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Single-Molecule Studies of Intrinsically Disordered Proteins Using Solid-State Nanopores

机译:使用固态纳米孔对固有紊乱蛋白的单分子研究

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Partially or fully disordered proteins are instrumental for signal-transduction pathways; however, many mechanistic aspects of these proteins are not well-understood. For example, the number and nature of intermediate states along the binding pathway is still a topic of intense debate. To shed light on the conformational heterogeneity of disordered protein domains and their complexes, we performed single-molecule experiments by translocating disordered proteins through a nanopore embedded within a thin dielectric membrane. This platform allows for single-molecule statistics to be generated without the need of fluorescent labels or other modification groups. These studies were performed on two different intrinsically disordered protein domains, a binding domain from activator of thyroid hormone and retinoid receptors (ACTR) and the nuclear coactivator binding domain of CREB-binding protein (NCBD), along with their bimolecular complex. Our results demonstrate that both ACTR and NCBD populate distinct conformations upon translocation through the nanopore. The folded complex of the two disordered domains, on the other hand, translocated as one conformation. Somewhat surprisingly, we found that NCBD undergoes a charge reversal under high salt concentrations. This was verified by both translocation statistics as well as by measuring the ζ-potential. Electrostatic interactions have been previously suggested to play a key role in the association of intrinsically disordered proteins, and the observed behavior adds further complexity to their binding reactions.
机译:部分或完全无序的蛋白质有助于信号转导途径。然而,这些蛋白质的许多机制方面尚不为人所理解。例如,沿着结合途径的中间状态的数量和性质仍然是激烈争论的话题。为了阐明无序蛋白结构域及其复合物的构象异质性,我们进行了单分子实验,方法是将无序蛋白通过嵌入在薄介电膜内的纳米孔进行移位。该平台无需荧光标记或其他修饰基团即可生成单分子统计数据。这些研究是在两个不同的内在无序的蛋白结构域上进行的,它们是甲状腺激素和类维生素A受体激活剂的结合域(ACTR)和CREB结合蛋白的核共激活剂结合域(NCBD),以及它们的双分子复合物。我们的结果表明,ACTR和NCBD都在通过纳米孔易位时构成不同的构象。另一方面,两个无序域的折叠复合体作为一个构象易位。出乎意料的是,我们发现NCBD在高盐浓度下会发生电荷逆转。这通过移位统计和测量ζ电位得到了验证。先前已经提出静电相互作用在固有紊乱的蛋白质的缔合中起关键作用,并且观察到的行为为其结合反应增加了进一步的复杂性。

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