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首页> 外文期刊>Journal of Molecular Biology >Action of the chaperonin GroEL/ES on a non-native substrate observed with single-molecule FRET.
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Action of the chaperonin GroEL/ES on a non-native substrate observed with single-molecule FRET.

机译:伴侣分子GroEL / ES在单分子FRET上观察到的非天然底物上的作用。

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摘要

The double ring-shaped chaperonin GroEL binds a wide range of non-native polypeptides within its central cavity and, together with its cofactor GroES, assists their folding in an ATP-dependent manner. The conformational cycle of GroEL/ES has been studied extensively but little is known about how the environment in the central cavity affects substrate conformation. Here, we use the von Hippel-Lindau tumor suppressor protein VHL as a model substrate for studying the action of the GroEL/ES system on a bound polypeptide. Fluorescent labeling of pairs of sites on VHL for fluorescence (Forster) resonant energy transfer (FRET) allows VHL to be used to explore how GroEL binding and GroEL/ESucleotide binding affect the substrate conformation. On average, upon binding to GroEL, all pairs of labeling sites experience compaction relative to the unfolded protein while single-molecule FRET distributions show significant heterogeneity. Upon addition of GroES and ATP to close the GroEL cavity, on average further FRET increases occur between the two hydrophobic regions of VHL, accompanied by FRET decreases between the N- and C-termini. This suggests that ATP- and GroES-induced confinement within the GroEL cavity remodels bound polypeptides by causing expansion (or racking) of some regions and compaction of others, most notably, the hydrophobic core. However, single-molecule observations of the specific FRET changes for individual proteins at the moment of ATP/GroES addition reveal that a large fraction of the population shows the opposite behavior; that is, FRET decreases between the hydrophobic regions and FRET increases for the N- and C-termini. Our time-resolved single-molecule analysis reveals the underlying heterogeneity of the action of GroES/EL on a bound polypeptide substrate, which might arise from the random nature of the specific binding to the various identical subunits of GroEL, and might help explain why multiple rounds of binding and hydrolysis are required for some chaperonin substrates.
机译:双环伴侣蛋白GroEL在其中心腔内结合了多种非天然多肽,并与它的辅因子GroES一起以ATP依赖性方式帮助它们折叠。 GroEL / ES的构象循环已被广泛研究,但对中央腔中的环境如何影响底物构象知之甚少。在这里,我们使用von Hippel-Lindau抑癌蛋白VHL作为模型底物,用于研究GroEL / ES系统对结合多肽的作用。 VHL上用于荧光(Forster)共振能量转移(FRET)的位点对的荧光标记使VHL可用于探索GroEL结合和GroEL / ES /核苷酸结合如何影响底物构象。平均而言,与GroEL结合后,相对于未折叠的蛋白质,所有标记位点对都经历压缩,而单分子FRET分布显示出显着的异质性。加入GroES和ATP封闭GroEL腔后,平均而言,在VHL的两个疏水区域之间,FRET进一步增加,同时在N和C末端之间FRET降低。这表明,GroEL腔内的ATP和GroES诱导的局限性通过引起某些区域的扩展(或折叠)并压缩其他区域(最明显的是疏水核心)而重塑了结合的多肽。然而,在添加ATP / GroES时对单个蛋白质的特定FRET变化的单分子观察表明,很大一部分人口表现出相反的行为。也就是说,FRET在疏水区域之间减少,而FRET在N和C末端增加。我们的时间分辨单分子分析揭示了GroES / EL作用于结合的多肽底物上的潜在异质性,这可能源于与GroEL的各个相同亚基特异性结合的随机性质,并且可能有助于解释为什么多重一些伴侣蛋白底物需要几轮结合和水解。

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