Riou S A, Hsu S L, Stidham H D
Polymer Science and Engineering Department, University of Massachusetts, Amherst, Massachusetts 01003, USA.
Biophys J. 1998 Nov;75(5):2451-60. doi: 10.1016/S0006-3495(98)77689-1.
As normally studied, in the solid state or in solution, poly(beta-benzyl-L-aspartate) (PBLA) differs from the other helical polyamino acids in that its alpha-helical conformation is most stable in the left-handed rather than in the right-handed form. The slightly lower energy per residue for the left-handed form in PBLA is easily perturbed, however. The helical screw sense can be inverted in a polar environment and, upon heating above 100 degrees C, a distorted left-handed helix or omega-helix is irreversibly formed. From external reflectance Fourier transform infrared measurements at the air-water interface, the conformation of PBLA in the monolayer state is directly established for the first time. The infrared frequencies of the amide bands suggest that right-handed alpha-helices are formed on the surface of water immediately after spreading the monolayers and independently of the polypeptide conformational distribution in the spreading solution. The right-handed helical form prevails throughout the slow compression of the Langmuir monolayers to collapsed films. The helical screw sense can be reversed by lowering the polarity of the aqueous phase. In addition, an alternate conformation similar to the omega-helix forms on addition of small amounts of isopropanol to the aqueous subphase, and appears to be an intermediate in the helix-helix transition.
如通常所研究的那样,在固态或溶液状态下,聚(β-苄基-L-天冬氨酸)(PBLA)与其他螺旋状聚氨基酸不同,其α-螺旋构象在左手形式而非右手形式中最稳定。然而,PBLA中左手形式每个残基稍低的能量很容易受到干扰。在极性环境中螺旋的旋向可以反转,并且在加热到100℃以上时,会不可逆地形成扭曲的左手螺旋或ω-螺旋。通过在空气-水界面进行外反射傅里叶变换红外测量,首次直接确定了PBLA在单分子层状态下的构象。酰胺带的红外频率表明,在铺展单分子层后,右手α-螺旋立即在水表面形成,且与铺展溶液中多肽的构象分布无关。在将朗缪尔单分子层缓慢压缩至塌陷膜的整个过程中,右手螺旋形式占主导。通过降低水相的极性可以反转螺旋的旋向。此外,在水相中加入少量异丙醇时会形成一种类似于ω-螺旋的交替构象,并且似乎是螺旋-螺旋转变的中间体。