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Amide hydrogen exchange determined by mass spectrometry: application to rabbit muscle aldolase.通过质谱法测定酰胺氢交换:应用于兔肌肉醛缩酶
Biochemistry. 1996 Jan 23;35(3):779-91. doi: 10.1021/bi952227q.
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A statistical mechanical model for hydrogen exchange in globular proteins.一种用于球状蛋白质中氢交换的统计力学模型。
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Amide proton exchange rates of oxidized and reduced Saccharomyces cerevisiae iso-1-cytochrome c.氧化型和还原型酿酒酵母同工酶-1-细胞色素c的酰胺质子交换率
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Primary structure effects on peptide group hydrogen exchange.肽基团氢交换的一级结构效应
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Hydrogen exchange in unligated and ligated staphylococcal nuclease.未结合和结合的葡萄球菌核酸酶中的氢交换
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Kinetic mechanism of cytochrome c folding: involvement of the heme and its ligands.细胞色素c折叠的动力学机制:血红素及其配体的作用
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Amide hydrogen exchange in a highly denatured state. Hen egg-white lysozyme in urea.高度变性状态下的酰胺氢交换。尿素中的鸡蛋清溶菌酶。
J Mol Biol. 1994 Apr 1;237(3):247-54. doi: 10.1006/jmbi.1994.1228.
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Subunit interface mutants of rabbit muscle aldolase form active dimers.兔肌肉醛缩酶的亚基界面突变体形成活性二聚体。
Protein Sci. 1994 Sep;3(9):1383-91. doi: 10.1002/pro.5560030904.
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通过酰胺氢交换和质谱法鉴定醛缩酶中的热诱导解折叠结构域。

Thermal-induced unfolding domains in aldolase identified by amide hydrogen exchange and mass spectrometry.

作者信息

Zhang Z, Smith D L

机构信息

Department of Chemistry, University of Nebraska-Lincoln 68588-0304, USA.

出版信息

Protein Sci. 1996 Jul;5(7):1282-9. doi: 10.1002/pro.5560050707.

DOI:10.1002/pro.5560050707
PMID:8819161
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2143457/
Abstract

Amide hydrogen exchange has been measured in short segments of intact rabbit muscle aldolase at temperatures of 14-50 degrees C by the protein fragmentation/mass spectrometry method (Zhang Z, Smith DL, 1993, Protein Sci 2:522-531). Deuterium levels in some segments did not change over the temperature range of the measurements, whereas deuterium levels in other segments increased rapidly with temperature. These results demonstrate that the equilibrium constant for local unfolding, Kunf, of some segments increases with temperature in the low temperature range (14-30 degrees C) of this study. Aldolase begins to lose activity at temperatures above 40 degrees C. In the 40-50 degrees C temperature range, Kunf is greater than 10(-4) in some regions and less than 10(-6) in other regions. This wide range of regional stability in the temperature range where aldolase begins to denature is interpreted in terms of cooperative unfolding/folding domains. Regions of highest stability were located along the hydrophobic subunit binding surface. It is proposed that hydrogen exchange might be used to identify unfolding domains in multidomain proteins whose thermodynamic properties have been determined by differential scanning calorimetry.

摘要

通过蛋白质片段化/质谱法(Zhang Z,Smith DL,1993,Protein Sci 2:522 - 531),在14 - 50摄氏度的温度下测量了完整兔肌肉醛缩酶短片段中的酰胺氢交换。在测量的温度范围内,一些片段中的氘水平没有变化,而其他片段中的氘水平随温度迅速增加。这些结果表明,在本研究的低温范围(14 - 30摄氏度)内,一些片段的局部解折叠平衡常数Kunf随温度升高。醛缩酶在温度高于40摄氏度时开始失去活性。在40 - 50摄氏度的温度范围内,某些区域的Kunf大于10(-4),而其他区域的Kunf小于10(-6)。醛缩酶开始变性的温度范围内这种广泛的区域稳定性差异,是根据协同解折叠/折叠结构域来解释的。稳定性最高的区域位于疏水亚基结合表面。有人提出,氢交换可用于识别多结构域蛋白质中的解折叠结构域,其热力学性质已通过差示扫描量热法测定。