Hsu Y R, Narhi L O, Spahr C, Langley K E, Lu H S
Amgen Inc., Amgen Center, Thousand Oaks, California 91320, USA.
Protein Sci. 1996 Jun;5(6):1165-73. doi: 10.1002/pro.5560050619.
The effect of oxidation of the methionine residues of Escherichia coli-derived recombinant human stem cell factor (huSCF) to methionine sulfoxide on the structure and activity of SCF was examined. Oxidation was performed using hydrogen peroxide under acidic conditions (pH 5.0). The kinetics of oxidation of the individual methionine residues was determined by quantitation of oxidized and unoxidized methionine-containing peptides, using RP-HPLC of Asp-N endoproteinase digests. The initial oxidation rates for Met159, Met-1, Met27, Met36, and Met48 were 0.11 min-1, 0.098 min-1, 0.033 min-1, 0.0063 min-1, and 0.00035 min-1, respectively, when SCF was incubated in 0.5% H2O2 at room temperature. Although oxidation of these methionines does not affect the secondary structure of SCF, the oxidation of Met36 and Met48 affects the local structure as indicated by CD and fluorescence spectroscopy. The 295-nm Trp peak in the near-UV CD is decreased upon oxidation of Met36, and lost completely following the oxidation of Met48, indicating that the Trp44 environment is becoming significantly less rigid than it is in native SCF. Consistent with this result, the fluorescence spectra revealed that Trp44 becomes more solvent exposed as the methionines are oxidized, with the hydrophobicity of the Trp44 environment decreasing significantly. The oxidations of Met36 and Met48 decrease biological activity by 40% and 60%, respectively, while increasing the dissociation rate constant of SCF dimer by two- and threefold. These results imply that the oxidation of Met36 and Met48 affects SCF dimerization and tertiary structure, and decreases biological activity.
研究了源自大肠杆菌的重组人干细胞因子(huSCF)的甲硫氨酸残基氧化为甲硫氨酸亚砜对SCF结构和活性的影响。氧化反应在酸性条件(pH 5.0)下用过氧化氢进行。通过对含甲硫氨酸的氧化和未氧化肽段进行定量,利用天冬氨酸蛋白酶N端消化产物的反相高效液相色谱法(RP-HPLC)测定各个甲硫氨酸残基的氧化动力学。当SCF在室温下于0.5%过氧化氢中孵育时,Met159、Met-1、Met27、Met36和Met48的初始氧化速率分别为0.11 min-1、0.098 min-1、0.033 min-1、0.0063 min-1和0.00035 min-1。尽管这些甲硫氨酸的氧化不影响SCF的二级结构,但如圆二色光谱(CD)和荧光光谱所示,Met36和Met48的氧化影响局部结构。Met36氧化后近紫外CD光谱中295 nm处的色氨酸峰降低,Met48氧化后则完全消失,表明色氨酸44所处环境的刚性比天然SCF中的显著降低。与此结果一致,荧光光谱显示随着甲硫氨酸氧化,色氨酸44更多地暴露于溶剂中,色氨酸44所处环境的疏水性显著降低。Met36和Met48的氧化分别使生物活性降低40%和60%,同时使SCF二聚体的解离速率常数增加两倍和三倍。这些结果表明,Met36和Met48的氧化影响SCF的二聚化和三级结构,并降低生物活性。