SPOT-RASTR-A cryo-EM specimen preparation technique that overcomes problems with preferred orientation and the air/water interface.

IF 2.2 Q2 MULTIDISCIPLINARY SCIENCES PNAS nexus Pub Date : 2024-08-06 eCollection Date: 2024-08-01 DOI:10.1093/pnasnexus/pgae284
Behrouz G Esfahani, Peter S Randolph, Ruizhi Peng, Timothy Grant, M Elizabeth Stroupe, Scott M Stagg
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Abstract

In cryogenic electron microscopy (cryo-EM), specimen preparation remains a bottleneck despite recent advancements. Classical plunge freezing methods often result in issues like aggregation and preferred orientations at the air/water interface. Many alternative methods have been proposed, but there remains a lack a universal solution, and multiple techniques are often required for challenging samples. Here, we demonstrate the use of lipid nanotubes with nickel NTA headgroups as a platform for cryo-EM sample preparation. His-tagged specimens of interest are added to the tubules, and they can be frozen by conventional plunge freezing. We show that the nanotubes protect samples from the air/water interface and promote a wider range of orientations. The reconstruction of average subtracted tubular regions (RASTR) method allows for the removal of the nanotubule signal from the cryo-EM images resulting in isolated images of specimens of interest. Testing with β-galactosidase validates the method's ability to capture particles at lower concentrations, overcome preferred orientations, and achieve near-atomic resolution reconstructions. Since the nanotubules can be identified and targeted automatically at low magnification, the method enables fully automated data collection. Furthermore, the particles on the tubes can be automatically identified and centered using 2D classification enabling particle picking without requiring prior information. Altogether, our approach that we call specimen preparation on a tube RASTR holds promise for overcoming air-water interface and preferred orientation challenges and offers the potential for fully automated cryo-EM data collection and structure determination.

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SPOT-RASTR - 一种低温电子显微镜试样制备技术,可克服优先定向和空气/水界面问题。
在低温电子显微镜(cryo-EM)中,尽管近年来取得了进步,但试样制备仍然是一个瓶颈。传统的切入式冷冻方法通常会导致空气/水界面的聚集和优先取向等问题。人们已经提出了许多替代方法,但仍然缺乏通用的解决方案,而且对于具有挑战性的样品往往需要多种技术。在这里,我们展示了使用带有 NTA 镍头基的脂质纳米管作为冷冻电镜样品制备平台的方法。将 His 标记的相关样本添加到纳米管中,然后用传统的冷冻方法对其进行冷冻。我们的研究表明,纳米管能保护样品不受空气/水界面的影响,并能促进更广泛的取向。通过平均减去管状区域重建(RASTR)方法,可以从低温电子显微镜图像中去除纳米管信号,从而得到相关标本的孤立图像。使用 β-半乳糖苷酶进行的测试验证了该方法能够捕获低浓度颗粒、克服优先取向并实现近原子分辨率重建。由于纳米管可在低倍放大镜下自动识别和锁定,该方法可实现全自动数据采集。此外,纳米管上的颗粒可以通过二维分类自动识别和对中,从而实现颗粒拾取,而无需事先了解相关信息。总之,我们称之为在管子 RASTR 上制备试样的方法有望克服空气-水界面和优先定向难题,并为全自动冷冻电镜数据收集和结构确定提供了潜力。
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