首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Nonuniform chain collapse during early stages of staphylococcal nuclease folding detected by fluorescence resonance energy transfer and ultrarapid mixing methods
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Nonuniform chain collapse during early stages of staphylococcal nuclease folding detected by fluorescence resonance energy transfer and ultrarapid mixing methods

机译:荧光共振能量转移和超快速混合法检测葡萄球菌核酸酶折叠早期的不均匀链塌陷

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摘要

The development of tertiary structure during folding of staphylococcal nuclease (SNase) was studied by time-resolved fluorescence resonance energy transfer measured using continuous- and stopped-flow techniques. Variants of this two-domain protein containing intradomain and interdomain fluorescence donor/acceptor pairs (Trp and Cys-linked fluorophore or quencher) were prepared to probe the intradomain and interdomain structural evolution accompanying SNase folding. The intra-domain donor/acceptor pairs are within the β-barrel domain (Trp27/Cys64 and Trp27/Cys97) and the interdomain pair is between the α-helical domain and the β-barrel domain (Trp140/Cys64). Time-resolved energy transfer efficiency accompanying folding and unfolding at different urea concentrations was measured over a time range from 30 μs to ∼10 s. Information on average donor/acceptor distances at different stages of the folding process was obtained by using a quantitative kinetic modeling approach. The average distance for the donor/acceptor pairs in the β-barrel domain decreases to nearly native values whereas that of the interdomain donor/acceptor pairs remains unchanged in the earliest intermediate (<500 μs of refolding). This indicates a rapid nonuniform collapse resulting in an ensemble of heterogeneous conformations in which the central region of the β-barrel domain is well developed while the C-terminal α-helical domain remains disordered. The distance between Trp140 and Cys64 decreases to native values on the 100-ms time scale, indicating that the α-helical domain docks onto the preformed β-barrel at a late stage of the folding. In addition, the unfolded state is found to be more compact under native conditions, suggesting that changes in solvent conditions may induce a nonspecific hydrophobic collapse.
机译:通过使用连续流和停止流技术测量的时间分辨荧光共振能量转移,研究了葡萄球菌核酸酶(SNase)折叠过程中三级结构的发展。制备了包含域内和域间荧光供体/受体对的这种两个域蛋白的变体(Trp和与Cys连接的荧光团或猝灭剂),以探测伴随SNase折叠的域内和域间结构进化。域内供体/受体对在β-桶结构域(Trp27 / Cys64和Trp27 / Cys97)内,而域间对在α-螺旋结构域和β-桶结构域(Trp140 / Cys64)之间。在30 µs至〜10 s的时间范围内,测量了在不同尿素浓度下伴随着折叠和展开的时间分辨的能量转移效率。通过使用定量动力学建模方法,可以获得折叠过程不同阶段的平均供体/受体距离信息。 β-桶结构域中供体/受体对的平均距离降低至接近天然值,而域间供体/受体对的平均距离在最早的中间阶段保持不变(重新折叠<500μs)。这表明快速不均匀的塌陷导致异质构象的集合,其中β-桶形结构域的中心区域充分发达,而C-末端α-螺旋结构域仍然无序。 Trp140和Cys64之间的距离在100毫秒的时间尺度上减小到原始值,表明α-螺旋域在折叠的后期停靠在预先形成的β-桶上。另外,发现在自然条件下未折叠状态更为紧密,这表明溶剂条件的变化可能会引起非特异性疏水性塌陷。

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