Blondelle S E, Simpkins L R, Pérez-Payá E, Houghten R A
Torrey Pines Institute for Molecular Studies, San Diego, CA 92121.
Biochim Biophys Acta. 1993 Oct 6;1202(2):331-6. doi: 10.1016/0167-4838(93)90024-l.
Earlier studies of melittin have shown that the Trp residue at position 19 is significantly involved in its hemolytic activity. Tryptophan residues have also been reported to play a specific and important role in a number of other biological interactions. In the present study, we investigated what effect the introduction of a second Trp residue would have on melittin's hemolytic activity. This was accomplished through the synthesis and analysis of a complete set of 25 single-position, synthetic Trp substitution analogs. Significant increases in activity were observed upon substituting Trp at a single residue at either extreme of melittin's two alpha-helices, or in its 'hinge' region. Decreases in activity were found upon replacing any of melittin's Leu residues with Trp. The changes in activity of all of the analogs relative to melittin were found to be correlated to their behavior during RP-HPLC, as was their variation in percent helicity in the presence of liposomes.
早期对蜂毒肽的研究表明,19位的色氨酸残基对其溶血活性有显著影响。据报道,色氨酸残基在许多其他生物相互作用中也发挥着特定且重要的作用。在本研究中,我们探究了引入第二个色氨酸残基会对蜂毒肽的溶血活性产生何种影响。这是通过合成和分析一套完整的25个单位点、合成的色氨酸取代类似物来实现的。当在蜂毒肽的两个α螺旋的任一极端的单个残基处或其“铰链”区域用色氨酸取代时,观察到活性显著增加。当用色氨酸取代蜂毒肽的任何亮氨酸残基时,发现活性降低。发现所有类似物相对于蜂毒肽的活性变化与其在反相高效液相色谱(RP-HPLC)中的行为相关,在脂质体存在下其螺旋度百分比的变化也是如此。