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Electrospray ionization mass spectra of acyl carrier protein are insensitive to its solution phase conformation

机译:酰基载体蛋白的电喷雾电离质谱对其溶液相构象不敏感

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摘要

Electrospray ionization mass spectrometry (ESI-MS) can be used to monitor conformational changes of proteins in solution based on the charge state distribution (CSD) of the corresponding gas-phase ions, although relatively few studies of acidic proteins have been reported. Here, we have compared the CSD and solution structure of recombinant Vibrio harveyi acyl carrier protein (rACP), a small acidic protein whose secondary and tertiary structure can be manipulated by pH, fatty acylation, and site-directed mutagenesis. Circular dichroism and intrinsic fluorescence demonstrated that apo-rACP adopts a folded helical conformation in aqueous solution below pH 6 or in 50% acetonitrile/0.1% formic acid, but is unfolded at neutral and basic pH values. A rACP mutant, in which seven conserved acidic residues were replaced with their corresponding neutral amides, was folded over the entire pH range of 5 to 9. However, under the same solvent conditions, both wild type and mutant ACPs exhibited similar CSDs (6(+)-9(+) species) at all pH values. Covalent attachment of myristic acid to the phosphopantetheine prosthetic group of rACP, which is known to stabilize a folded conformation in solution, also had little influence on its CSD in either positive or negative ion modes. Overall, our results are consistent with ACP as a "natively unfolded" protein in a dynamic conformational equilibrium, which allows access to (de)protonation events during the electrospray process.
机译:电喷雾电离质谱法(ESI-MS)可用于根据相应气相离子的电荷状态分布(CSD)监测溶液中蛋白质的构象变化,尽管有关酸性蛋白质的研究报道很少。在这里,我们比较了重组哈维氏弧菌酰基载体蛋白(rACP)的CSD和溶液结构,重组蛋白是一种小的酸性蛋白,其二级和三级结构可以通过pH,脂肪酰化和定点诱变来控制。圆二色性和固有荧光表明,apo-rACP在低于pH 6的水溶液中或在50%乙腈/0.1%甲酸中呈折叠螺旋构象,但在中性和碱性pH值下呈折叠状。一个rACP突变体,其中七个保守的酸性残基被其相应的中性酰胺取代,在5至9的整个pH范围内折叠。但是,在相同的溶剂条件下,野生型和突变型ACP均表现出相似的CSD(6( +)-9(+)物种)在所有pH值下。肉豆蔻酸与rACP的磷酸泛酸辅酶基团的共价结合(已知可稳定溶液中的折叠构象)在正离子或负离子模式下对CSD的影响也很小。总的来说,我们的结果与ACP在动态构象平衡中作为“天然未折叠”的蛋白质相一致,这使得在电喷雾过程中可以进行(去质子化)事件。

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