Belle Valérie, Rouger Sabrina, Costanzo Stéphanie, Liquière Elodie, Strancar Janez, Guigliarelli Bruno, Fournel André, Longhi Sonia
Bioénergétique et Ingénierie des Protéines, UPR 9036 CNRS et Université Aix-Marseille I et II, 31 Chemin Joseph Aiguier, 13402 Marseille Cedex 9, France.
Proteins. 2008 Dec;73(4):973-88. doi: 10.1002/prot.22125.
Using site-directed spin-labeling EPR spectroscopy, we mapped the region of the intrinsically disordered C-terminal domain of measles virus nucleoprotein (N(TAIL)) that undergoes induced folding. In addition to four spin-labeled N(TAIL) variants (S407C, S488C, L496C, and V517C) (Morin et al. (2006), J Phys Chem 110: 20596-20608), 10 new single-site cysteine variants were designed, purified from E. coli, and spin-labeled. These 14 spin-labeled variants enabled us to map in detail the gain of rigidity of N(TAIL) in the presence of either the secondary structure stabilizer 2,2,2-trifluoroethanol or the C-terminal domain X (XD) of the viral phosphoprotein. Different regions of N(TAIL) were shown to contribute to a different extent to the binding to XD, while the mobility of the spin labels grafted at positions 407 and 460 was unaffected upon addition of XD; that of the spin labels grafted within the 488-502 and the 505-522 regions was severely and moderately reduced, respectively. Furthermore, EPR experiments in the presence of 30% sucrose allowed us to precisely map to residues 488-502, the N(TAIL) region undergoing alpha-helical folding. The mobility of the 488-502 region was found to be restrained even in the absence of the partner, a behavior that could be accounted for by the existence of a transiently populated folded state. Finally, we show that the restrained motion of the 505-522 region upon binding to XD is due to the alpha-helical transition occurring within the 488-502 region and not to a direct interaction with XD.
利用定点自旋标记电子顺磁共振波谱技术,我们绘制了麻疹病毒核蛋白(N(TAIL))内在无序的C末端结构域中发生诱导折叠的区域图谱。除了四种自旋标记的N(TAIL)变体(S407C、S488C、L496C和V517C)(Morin等人,(2006),《物理化学杂志》110: 20596 - 20608),我们还设计了10种新的单位点半胱氨酸变体,从大肠杆菌中纯化出来并进行自旋标记。这14种自旋标记变体使我们能够详细绘制在存在二级结构稳定剂2,2,2 - 三氟乙醇或病毒磷蛋白的C末端结构域X(XD)的情况下N(TAIL)刚性增加的图谱。结果表明,N(TAIL)的不同区域对与XD的结合贡献程度不同,而接在407和460位的自旋标记的流动性在添加XD后不受影响;接在488 - 502区域和505 - 522区域内的自旋标记的流动性分别严重和中度降低。此外,在30%蔗糖存在下进行的电子顺磁共振实验使我们能够精确地将进行α - 螺旋折叠的N(TAIL)区域定位到488 - 502位残基。即使在没有结合伴侣的情况下,也发现488 - 502区域的流动性受到限制,这种行为可以用存在短暂形成的折叠状态来解释。最后,我们表明,505 - 522区域在与XD结合时运动受到限制是由于488 - 502区域内发生了α - 螺旋转变,而不是与XD直接相互作用的结果。