Cryo-EM reconstruction of the chlororibosome to 3.2 Å resolution within 24 h

IUCrJ. 2017 Sep 22;4(Pt 6):723-727. doi: 10.1107/S205225251701226X. eCollection 2017 Nov 1.

Abstract

The introduction of direct detectors and the automation of data collection in cryo-EM have led to a surge in data, creating new opportunities for advancing computational processing. In particular, on-the-fly workflows that connect data collection with three-dimensional reconstruction would be valuable for more efficient use of cryo-EM and its application as a sample-screening tool. Here, accelerated on-the-fly analysis is reported with optimized organization of the data-processing tools, image acquisition and particle alignment that make it possible to reconstruct the three-dimensional density of the 70S chlororibosome to 3.2 Å resolution within 24 h of tissue harvesting. It is also shown that it is possible to achieve even faster processing at comparable quality by imposing some limits to data use, as illustrated by a 3.7 Å resolution map that was obtained in only 80 min on a desktop computer. These on-the-fly methods can be employed as an assessment of data quality from small samples and extended to high-throughput approaches.

Keywords: chlororibosome; cryo-EM; image processing.

Grants and funding

This work was funded by Stiftelsen för Strategisk Forskning grant Future Leaders Grant FFL15:0325. Ragnar Söderbergs Stiftelse grant Fellowship in Medicine M44/16. Raymond and Beverly Sackler Institute for Biological, Physical and Engineering Sciences, Yale University grant . Vetenskapsrådet grant . Federation of European Biochemical Societies grant Long-Term Fellowship to Shintaro Aibara. Sven and Lilly Lawski Foundation grant Lawski Scholarship to Björn O. Forsberg. Erasmus Mundus Programme grant .