Max Planck Institute for Solid State Research, Heisenbergstr. 1, 70569 Stuttgart, Germany.
Department of Chemistry, University of Oxford, 12 Mansfield Road, Oxford OX1 3TA, U.K.
Essays Biochem. 2023 Mar 29;67(2):151-163. doi: 10.1042/EBC20220165.
Inline low-energy electron holography (LEEH) in conjunction with sample preparation by electrospray ion beam deposition (ES-IBD) has recently emerged as a promising method for the sub-nanometre-scale single-molecule imaging of biomolecules. The single-molecule nature of the LEEH measurement allows for the mapping of the molecules' conformational space and thus for the imaging of structurally variable biomolecules, thereby providing valuable complementary information to well-established biomolecular structure determination methods. Here, after briefly tracing the development of inline LEEH in bioimaging, we present the state-of-the-art of native ES-IBD + LEEH as a method of single-protein imaging, discuss its applications, specifically regarding the imaging of structurally flexible protein systems and the amplitude and phase information encoded in a low-energy electron hologram, and provide an outlook regarding the considerable possibilities for the future advancement of the approach.
在线低能电子全息术(LEEH)结合电喷雾离子束沉积(ES-IBD)的样品制备方法,最近已成为对生物分子进行亚纳米级单分子成像的一种很有前途的方法。LEEH 测量的单分子性质允许对分子构象空间进行映射,从而对结构可变的生物分子进行成像,从而为成熟的生物分子结构测定方法提供了有价值的补充信息。在这里,简要追溯了生物成像中在线 LEEH 的发展之后,我们介绍了作为单蛋白成像方法的原生 ES-IBD + LEEH 的最新技术,讨论了其应用,特别是关于结构灵活的蛋白质系统的成像以及在低能电子全息图中编码的幅度和相位信息,并展望了该方法未来有很大的发展可能性。