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The substrate binding domain of DnaK facilitates slow protein refolding

机译:DnaK的底物结合域有助于缓慢的蛋白质复性

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摘要

We examined the effects of a fragment of the substrate binding domain of DnaK on protein refolding from chemically denatured states. The fragment DnaK384-638, containing a full-length substrate binding domain, tightly binds to the unfolded protein in solution. The effects of DnaK384-638 on the reactivation of β-galactosidase and luciferase were examined at low substrate concentration and low temperature, conditions in which the folding is significantly slow (several days) but the reactivation yield is higher than those in ordinary refolding conditions. In the presence of DnaK384-638, the maximum yield of active β-galactosidase was improved from 45% to 65% after a 48-h refolding reaction. Spectroscopic experiments showed that DnaK384-638 bound to partially structured monomers of β-galactosidase and consequently suppressed aggregation. DnaK384-638 accelerated the refolding of luciferase to attain equilibrium in 8 h. On the other hand, DnaK386-561, which has no affinity for the substrate, had no chaperone activity for the reactivation of these proteins. These results indicate that the substrate binding of DnaK384-638 facilitates slow protein refolding.
机译:我们检查了DnaK的底物结合域片段对蛋白质从化学变性状态复性的影响。包含全长底物结合结构域的片段DnaK384-638与溶液中的未折叠蛋白紧密结合。在低底物浓度和低温下检测了DnaK384-638对β-半乳糖苷酶和萤光素酶的再活化的影响,在这种情况下折叠非常缓慢(数天),但重新活化的产率高于普通再折叠条件。在DnaK384-638的存在下,经过48小时的重折叠反应,活性β-半乳糖苷酶的最大产率从45%提高到了65%。光谱实验表明,DnaK384-638与β-半乳糖苷酶的部分结构化单体结合,从而抑制了聚集。 DnaK384-638加速了荧光素酶的重折叠,在8小时内达到平衡。另一方面,对底物没有亲和力的DnaK386-561对这些蛋白质的再活化没有伴侣活性。这些结果表明,DnaK384-638的底物结合有助于缓慢的蛋白质复性。

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