Gisin B F, Kobayashi S, Hall J E
Proc Natl Acad Sci U S A. 1977 Jan;74(1):115-9. doi: 10.1073/pnas.74.1.115.
This paper describes the chemical synthesis of a compound with voltage-gating characteristics similar to those observed in nerve membranes. For alamethicin (ALA), a natural antibiotic that induces such properties in lipid bilayer membranes, there are two proposed structures, one a cyclic and the other an open chain peptide. The open chain sequence (ALA-o) proposed by Martin and Williams [(1976) Biochem. J. 153, 181-190] was synthesized by stepwise solid-phase condensation of four fragments prepared by solid-phase synthesis. The product, purified to homogeneity, was not identical with the main component of natural ALA. Nevertheless, in lipid bilayer membranes the exponential dependence of conductance on voltage and the dependence of conductance on a high power of the peptide concentration were qualitatively similar for ALA-o and for natural ALA. Like ALA, ALA-o showed the characteristics of a channel-former, although the single-channel conductances were less well defined for the synthetic compound. This work establishes that a cyclic structure is not a necessary condition for a peptide to induce voltage-dependent conductances in membranes and that ALA-o possesses all the structural elements required for such an activity.
本文描述了一种化合物的化学合成,该化合物具有与在神经膜中观察到的类似的电压门控特性。对于在脂质双层膜中诱导此类特性的天然抗生素短杆菌肽(ALA),存在两种提出的结构,一种是环状的,另一种是开链肽。Martin和Williams [(1976年)《生物化学杂志》153卷,181 - 190页]提出的开链序列(ALA - o)是通过对固相合成制备的四个片段进行逐步固相缩合而合成的。纯化至同质的产物与天然ALA的主要成分并不相同。然而,在脂质双层膜中,ALA - o和天然ALA的电导对电压的指数依赖性以及电导对肽浓度高次幂的依赖性在定性上是相似的。与ALA一样,ALA - o表现出通道形成剂的特性,尽管合成化合物的单通道电导定义不太明确。这项工作表明,环状结构不是肽在膜中诱导电压依赖性电导的必要条件,并且ALA - o具有这种活性所需的所有结构元件。