Pascal S M, Yamazaki T, Singer A U, Kay L E, Forman-Kay J D
Biochemistry Research Division, Hospital for Sick Children, Toronto, Ontario, Canada.
Biochemistry. 1995 Sep 12;34(36):11353-62. doi: 10.1021/bi00036a008.
Arginine side chains are often involved in protein--protein and protein--nucleic acid interactions. Due to a number of factors, resonance assignment and detection of NOEs involving the arginine side chains via standard NMR techniques can be difficult. We present here an approach to characterization of the interaction between a phosphopeptide (pY1021) and four arginine residues that line the phosphotyrosine-binding pocket of the C-terminal SH2 domain of phospholipase C-gamma 1 (PLCC SH2). Previously published [Pascal, S. M., et al. (1994) Cell 77, 461] NOE data provide a partial description of this interaction, including contacts between the aliphatic region of Arg 59 and the phosphotyrosine (pTyr) aromatic ring. Further characterization has now been accomplished by using 15N and 13C NMR relaxation studies of arginine N episilon and C zeta spins, respectively, and proton exchange rates of arginine H episilon nuclei. Differences between the chemical shifts of the arginine guanidino groups of the free SH2 domain in imidazole and phosphate buffers or in complex with pY1021 have provided insight into specific interactions with the phosphate and the aromatic ring of the pTyr. The resulting data are consistent with the most stable hydrogen bonds to phosphate donated by the Arg 39 epsilon-NH and the two Arg 37 eta-NH2 groups and with pTyr aromatic ring interactions involving the Arg 39 and possibly the Arg 18 guanidino groups.
精氨酸侧链常常参与蛋白质-蛋白质以及蛋白质-核酸的相互作用。由于多种因素,通过标准核磁共振技术对涉及精氨酸侧链的核磁共振信号归属以及核Overhauser效应(NOE)的检测可能会很困难。我们在此展示一种方法,用于表征磷脂酶C-γ1(PLCγ1)C端Src同源2结构域(PLCC SH2)的磷酸酪氨酸结合口袋内衬的四个精氨酸残基与一个磷酸肽(pY1021)之间的相互作用。先前发表的[帕斯卡,S.M.等人(1994年)《细胞》77卷,461页]NOE数据对这种相互作用进行了部分描述,包括精氨酸59的脂肪族区域与磷酸酪氨酸(pTyr)芳香环之间的接触。现在,通过分别对精氨酸Nε和Cζ自旋进行15N和13C核磁共振弛豫研究以及精氨酸Hε核的质子交换速率,进一步完成了表征。游离SH2结构域在咪唑和磷酸盐缓冲液中或与pYll形成复合物时,精氨酸胍基化学位移的差异为了解与磷酸盐以及pTyr芳香环的特定相互作用提供了线索。所得数据与由精氨酸39的ε-NH和两个精氨酸37的η-NH2基团向磷酸盐提供的最稳定氢键以及涉及精氨酸39可能还有精氨酸18胍基的pTyr芳香环相互作用一致。