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Complex archaea that bridge the gap between prokaryotes and eukaryotes A Spang, JH Saw, SL Jørgensen, K Zaremba-Niedzwiedzka, J Martijn, ... Nature 521 (7551), 173-179, 2015 | 1236 | 2015 |
Asgard archaea illuminate the origin of eukaryotic cellular complexity K Zaremba-Niedzwiedzka, EF Caceres, JH Saw, D Bäckström, ... Nature 541 (7637), 353-358, 2017 | 1040 | 2017 |
Archaea and the origin of eukaryotes L Eme, A Spang, J Lombard, CW Stairs, TJG Ettema Nature Reviews Microbiology 15 (12), 711-723, 2017 | 523 | 2017 |
The archaeal ‘TACK’superphylum and the origin of eukaryotes L Guy, TJG Ettema Trends in microbiology 19 (12), 580-587, 2011 | 379 | 2011 |
Innovations to culturing the uncultured microbial majority WH Lewis, G Tahon, P Geesink, DZ Sousa, TJG Ettema Nature Reviews Microbiology 19 (4), 225-240, 2021 | 369 | 2021 |
The Lrp family of transcriptional regulators AB Brinkman, TJG Ettema, WM De Vos, J Van Der Oost Molecular microbiology 48 (2), 287-294, 2003 | 343 | 2003 |
Deep mitochondrial origin outside the sampled alphaproteobacteria J Martijn, J Vosseberg, L Guy, P Offre, TJG Ettema Nature 557 (7703), 101-105, 2018 | 332 | 2018 |
A unique cell division machinery in the Archaea AC Lindås, EA Karlsson, MT Lindgren, TJG Ettema, R Bernander Proceedings of the National Academy of sciences 105 (48), 18942-18946, 2008 | 331 | 2008 |
Genomic exploration of the diversity, ecology, and evolution of the archaeal domain of life A Spang, EF Caceres, TJG Ettema Science 357 (6351), eaaf3883, 2017 | 282 | 2017 |
Integrative modeling of gene and genome evolution roots the archaeal tree of life TA Williams, GJ Szöllősi, A Spang, PG Foster, SE Heaps, B Boussau, ... Proceedings of the National Academy of Sciences 114 (23), E4602-E4611, 2017 | 231 | 2017 |
Reconstructing the evolution of the mitochondrial ribosomal proteome P Smits, JAM Smeitink, LP van den Heuvel, MA Huynen, TJG Ettema Nucleic acids research 35 (14), 4686-4703, 2007 | 219 | 2007 |
TEFM (c17orf42) is necessary for transcription of human mtDNA M Minczuk, J He, AM Duch, TJ Ettema, A Chlebowski, K Dzionek, ... Nucleic acids research 39 (10), 4284-4299, 2011 | 210 | 2011 |
Asgard archaea capable of anaerobic hydrocarbon cycling KW Seitz, N Dombrowski, L Eme, A Spang, J Lombard, JR Sieber, ... Nature communications 10, 2019 | 188 | 2019 |
Microbial community assembly and evolution in subseafloor sediment P Starnawski, T Bataillon, TJG Ettema, LM Jochum, L Schreiber, X Chen, ... Proceedings of the National Academy of Sciences 114 (11), 2940-2945, 2017 | 188 | 2017 |
The semi-phosphorylative Entner-Doudoroff pathway in hyperthermophilic archaea: a re-evaluation H Ahmed, T Ettema, B Tjaden, A Geerling, J van der Oost, B Siebers Biochem. J 390, 529-540, 2005 | 178 | 2005 |
Roadmap for naming uncultivated Archaea and Bacteria AE Murray, J Freudenstein, S Gribaldo, R Hatzenpichler, P Hugenholtz, ... Nature microbiology 5 (8), 987-994, 2020 | 157 | 2020 |
Proposal of the reverse flow model for the origin of the eukaryotic cell based on comparative analyses of Asgard archaeal metabolism A Spang, CW Stairs, N Dombrowski, L Eme, J Lombard, EF Caceres, ... Nature microbiology 4 (7), 1138-1148, 2019 | 156 | 2019 |
An actin‐based cytoskeleton in archaea TJG Ettema, AC Lindås, R Bernander Molecular microbiology 80 (4), 1052-1061, 2011 | 152 | 2011 |
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