Magzoub M, Kilk K, Eriksson L E, Langel U, Gräslund A
Department of Biochemistry and Biophysics, Arrhenius Labratories, Stockholm University, Sweden.
Biochim Biophys Acta. 2001 May 2;1512(1):77-89. doi: 10.1016/s0005-2736(01)00304-2.
Certain short peptides, which are able to translocate across cell membranes with a low lytic activity, can be useful as carriers (vectors) for hydrophilic molecules. We have studied three such cell penetrating peptides: pAntp ('penetratin'), pIsl and transportan. pAntp and pIsl originate from the third helix of homeodomain proteins (Antennapedia and Isl-1, respectively). Transportan is a synthetic chimera (galanin and mastoparan). The peptides in the presence of various phospholipid vesicles (neutral and charged) and SDS micelles have been characterized by spectroscopic methods (fluorescence, EPR and CD). The dynamics of pAntp were monitored using an N-terminal spin label. In aqueous solution, the CD spectra of the three peptides show secondary structures dominated by random coil. With phospholipid vesicles, neutral as well as negatively charged, transportan gives up to 60% alpha-helix. pAntp and pIsl bind significantly only to negatively charged vesicles with an induction of around 60% beta-sheet-like secondary structure. With all three peptides, SDS micelles stabilize a high degree of alpha-helical structure. We conclude that the exact nature of any secondary structure induced by the membrane model systems is not directly correlated with the common transport property of these translocating peptides.
某些短肽能够以低裂解活性跨细胞膜转运,可作为亲水分子的载体(媒介物)。我们研究了三种这样的细胞穿透肽:pAntp(“穿膜肽”)、pIsl和运输蛋白。pAntp和pIsl分别源自同源结构域蛋白的第三个螺旋(分别为触角足蛋白和Isl-1)。运输蛋白是一种合成嵌合体(甘丙肽和马斯托帕兰)。通过光谱方法(荧光、电子顺磁共振和圆二色)对存在各种磷脂囊泡(中性和带电荷的)和十二烷基硫酸钠胶束时的这些肽进行了表征。使用N端自旋标记监测pAntp的动力学。在水溶液中,这三种肽的圆二色光谱显示以无规卷曲为主的二级结构。对于磷脂囊泡,无论是中性还是带负电荷的,运输蛋白都能形成高达60%的α-螺旋。pAntp和pIsl仅与带负电荷的囊泡有显著结合,并诱导形成约60%的β-折叠样二级结构。对于所有这三种肽,十二烷基硫酸钠胶束都能稳定高度的α-螺旋结构。我们得出结论,膜模型系统诱导的任何二级结构的确切性质与这些转运肽的共同转运特性没有直接关联。