首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >The membranotropic activity of cyclic acyldepsipeptides from bacterium Bacillus pumilus, associated with the marine sponge Ircinia sp.
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The membranotropic activity of cyclic acyldepsipeptides from bacterium Bacillus pumilus, associated with the marine sponge Ircinia sp.

机译:细菌pumilus环状酰基肽的膜活性与海洋海绵Ircinia sp。

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摘要

The isolate of Bacillus pumilus associated with the marine sponge Ircinia sp. produced the surfactin-like lipopeptides, cyclic acyldepsipeptides. The hemolytic activity of individual cyclic acyldepsipeptides, bacircines (BI) 2, 3, 4, 5 and 5A having different acyl side chain structures (anteiso-C_13, iso-C_14, normal-C_14, anteiso-C_15, and iso-C_15, respectively) was studied. The hemolytic power of bacircines depended on both the structure of the side chain (n -> iso -> anteiso-) and pH values (5.6 and 6.5 > 7.4). Hemolytic potency as a function of BI 5 concentration was given for pH 6.5; 7.4; 8.0; 9.0. pH dependent hemolysis induced by BI 5 was shown to be reversible. The membrane damaging potential of bacircine 5 (5 #mu#M) at pH 6.5 was characterized by a higher rate of hemolysis and by a shorter time between the introduction of BI 5 solution into the RBC samples and the onset of hemolysis. Under this condition, BI 5 decreased abnormally the dmicroviscosity of erythrocyte ghosts bilayer. The damaging potency of BI 5 decreased with an increase pH from 6.5 to 7.4 or its decrease from 6.5 to 4.9. It was shown that fatty acid bacircine fragment penetrated into the lipid bilayer to a depth of minimum 7 carbon atoms. Constants of dissociation of the Asp (pK 4.75) and Glu (pk 6.65) residue of bacircine in the lipid bilayer were obtained. These results showed that at pH 6.5 BI 5 possessed membranotropic activity in the monoionic form.
机译:与海洋海绵Ircinia sp。相关的短小芽孢杆菌分离株。产生了表面活性素样脂肽,环状酰基肽肽。具有不同酰基侧链结构(分别为异异C_13,异C_14,正C_14,正异C_15和异C_15)的单个环状酰基肽,巴环素(BI)2、3、4、5和5A的溶血活性)进行了研究。环丁环糊精的溶血能力取决于侧链的结构(n-> iso-> anteiso-)和pH值(5.6和6.5> 7.4)。在pH 6.5时,溶血力为BI 5浓度的函数。 7.4; 8.0; 9.0。由BI 5诱导的pH依赖性溶血被证明是可逆的。在pH 6.5时,bacircine 5(5#mu#M)的膜破坏潜能的特征是溶血速率更高,并且将BI 5溶液引入RBC样品与溶血开始之间的时间较短。在这种条件下,BI 5异常降低了红细胞鬼血双层的微粘度。随着pH从6.5增加至7.4或从6.5降低至4.9,BI 5的破坏力降低。结果表明,脂肪酸环丁环己酮片段渗透到脂质双层中的深度最小为7个碳原子。获得了脂双层中巴环丁素的Asp(pK 4.75)和Glu(pk 6.65)残基的解离常数。这些结果表明,在pH 6.5时,BI 5具有单离子形式的促膜活性。

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