Wetzler Diana E, Gallo Mariana, Melis Riccardo, Eliseo Tomasso, Nadra Alejandro D, Ferreiro Diego U, Paci Maurizio, Sánchez Ignacio E, Cicero Daniel O, de Prat Gay Gonzalo
Fundación Instituto Leloir and IIBBA-CONICET, Patricias Argentinas 435 (C1405BWE), Buenos Aires, Argentina.
Biopolymers. 2009 Jun;91(6):432-43. doi: 10.1002/bip.21146.
Nucleic acid recognition is often mediated by alpha-helices or disordered regions that fold into alpha-helix on binding. A peptide bearing the DNA recognition helix of HPV16 E2 displays type II polyproline (PII) structure as judged by pH, temperature, and solvent effects on the CD spectra. NMR experiments indicate that the canonical alpha-helix is stabilized at the N-terminus, while the PII forms at the C-terminus half of the peptide. Re-examination of the dihedral angles of the DNA binding helix in the crystal structure and analysis of the NMR chemical shift indexes confirm that the N-terminus half is a canonical alpha-helix, while the C-terminal half adopts a 3(10) helix structure. These regions precisely match two locally driven folding nucleii, which partake in the native hydrophobic core and modulate a conformational switch in the DNA binding helix. The peptide shows only weak and unspecific residual DNA binding, 10(4)-fold lower affinity, and 500-fold lower discrimination capacity compared with the domain. Thus, the precise side chain conformation required for modulated and tight physiological binding by HPV E2 is largely determined by the noncanonical strained alpha-helix conformation, "presented" by this unique architecture. (c) 2009 Wiley Periodicals, Inc. Biopolymers 91: 432-443, 2009.
核酸识别通常由α-螺旋或无序区域介导,这些区域在结合时会折叠成α-螺旋。通过pH、温度和溶剂对圆二色光谱的影响判断,携带人乳头瘤病毒16 E2 DNA识别螺旋的肽呈现II型聚脯氨酸(PII)结构。核磁共振实验表明,典型的α-螺旋在N端稳定,而PII结构在肽的C端一半形成。对晶体结构中DNA结合螺旋的二面角重新检查以及对核磁共振化学位移指数的分析证实,N端一半是典型的α-螺旋,而C端一半采用3(10)螺旋结构。这些区域精确匹配两个局部驱动的折叠核心,它们参与天然疏水核心并调节DNA结合螺旋中的构象转换。与该结构域相比,该肽仅显示出弱的和非特异性的残留DNA结合,亲和力低10(4)倍,区分能力低500倍。因此,人乳头瘤病毒E2进行调节性紧密生理结合所需的精确侧链构象在很大程度上由这种独特结构“呈现”的非典型应变α-螺旋构象决定。(c) 2009年威利期刊公司。生物聚合物91: 432 - 443,2009年。