CRISPR-CasΦ from huge phages is a hypercompact genome editor P Pausch, B Al-Shayeb, E Bisom-Rapp, CA Tsuchida, Z Li, BF Cress, ... Science 369 (6501), 333-337, 2020 | 446 | 2020 |
PAM identification by CRISPR-Cas effector complexes: diversified mechanisms and structures D Gleditzsch, P Pausch, H Müller-Esparza, A Özcan, X Guo, G Bange, ... RNA biology 16 (4), 504-517, 2019 | 242 | 2019 |
Type IV CRISPR RNA processing and effector complex formation in Aromatoleum aromaticum A Özcan, P Pausch, A Linden, A Wulf, K Schühle, J Heider, H Urlaub, ... Nature microbiology 4 (1), 89-96, 2019 | 109 | 2019 |
The NIH somatic cell genome editing program K Saha, EJ Sontheimer, PJ Brooks, MR Dwinell, CA Gersbach, DR Liu, ... Nature 592 (7853), 195-204, 2021 | 102 | 2021 |
Structural biology of CRISPR–Cas immunity and genome editing enzymes JY Wang, P Pausch, JA Doudna Nature Reviews Microbiology 20 (11), 641-656, 2022 | 101 | 2022 |
Co-translational capturing of nascent ribosomal proteins by their dedicated chaperones P Pausch, U Singh, YL Ahmed, B Pillet, G Murat, F Altegoer, G Stier, ... Nature communications 6 (1), 7494, 2015 | 82 | 2015 |
The dedicated chaperone Acl4 escorts ribosomal protein Rpl4 to its nuclear pre-60S assembly site B Pillet, JJ García-Gómez, P Pausch, L Falquet, G Bange, J de la Cruz, ... PLoS genetics 11 (10), e1005565, 2015 | 76 | 2015 |
Formin-like 2 promotes β1-integrin trafficking and invasive motility downstream of PKCα Y Wang, A Arjonen, J Pouwels, H Ta, P Pausch, G Bange, U Engel, X Pan, ... Developmental cell 34 (4), 475-483, 2015 | 74 | 2015 |
Modulating the Cascade architecture of a minimal Type IF CRISPR-Cas system D Gleditzsch, H Müller-Esparza, P Pausch, K Sharma, S Dwarakanath, ... Nucleic acids research 44 (12), 5872-5882, 2016 | 67 | 2016 |
Structural variation of type IF CRISPR RNA guided DNA surveillance P Pausch, H Müller-Esparza, D Gleditzsch, F Altegoer, L Randau, ... Molecular cell 67 (4), 622-632. e4, 2017 | 66 | 2017 |
Diverse virus-encoded CRISPR-Cas systems include streamlined genome editors B Al-Shayeb, P Skopintsev, KM Soczek, EC Stahl, Z Li, E Groover, ... Cell 185 (24), 4574-4586. e16, 2022 | 65 | 2022 |
DNA interference states of the hypercompact CRISPR–CasΦ effector P Pausch, KM Soczek, DA Herbst, CA Tsuchida, B Al-Shayeb, JF Banfield, ... Nature structural & molecular biology 28 (8), 652-661, 2021 | 61 | 2021 |
Collapse of genetic division of labour and evolution of autonomy in pellicle biofilms A Dragoš, M Martin, C Falcón García, L Kricks, P Pausch, T Heimerl, ... Nature Microbiology 3 (12), 1451-1460, 2018 | 55 | 2018 |
Structural basis for regulation of the opposing (p) ppGpp synthetase and hydrolase within the stringent response orchestrator Rel P Pausch, M Abdelshahid, W Steinchen, H Schäfer, FL Gratani, ... Cell Reports 32 (11), 2020 | 46 | 2020 |
From molecular evolution to biobricks and synthetic modules: a lesson by the bacterial flagellum F Altegoer, J Schuhmacher, P Pausch, G Bange Biotechnology and Genetic Engineering Reviews 30 (1), 49-64, 2014 | 46 | 2014 |
Structural basis for (p) ppGpp-mediated inhibition of the GTPase RbgA P Pausch, W Steinchen, M Wieland, T Klaus, SA Freibert, F Altegoer, ... Journal of Biological Chemistry 293 (51), 19699-19709, 2018 | 39 | 2018 |
Genome editing in plants using the compact editor CasΦ Z Li, Z Zhong, Z Wu, P Pausch, B Al-Shayeb, J Amerasekera, JA Doudna, ... Proceedings of the National Academy of Sciences 120 (4), e2216822120, 2023 | 24 | 2023 |
Hampered motility promotes the evolution of wrinkly phenotype in Bacillus subtilis A Richter, T Hölscher, P Pausch, T Sehrt, F Brockhaus, G Bange, ... BMC evolutionary biology 18, 1-11, 2018 | 22 | 2018 |
Diversification of 4ʹ-Methylated Nucleosides by Nucleoside Phosphorylases F Kaspar, M Seeger, S Westarp, C Köllmann, AP Lehmann, P Pausch, ... | 18 | 2021 |
Collapse of genetic division of labour and evolution of autonomy in pellicle biofilms. Nat Microbiol 3: 1451–1460 A Dragoš, M Martin, CF Garcia, L Kricks, P Pausch, T Heimerl, B Bálint, ... | 7 | 2018 |