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高能多电荷蛋白质轰击表面时的缺陷形成:对气相电喷雾离子构象的影响。

Defect formation on surfaces bombarded by energetic multiply charged proteins: Implications for the conformation of gas-phase electrosprayed ions.

机构信息

Division of Ion Physics, Department of Radiation Sciences, Uppsala University, Box 535, 751 21, Uppsala, Sweden.

出版信息

J Am Soc Mass Spectrom. 1996 Apr;7(4):329-41. doi: 10.1016/1044-0305(95)00702-4.

Abstract

Indirect information on the conformation of highly charged molecular ions may be obtained by monitoring their collisional cross sections and the course of simple gas-phase reactions such as hydrogen-deuterium exchange. In this work, another indirect but more visually oriented approach is explored: electrosprayed protein ions are accelerated toward a highly oriented pyrolytic graphite surface and the resulting single-ion defects are imaged by scanning force and tunneling microscopy. All protein impacts generated shallow hillocks: the shapes depended on the identity and charge state of the incident protein. Lysozyme and myoglobin, both compact, globular proteins in the native state, produced compact, almost circular hillocks. However, hillocks generated by myoglobin that had been denatured in the solution phase were elongated, and the elongation was positively correlated with the charge state of the ion. It appears that structural information about gas-phase multiply charged proteins can be derived from imprints generated by energetic protein impacts on surfaces.

摘要

通过监测高度荷电分子离子的碰撞截面和简单的气相反应(如氢氘交换)的过程,可以获得关于其构象的间接信息。在这项工作中,我们探索了另一种间接但更直观的方法:将喷射出的蛋白质离子加速朝向高度取向的热解石墨表面,然后通过扫描力和隧道显微镜对产生的单离子缺陷进行成像。所有蛋白质离子的撞击都会产生浅的隆起:形状取决于入射蛋白质的性质和电荷状态。溶菌酶和肌红蛋白都是天然状态下紧凑的球形蛋白质,产生的隆起也是紧凑的,几乎是圆形的。然而,在溶液相中变性的肌红蛋白产生的隆起是拉长的,并且这种伸长与离子的电荷状态呈正相关。看来,关于气相中多电荷蛋白质的结构信息可以从蛋白质在撞击表面时产生的印痕中推导出来。

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