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噬菌体P1质粒成瘾系统的Doc毒素和Phd解毒蛋白形成一个异源三聚体复合物。

The Doc toxin and Phd antidote proteins of the bacteriophage P1 plasmid addiction system form a heterotrimeric complex.

作者信息

Gazit E, Sauer R T

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

J Biol Chem. 1999 Jun 11;274(24):16813-8. doi: 10.1074/jbc.274.24.16813.

Abstract

The toxin (Doc) and antidote (Phd) proteins of the plasmid addiction system of bacteriophage P1 were purified as a complex. Cocrystals of the complex contained a 2:1 molar ratio of Phd:Doc as assayed by dye binding following SDS-polyacrylamide gel electrophoresis and as determined by amino acid analysis. Gel filtration and analytical ultracentrifugation revealed that the two addiction proteins interact in solution to form a P2D trimer composed of one Doc and two Phd molecules. These results support a model in which Phd inhibits the toxic activity of Doc by direct binding. Circular dichroism experiments showed that changes in secondary structure accompany formation of the heterotrimeric complex, raising the possibility that Phd may act by an allosteric mechanism. Studies of Phd and Doc molecules labeled with fluorescent energy donor and acceptor groups gave an equilibrium dissociation constant of about 0.8 microM(2) and a very short, sub second half-life of complex dissociation. As a consequence, low concentrations of free Doc toxin are likely to be present both transiently and in the steady state in cells containing the Phd antidote, making mechanisms of single-hit Doc toxicity improbable.

摘要

噬菌体P1质粒成瘾系统的毒素(Doc)和解毒剂(Phd)蛋白作为复合物被纯化。通过SDS-聚丙烯酰胺凝胶电泳后染料结合测定以及氨基酸分析确定,该复合物的共晶体中Phd与Doc的摩尔比为2:1。凝胶过滤和分析超速离心表明,这两种成瘾蛋白在溶液中相互作用形成由一个Doc和两个Phd分子组成的P2D三聚体。这些结果支持了一个模型,即Phd通过直接结合抑制Doc的毒性活性。圆二色性实验表明,二级结构的变化伴随着异源三聚体复合物的形成,这增加了Phd可能通过变构机制起作用的可能性。对用荧光能量供体和受体基团标记的Phd和Doc分子的研究得出平衡解离常数约为0.8 μM(2),复合物解离的半衰期非常短,不到一秒。因此,在含有Phd解毒剂的细胞中,低浓度的游离Doc毒素可能在瞬态和稳态中都存在,使得单次打击Doc毒性的机制不太可能。

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