Bamberg E, Alpes H, Apell H J, Bradley R, Härter B, Quelle M J, Urry D W
J Membr Biol. 1979 Nov 30;50(3-4):257-70. doi: 10.1007/BF01868892.
Different succinyl derivatives of Gramicidin A were synthesized and their activity was investigated with different methods on lipid bilayer membranes. The succinyl derivatives of Gramicidin A can be classified as three different types, the O-succinyl derivative, the N-succinyl derivative and the N-O-succinyl derivative of Gramicidin A. An O-pyromellityl-N-succinyl gramicidin was synthesized which can be attributed to the latter class. It was found that O-succinyl gramicidin behaves like the unmodified Gramicidin A despite a charge effect on single-channel conductance, arising from the negative charge of the succinic residue at the mouth of the channel. The activity of N-succinyl and N-O-succinyl gramacidin and of O-pyromellityl-N-succinyl-gramicidin depends strongly on the pH of the electrolyte solution. It is demonstrated that at low pH (less than or equal to 5) the N-succinyl derivatives show high activity, whereas at high pH (greater than or equal to 7) the activity is sharply reduced or disappears totally. From these experiments it can be concluded that, for the formation of a dimeric gramicidin channel, the hydrogen of the formyl group can be replaced by a protonated carboxylic group of a succinic residue. Further results, obtained by measurement of the single-channel conductance and of the reaction rate constants for the channel formation, are discussed in terms of the structural basis of the single stranded model for the gramicidin channel. On this basis the double stranded helix can be excluded and an interesting head-to-head single stranded beta(pi L.D.) helical channel is described which contains carboxyl groups at the head-to-head junction.
合成了短杆菌肽A的不同琥珀酰衍生物,并采用不同方法研究了它们在脂质双分子层膜上的活性。短杆菌肽A的琥珀酰衍生物可分为三种不同类型,即短杆菌肽A的O-琥珀酰衍生物、N-琥珀酰衍生物和N-O-琥珀酰衍生物。合成了一种邻苯二甲酰-N-琥珀酰短杆菌肽,它属于后一类。研究发现,尽管通道口处琥珀酸残基的负电荷对单通道电导有电荷效应,但O-琥珀酰短杆菌肽的行为与未修饰的短杆菌肽A相似。N-琥珀酰和N-O-琥珀酰短杆菌肽以及邻苯二甲酰-N-琥珀酰短杆菌肽的活性强烈依赖于电解质溶液的pH值。结果表明,在低pH值(小于或等于5)时,N-琥珀酰衍生物表现出高活性,而在高pH值(大于或等于7)时,活性急剧降低或完全消失。从这些实验可以得出结论,对于形成二聚体短杆菌肽通道,甲酰基的氢可以被琥珀酸残基的质子化羧基取代。通过测量单通道电导和通道形成的反应速率常数获得的进一步结果,根据短杆菌肽通道单链模型的结构基础进行了讨论。在此基础上,可以排除双链螺旋,并描述了一种有趣的头对头单链β(πL.D.)螺旋通道,其在头对头连接处含有羧基。