Hughes Robert M, Waters Marcey L
Department of Chemistry, University of North Carolina, Chapel Hill, NC 27599-3290, USA.
J Am Chem Soc. 2006 Oct 4;128(39):12735-42. doi: 10.1021/ja061656g.
Arginine methylation is a common post-translational modification that plays a role in many cellular processes through mediation of protein-protein interactions. There is still a dearth of structural information as to its role in mediating such interactions, but the available data suggest a possible role of cation-pi interactions in the recognition of methylated arginine. Hence, the effect of arginine methylation on its interaction with tryptophan has been investigated within the context of a beta-hairpin peptide. Arginine methylation was found to enhance the stacking interaction between the cationic guanidinium functionality of arginine and the indole ring of tryptophan, resulting in structural stabilization of the hairpin. Thermodynamic analysis reveals more favorable entropy of hairpin folding with arginine methylation, a more negative change in heat capacity for folding, and a modest decrease in enthalpic driving force. This is consistent with enhanced stacking and hydrophobic interactions through increased surface area of the guanidinium moiety and greater delocalization of positive charge. In addition, these peptides exhibit significant cold denaturation, which can be accounted for by the inclusion of an expression of temperature-dependent DeltaC(p) in the thermodynamic analysis.
精氨酸甲基化是一种常见的翻译后修饰,通过介导蛋白质-蛋白质相互作用在许多细胞过程中发挥作用。关于其在介导此类相互作用中的作用,目前仍缺乏结构信息,但现有数据表明阳离子-π相互作用在识别甲基化精氨酸方面可能发挥作用。因此,在β-发夹肽的背景下研究了精氨酸甲基化对其与色氨酸相互作用的影响。发现精氨酸甲基化增强了精氨酸的阳离子胍基官能团与色氨酸的吲哚环之间的堆积相互作用,从而导致发夹结构的稳定。热力学分析表明,精氨酸甲基化使发夹折叠的熵更有利,折叠时的热容变化更负,焓驱动力适度降低。这与通过胍基部分表面积增加和正电荷更广泛离域而增强的堆积和疏水相互作用一致。此外,这些肽表现出显著的冷变性,这可以通过在热力学分析中纳入温度依赖性ΔC(p)的表达式来解释。