Krone Mackenzie W, Albanese Katherine I, Leighton Gage O, He Cyndi Qixin, Lee Ga Young, Garcia-Borràs Marc, Guseman Alex J, Williams David C, Houk K N, Brustad Eric M, Waters Marcey L
University of North Carolina at Chapel Hill 131 South Road, Campus Box 3290 Chapel Hill NC 27599 USA
Department of Biochemistry and Biophysics, University of North Carolina at Chapel Hill 120 Mason Farm Rd, Campus Box 7260 Chapel Hill NC 27599 USA.
Chem Sci. 2020 Mar 4;11(13):3495-3500. doi: 10.1039/d0sc00227e.
Evolution has converged on cation-π interactions for recognition of quaternary alkyl ammonium groups such as trimethyllysine (Kme3). While computational modelling indicates that Trp provides the strongest cation-π interaction of the native aromatic amino acids, there is limited corroborative data from measurements within proteins. Herein we investigate a Tyr to Trp mutation in the binding pocket of the HP1 chromodomain, a reader protein that recognizes Kme3. Binding studies demonstrate that the Trp-mediated cation-π interaction is about -5 kcal mol stronger, and the Y24W crystal structure shows that the mutation is not perturbing. Quantum mechanical calculations indicate that greater enthalpic binding is predominantly due to increased cation-π interactions. NMR studies indicate that differences in the unbound state of the Y24W mutation lead to enthalpy-entropy compensation. These results provide direct experimental quantification of Trp Tyr in a cation-π interaction and afford insight into the conservation of aromatic cage residues in Kme3 reader domains.
进化已经趋同于通过阳离子-π相互作用来识别季铵烷基基团,如三甲基赖氨酸(Kme3)。虽然计算模型表明色氨酸在天然芳香族氨基酸中提供最强的阳离子-π相互作用,但来自蛋白质内部测量的佐证数据有限。在此,我们研究了HP1色域结合口袋中的酪氨酸到色氨酸突变,HP1色域是一种识别Kme3的读取蛋白。结合研究表明,色氨酸介导的阳离子-π相互作用大约强-5千卡/摩尔,Y24W晶体结构表明该突变没有造成干扰。量子力学计算表明,更大的焓结合主要是由于阳离子-π相互作用增加。核磁共振研究表明,Y24W突变的未结合状态差异导致焓-熵补偿。这些结果提供了阳离子-π相互作用中色氨酸与酪氨酸的直接实验量化,并深入了解了Kme3读取结构域中芳香笼状残基的保守性。