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Nikolaus Grigorieff

Howard Hughes Medical Institute · US
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Area of research
Structural Biology · Molecular Biology
Research interest
Research interests include Advanced Electron Microscopy Techniques and Applications, Electron and X-Ray Spectroscopy Techniques, RNA and protein synthesis mechanisms, and RNA modifications and cancer.
h-index
76
citations
26,911
works
285
NIH funding
primary concept
email

Recent publications

A new statistical metric for robust target detection in cryo-EM using 2D template matching
IUCrJ 2025cited by 8position: lastdoi
<i>In situ</i> high-resolution cryo-EM reconstructions from CEMOVIS
IUCrJ 2025cited by 7position: lastdoi
Decreased cytoplasmic crowding via inhibition of ribosome biogenesis can trigger Candida albicans filamentous growth
Nature Microbiology 2025cited by 2position: middledoi
Structural basis for non-AUG translation regulation by 5MPs
bioRxiv (Cold Spring Harbor Laboratory) 2025cited by 1position: middledoi
CTFFIND5 provides improved insight into quality, tilt, and thickness of TEM samples
eLife 2024cited by 26position: lastdoi
CTFFIND5 provides improved insight into quality, tilt and thickness of TEM samples
eLife 2024cited by 5position: lastdoi
CTFFIND5 provides improved insight into quality, tilt and thickness of TEM samples
eLife 2024cited by 1position: lastdoi
CTFFIND5 provides improved insight into quality, tilt, and thickness of TEM samples
eLife 2024cited by 1position: lastdoi
From primordial clocks to circadian oscillators
Nature 2023cited by 35position: middledoi
Baited reconstruction with 2D template matching for high-resolution structure determination in vitro and in vivo without template bias
eLife 2023cited by 26position: lastdoi
Baited reconstruction with 2D template matching for high-resolution structure determination in vitro and in vivo without template bias
eLife 2023cited by 12position: lastdoi
Exploring the Limits of 2D Template Matching for Detecting Targets in Cellular Cryo-EM Images
Microscopy and Microanalysis 2023cited by 6position: lastdoi
Baited reconstruction with 2D template matching for high-resolution structure determination in vitro and in vivo without template bias
2023cited by 3position: lastdoi
Baited reconstruction with 2D template matching for high-resolution structure determination in vitro and in vivo without template bias
2023cited by 3position: lastdoi
In situ single particle classification reveals distinct 60S maturation intermediates in cells
eLife 2022cited by 54position: lastdoi
Defocus Corrected Large Area Cryo-EM (DeCo-LACE) for label-free detection of molecules across entire cell sections
eLife 2022cited by 26position: lastdoi
Locating macromolecular assemblies in cells by 2D template matching with cisTEM
eLife 2021cited by 143position: lastdoi
Structure and assembly of calcium homeostasis modulator proteins
Nature Structural & Molecular Biology 2020cited by 91position: middledoi
Structure of the Vesicular Stomatitis Virus L Protein in Complex with Its Phosphoprotein Cofactor
Cell Reports 2020cited by 85position: middledoi
mRNA stem-loops can pause the ribosome by hindering A-site tRNA binding
eLife 2020cited by 67position: middledoi
Structure and assembly of calcium homeostasis modulator proteins.
PubMed 2020cited by 55position: middledoi
Publisher Correction: Structure and assembly of calcium homeostasis modulator proteins
Nature Structural & Molecular Biology 2020cited by 9position: middledoi
Cryo-EM fibril structures from systemic AA amyloidosis reveal the species complementarity of pathological amyloids
Nature Communications 2019cited by 150position: middledoi
High-resolution cryo-EM structures of outbreak strain human norovirus shells reveal size variations
Proceedings of the National Academy of Sciences 2019cited by 76position: middledoi
In situ structure determination at nanometer resolution using TYGRESS
Nature Methods 2019cited by 75position: middledoi
In situ Structure of Rotavirus VP1 RNA-Dependent RNA Polymerase
Journal of Molecular Biology 2019cited by 57position: middledoi
Severing Enzymes Amplify Microtubule Arrays through Lattice GTP-Tubulin Incorporation
Biophysical Journal 2019cited by 11position: middledoi
cisTEM, user-friendly software for single-particle image processing
eLife 2018cited by 992position: lastdoi
Severing enzymes amplify microtubule arrays through lattice GTP-tubulin incorporation
Science 2018cited by 239position: middledoi
Physical basis of amyloid fibril polymorphism
Nature Communications 2018cited by 189position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Timothy Grant · University of Wisconsin System18 papers (2015–2023)А.A. Коростелев · University of Massachusetts Chan Medical School12 papers (2013–2025)Axel F. Brilot · The University of Texas at Austin9 papers (2012–2016)Bronwyn A. Lucas · University of California, Berkeley8 papers (2021–2025)Johannes Elferich · Howard Hughes Medical Institute7 papers (2022–2025)Stephen C. Harrison · Boston Children's Hospital7 papers (2012–2020)Alexis Rohou · Imperial College London6 papers (2014–2018)Rubén Díaz-Avalos · La Jolla Institute for Immunology6 papers (2016–2020)Benjamin A. Himes · Howard Hughes Medical Institute5 papers (2021–2023)Lingli Kong · Shandong University5 papers (2024–2025)Hiro Furukawa · Cold Spring Harbor Laboratory5 papers (2016–2020)Alexandra M. Deaconescu · John Brown University5 papers (2012–2019)Ximena Zottig · Howard Hughes Medical Institute5 papers (2024–2025)Gabriel Demo · University of Massachusetts Chan Medical School5 papers (2016–2017) · 4 papers (2015–2019) · 4 papers (2012–2017)Matthias Schmidt · Johannes Gutenberg University Mainz4 papers (2015–2019) · 4 papers (2016–2020)E. Svidritskiy · University of Massachusetts Chan Medical School4 papers (2014–2017)Rohini Madireddy · University of Massachusetts Chan Medical School4 papers (2016–2017)
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