Corigliano-Murphy M A, Xun L A, Ponnamperuma C, Dalzoppo D, Fontana A, Kanmera T, Chaiken I M
Int J Pept Protein Res. 1985 Mar;25(3):225-31. doi: 10.1111/j.1399-3011.1985.tb02168.x.
In order to examine the effect of a defined enantiomeric sequence on protein structure, the all-D model ribonuclease S-peptide, H-Ala-Glu-Ala4-Lys-Phe-Ala-Arg-Ala-His-Met-Ala2-OH, has been synthesized by the solid phase method. The all-L peptide has been synthesized previously and shown to possess 36% of ribonuclease S activity when added to ribonuclease S-protein (Komoriya, A. & Chaiken, I.M. (1982) J. Biol. Chem 257, 2599-2604). The synthetic D-peptide was purified by gel filtration and semipreparative reverse phase HPLC. Amino acid composition of the synthetic peptide was in agreement with theory and gas chromatographic analysis showed that no significant racemization had occurred during synthesis. Circular dichroism (CD) studies of the D-peptide showed a peak of positive ellipticity in the 220-230 nm region, whereas a negative ellipticity peak for the L-peptide was observed. The effects of temperature and trifluoroethanol on the far-ultraviolet CD spectra of D- and L-peptides were similar but of opposite sign, confirming the expectation that the D-peptide has the propensity to form an alpha-helical structure which is enantiomeric with respect to that formed by the L-peptide. In the presence of S-protein, the L-peptide showed hydrolytic activity against the substrate cytidine-2':3'-monophosphate, whereas the D-peptide was inactive. Addition of the D-peptide to mixtures of L-peptide and S-protein did not lead to inhibition of enzymatic activity. These results indicate lack of binding of D-peptide to S-protein to produce either an active or inactive species.
为了研究特定对映体序列对蛋白质结构的影响,已通过固相法合成了全-D型核糖核酸酶S-肽,即H-Ala-Glu-Ala4-Lys-Phe-Ala-Arg-Ala-His-Met-Ala2-OH。全-L型肽先前已合成,并且当添加到核糖核酸酶S-蛋白中时显示具有36%的核糖核酸酶S活性(小森矢,A.和柴肯,I.M.(1982年)《生物化学杂志》257卷,2599 - 2604页)。合成的D-肽通过凝胶过滤和半制备反相高效液相色谱法进行纯化。合成肽的氨基酸组成与理论相符,气相色谱分析表明在合成过程中未发生明显的消旋化。D-肽的圆二色性(CD)研究显示在220 - 230纳米区域有一个正椭圆率峰,而观察到L-肽有一个负椭圆率峰。温度和三氟乙醇对D-肽和L-肽的远紫外CD光谱的影响相似但符号相反,这证实了D-肽倾向于形成与L-肽形成的α-螺旋结构对映的α-螺旋结构的预期。在S-蛋白存在的情况下,L-肽对底物胞苷-2':3'-单磷酸显示出水解活性,而D-肽无活性。将D-肽添加到L-肽和S-蛋白的混合物中不会导致酶活性受到抑制。这些结果表明D-肽与S-蛋白缺乏结合以产生活性或无活性物种。