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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Probing the interaction mechanisms between transmembrane peptides and the chaperonin GroEL with fluorescence anisotropy
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Probing the interaction mechanisms between transmembrane peptides and the chaperonin GroEL with fluorescence anisotropy

机译:用荧光各向异性探测跨膜肽与伴侣素腹股沟的相互作用机制

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AbstractProper translocation, membrane insertion and folding are crucial biophysical steps in the biogenesis of functional transmembrane peptides/proteins (TMPs). ATP-dependent chaperonins are able to regulate each of these processes, but the underlying mechanisms remain unclear. In this work, interaction between the bacterial chaperonin GroEL and a synthetic fluorescent transmembrane peptide was investigated by fluorescence anisotropy. Binding of the peptide with GroEL resulted in increased fluorescence anisotropy and intensity. The dissociation constant and binding stoichiometry, as assessed by titration of the peptide with GroEL, were estimated to be 0.6±0.2μM and 2.96±0.35, respectively. Complementary study with the single-ring version of GroEL confirmed the high-affinity peptide binding, and indicates that the two GroEL rings may function alternatively in binding the peptides. The co-chaperonin GroES was found to be effective at releasing the peptides initially bound to GroEL with the help of ATP. Moreover, our observation with the single-ring GroEL mutant demonstrated that during the encapsulation of GroEL by GroES, the bound peptides may either be confined in the cage thus formed, or escape outside. Competitive binding experiments indicated that the peptides studied interact with GroEL through the paired helices H and I on its apical domain. Our spectroscopic studies revealed some basic mechanisms of interaction between transmembrane peptides and GroEL, which would be instrumental for deciphering the chaperonin-mediated TMP biogenesis.展开▼
机译:<![cdata [ 抽象 适当的易位,膜插入和折叠是功能性跨膜肽/蛋白质(TMPS)生物发生的关键生物物理步骤。 ATP依赖性伴侣素能够调节这些过程中的每一个,但下面的机制仍然不清楚。在这项工作中,通过荧光各向异性研究了细菌伴侣素腹股沟腹腹腹股沟腹股沟腹腹腹股沟和合成荧光膜肽。肽与腹股沟的结合导致荧光各向异性和强度增加。通过用腹股沟滴定肽评估的解离常数和结合化学计量分别估计为0.6±0.2μm和2.96±0.35。用单环形式的腹股沟互补研究证实了高亲和力肽结合,并表明两个腹圈环可以在结合肽的结合中起作用。发现共伴侣素蛋白胶虫在ATP的帮助下释放最初结合到腹股沟的肽。此外,我们与单环腹股沟突变体的观察证明,在通过包装的腹股沟封装期间,结合的肽可以被限制在如此形成的笼中,或者逸出。竞争结合实验表明,通过配对的螺旋H和I在其顶端结构域中研究肽与腹股沟相互作用。我们的光谱研究揭示了跨膜肽和腹股沟之间的相互作用的一些基本机制,这将是解密伴侣蛋白介导的TMP生物发生的乐器。

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