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Cholera Toxin B Subunits Assemble into Pentamers - Proposition of a Fly-Casting Mechanism

机译:霍乱毒素B亚基组装成五聚体-飞铸造机制的主张

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摘要

The cholera toxin B pentamer (CtxB5), which belongs to the AB5 toxin family, is used as a model study for protein assembly. The effect of the pH on the reassembly of the toxin was investigated using immunochemical, electrophoretic and spectroscopic methods. Three pH-dependent steps were identified during the toxin reassembly: (i) acquisition of a fully assembly-competent fold by the CtxB monomer, (ii) association of CtxB monomer into oligomers, (iii) acquisition of the native fold by the CtxB pentamer. The results show that CtxB5 and the related heat labile enterotoxin LTB5 have distinct mechanisms of assembly despite sharing high sequence identity (84%) and almost identical atomic structures. The difference can be pinpointed to four histidines which are spread along the protein sequence and may act together. Thus, most of the toxin B amino acids appear negligible for the assembly, raising the possibility that assembly is driven by a small network of amino acids instead of involving all of them.
机译:属于AB5毒素家族的霍乱毒素B五聚体(CtxB5)被用作蛋白质组装的模型研究。使用免疫化学,电泳和光谱方法研究了pH对毒素重组的影响。在毒素重组过程中,确定了三个pH依赖性步骤:(i)CtxB单体获得完全具有装配能力的折叠,(ii)CtxB单体缔合为低聚物,(iii)CtxB五聚体获得天然折叠。结果表明,尽管CtxB5和相关的热不稳定肠毒素LTB5具有相同的序列同一性(84%)和几乎相同的原子结构,但它们具有不同的组装机理。可以将差异精确定位到四个沿着蛋白质序列分布并且可以一起起作用的组氨酸。因此,大多数毒素B氨基酸对于组装来说显得微不足道,从而增加了组装是由小的氨基酸网络而不是全部氨基酸驱动的可能性。

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