋白的C末端域的相互作用:副粘病毒家族中聚合酶-核衣壳相互作用的比较。

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摘要

Interaction of the C-terminal domains of Sendai virus (SeV) P and N proteins is crucial for RNA synthesis by correctly positioning the polymerase complex (L+P) onto the nucleocapsid (N/RNA). To better understand this mechanism within the paramyxovirus family, we have studied the complex formed by the SeV C-terminal domains of P (PX) and N (NTAIL) proteins by solution nuclear magnetic resonance spectroscopy. We have characterized SeV NTAIL, which belongs to the class of intrinsically disordered proteins, and precisely defined the binding regions within this latter domain and within PX. SeV NTAIL binds with residues 472 to 493, which have a helical propensity (residues 477 to 491) to the surface created by helices α2 and α3 of PX with a 1:1 stoichiometry, as was also found for measles virus (MV). The binding interface is dominated by charged residues, and the dissociation constant was determined to be 57 ± 18 μM under conditions of the experiment (i.e., in 0.5 M NaCl). We have also shown that the extreme C terminus of SeV NTAIL does not interact with PX, which is in contrast to MV, where a second binding site was identified. In addition, the interaction surfaces of the MV proteins are hydrophobic and a stronger binding constant was found. This gives a good illustration of how selection pressure allowed the C-terminal domains of N and P proteins to evolve concomitantly within this family of viruses in order to lead to protein complexes having the same three-dimensional fold, and thus the same function, but with completely different binding interfaces.
机译:仙台病毒(SeV)P和N蛋白C末端结构域的相互作用通过正确地将聚合酶复合物(L + P)定位在核衣壳(N / RNA)上,对于RNA合成至关重要。为了更好地了解副粘病毒家族中的这种机制,我们通过溶液核磁共振波谱研究了P(PX)和N(NTAIL)蛋白的SeV C末端结构域形成的复合物。我们已经表征了SeV NTAIL,它属于内在无序的蛋白质,并精确地定义了后者域和PX内的结合区。 SeV NTAIL与残基472至493结合,该残基以1:1的化学计量比对PX的螺旋α2和α3产生的表面具有螺旋倾向(残基477至491),对于麻疹病毒(MV)也是如此。结合界面由带电荷的残基主导,在实验条件下(即在0.5 M NaCl中)测定解离常数为57±18μM。我们还表明,SeV NTAIL的极端C末端不与PX相互作用,这与MV相反,在MV中,已经确定了第二个结合位点。另外,MV蛋白的相互作用表面是疏水的,并且发现了更强的结合常数。这很好地说明了选择压力如何使N和P蛋白的C末端结构域在该病毒家族中同时进化,从而导致蛋白质复合物具有相同的三维折叠,因此具有相同的功能,但是具有完全不同的绑定接口。

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