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pH-dependence of interaction between melittin and bacteriorhodopsin

机译:蜂毒肽和细菌视紫红质相互作用的pH依赖性

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Melittin differentially slowed down the fast (M_(412f)) and the slow (M_(412s)) decay components of the photocycle intermediate M of trimetic bacteriorhodopsin in purple membrane while it accelerated the M_(412s) of Triton X-100-solubilized bacteriorhodopsin monomers. Raising the bulk pH could enhance the effect of melittin on the M_(412s) of bacteriorhodopsin in these two states. From pH 5.5 to 8.8, melittin slightly influenced the yield of intermediate M in purple membrane, whereas the yield of M_(412s) decreased and subsequently reversed with the addition of melittin. Moreover, the monomer ic bacteriorhodopsin bleached more readily in the presence of melittin and the higher pH made the bleaching effect of melittin more intensive as well. These results te-certify our former suggestions that there was electrostatic interaction between melittin and bacteriorhodopsin, and indicate that the biphasic M decay may not result from the well-known linear kinetic scheme (M->N->BR). At last the mechanisms underlying the interaction of melittin with purple membranes and bacteriorhodopsin monomers are analyzed.
机译:蜂毒肽有差别地减慢了紫色膜上三态细菌视紫红质的光周期中间体M的快速(M_(412f))和慢速(M_(412s))衰变成分,同时加速了Triton X-100溶解的细菌视紫红质的M_(412s)单体。在这两种状态下,提高总pH可以增强蜂毒肽对细菌视紫红质的M_(412s)的作用。从pH 5.5到8.8,蜂毒肽对紫色膜中中间体M的收率有轻微影响,而M_(412s)的收率下降,随后随着蜂毒素的添加而反转。而且,单体细菌视紫红质在蜂毒肽存在下更容易漂白,而较高的pH值也使蜂毒肽的漂白作用更加强烈。这些结果证明了我们先前的建议,即蜂毒肽和细菌视紫红质之间存在静电相互作用,并表明双相M衰减可能不是由众所周知的线性动力学方案(M-> N-> BR)引起的。最后,分析了蜂毒素与紫色膜和细菌视紫红质单体相互作用的潜在机理。

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