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通过创新方法应对缺失视锥细胞挑战。

Eliminating the missing cone challenge through innovative approaches.

作者信息

Gillman Cody, Bu Guanhong, Danelius Emma, Hattne Johan, Nannenga Brent L, Gonen Tamir

机构信息

Department of Biological Chemistry, University of California, Los Angeles, CA, USA.

Molecular Biology Institute, University of California, Los Angeles, Los Angeles, CA 90095, USA.

出版信息

J Struct Biol X. 2024 May 31;9:100102. doi: 10.1016/j.yjsbx.2024.100102. eCollection 2024 Jun.

Abstract

Microcrystal electron diffraction (MicroED) has emerged as a powerful technique for unraveling molecular structures from microcrystals too small for X-ray diffraction. However, a significant hurdle arises with plate-like crystals that consistently orient themselves flat on the electron microscopy grid. If the normal of the plate correlates with the axes of the crystal lattice, the crystal orientations accessible for measurement are restricted because the crystal cannot be arbitrarily rotated. This limits the information that can be acquired, resulting in a missing cone of information. We recently introduced a novel crystallization strategy called suspended drop crystallization and proposed that crystals in a suspended drop could effectively address the challenge of preferred crystal orientation. Here we demonstrate the success of the suspended drop approach in eliminating the missing cone in two samples that crystallize as thin plates: bovine liver catalase and the SARS‑CoV‑2 main protease (Mpro). This innovative solution proves indispensable for crystals exhibiting systematic preferred orientations, unlocking new possibilities for structure determination by MicroED.

摘要

微晶电子衍射(MicroED)已成为一种强大的技术,可用于解析因尺寸过小而无法进行X射线衍射的微晶的分子结构。然而,对于始终在电子显微镜网格上平躺取向的片状晶体,会出现一个重大障碍。如果片状晶体的法线与晶格轴相关,那么可用于测量的晶体取向就会受到限制,因为晶体无法任意旋转。这限制了能够获取的信息,导致出现信息缺失锥。我们最近引入了一种名为悬滴结晶的新型结晶策略,并提出悬滴中的晶体可以有效应对晶体择优取向的挑战。在此,我们展示了悬滴法在消除两个以薄板形式结晶的样品(牛肝过氧化氢酶和严重急性呼吸综合征冠状病毒2主蛋白酶(Mpro))中的信息缺失锥方面的成功。这种创新解决方案对于呈现系统性择优取向的晶体而言不可或缺,为通过MicroED进行结构测定开辟了新的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84b5/11220036/3cf576114f08/ga1.jpg

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