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Structure and properties of chimeric small heat shock proteins containing yellow fluorescent protein attached to their C-terminal ends

机译:嵌合小热激蛋白的结构和性质,其黄色荧光蛋白附着在其C末端

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Recombinant chimeras of small heat shock proteins (sHsp) HspB1, HspB5, and HspB6 containing enhanced yellow fluorescent protein (EYFP) attached to their C-terminal ends were constructed and purified. Some properties of these chimeras were compared with the corresponding properties of the same chimeras containing EYFP attached to the N-terminal end of sHsp. The C-terminal fluorescent chimeras of HspB1 and HspB5 tend to aggregate and form a heterogeneous mixture of oligomers. The apparent molecular weight of the largest C-terminal chimeric oligomers was higher than that of the corresponding N-terminal chimeras or of the wild-type proteins; however, both homooligomers of N-terminal chimeras and homooligomers of C-terminal chimeras contained fewer subunits than the wild-type HspB1 or HspB5. Both N-terminal and C-terminal chimeras of HspB6 form small oligomers with an apparent molecular weight of 73–84?kDa. The C-terminal chimeras exchange their subunits with homologous wild-type proteins. Heterooligomers formed by the wild-type HspB1 (or HspB5) and the C-terminal chimeras of HspB6 differ in size and composition from heterooligomers formed by the corresponding wild-type proteins. As a rule, the N-terminal chimeras possess similar or slightly higher chaperone-like activity than the corresponding wild-type proteins, whereas the C-terminal chimeras always have a lower chaperone-like activity than the wild-type proteins. It is concluded that attachment of EYFP to either N-terminal or C-terminal ends of sHsp affects their oligomeric structure, their ability to form heterooligomers, and their chaperone-like activity. Therefore, the data obtained with fluorescent chimeras of sHsp expressed in the cell should be interpreted with caution.
机译:构建并纯化了小热激蛋白(sHsp)HspB1,HspB5和HspB6的重组嵌合体,在其C末端连接了增强的黄色荧光蛋白(EYFP)。将这些嵌合体的某些特性与包含连接到sHsp N末端的EYFP的相同嵌合体的相应特性进行了比较。 HspB1和HspB5的C末端荧光嵌合体趋于聚集并形成低聚物的异质混合物。最大的C端嵌合低聚物的表观分子量高于相应的N端嵌合体或野生型蛋白的表观分子量。然而,与野生型HspB1或HspB5相比,N端嵌合体的均聚物和C端嵌合体的均聚物都更少。 HspB6的N端和C端嵌合体均形成表观分子量为73-84?kDa的小寡聚物。 C端嵌合体与同源野生型蛋白交换其亚基。由野生型HspB1(或HspB5)和HspB6的C端嵌合体形成的异寡聚体的大小和组成与由相应的野生型蛋白质形成的杂聚体不同。通常,N-末端嵌合体具有比相应的野生型蛋白相似或稍高的伴侣样活性,而C-末端嵌合体总是比野生型蛋白具有更低的伴侣样活性。结论是,EYFP连接到sHsp的N末端或C末端会影响它们的寡聚结构,形成异源寡聚体的能力以及它们的分子伴侣样活性。因此,应谨慎解释在细胞中表达的sHsp荧光嵌合体获得的数据。

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