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Two partially unfolded states of Torpedo californica acetylcholinesterase.

机译:鱼鳞白斑乙酰胆碱酯酶的两个部分展开状态。

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摘要

Chemical modification with sulfhydryl reagents of the single, nonconserved cysteine residue Cys231 in each subunit of a disulfide-linked dimer of Torpedo californica acetylcholinesterase produces a partially unfolded inactive state. Another partially unfolded state can be obtained by exposure of the enzyme to 1-2 M guanidine hydrochloride. Both these states display several important features of a molten globule, but differ in their spectroscopic (CD, intrinsic fluorescence) and hydrodynamic (Stokes radii) characteristics. With reversal of chemical modification of the former state or removal of denaturant from the latter, both states retain their physiochemical characteristics. Thus, acetylcholinesterase can exist in two molten globule states, both of which are long-lived under physiologic conditions without aggregating, and without either intraconverting or reverting to the native state. Both states undergo spontaneous intramolecular thioldisulfide exchange, implying that they are flexible. As revealed by differential scanning calorimetry, the state produced by chemical modification lacks any heat capacity peak, presumably due to aggregation during scanning, whereas the state produced by guanidine hydrochloride unfolds as a single cooperative unit, thermal transition being completely reversible. Sucrose gradient centrifugation reveals that reduction of the interchain disulfide of the native acetylcholinesterase dimer converts it to monomers, whereas, after such reduction, the two subunits remain completely associated in the partially unfolded state generated by guanidine hydrochloride, and partially associated in that produced by chemical modification. It is suggested that a novel hydrophobic core, generated across the subunit interfaces, is responsible for this noncovalent association. Transition from the unfolded state generated by chemical modification to that produced by guanidine hydrochloride is observed only in the presence of the denaturant, yielding, on extrapolation to zero guanidine hydrochloride, a high free energy barrier (ca. 23.8 kcal/mol) separating these two flexible, partially unfolded states.
机译:用Torpedo californica乙酰胆碱酯酶的二硫键连接的二聚体的每个亚单位中的单个非保守半胱氨酸残基Cys231的巯基试剂进行化学修饰,会产生部分未折叠的非活性状态。将酶暴露于1-2 M盐酸胍中可获得另一种未折叠状态。这两种状态均显示出熔融小球的几个重要特征,但在光谱(CD,固有荧光)和流体动力学(斯托克斯半径)特性方面有所不同。通过逆转前者状态的化学修饰或从后者中去除变性剂,这两种状态都保留了其理化特性。因此,乙酰胆碱酯酶可以以两种熔融的小球状态存在,这两种状态在生理条件下都是长寿命的,不会聚集,也不会发生内部转化或回复到天然状态。两种状态都进行自发的分子内硫代二硫键交换,这表明它们是灵活的。如差示扫描量热法所揭示的,化学修饰产生的状态没有任何热容峰,可能是由于扫描过程中的聚集所致,而盐酸胍产生的状态作为单个协作单元展开,热转变是完全可逆的。蔗糖梯度离心显示,天然乙酰胆碱酯酶二聚体的链间二硫键还原可将其转化为单体,而还原后,两个亚基在盐酸胍产生的部分展开状态下保持完全缔合,而在化学过程中则部分缔合修改。建议通过亚单位界面生成的新型疏水核负责这种非共价结合。仅在变性剂存在下才能观察到从化学修饰产生的未折叠状态过渡到盐酸胍所产生的状态,在外推至盐酸胍为零时会产生高自由能垒(约23.8 kcal / mol),将这两者分开灵活的部分展开状态。

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