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Patrick Pausch

Showing results (11-20 of 23) with videos related to

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Nature Structural & Molecular Biology|August 12, 2021
DNA interference states of the hypercompact CRISPR-CasΦ effectorPatrick Pausch, Katarzyna M Soczek, Dominik A Herbst, et al.
Nucleic Acids Research|February 28, 2026
Structural basis of Cas8-independent Cas3 recruitment in Type I-F2 CRISPR-CasThomas Noé Perry, Christopher-Nils Mais, Mariana Sanchez-Londono, et al.
Developmental Cell|August 11, 2015
Formin-like 2 Promotes β1-Integrin Trafficking and Invasive Motility Downstream of PKCαYing Wang, Antti Arjonen, Jeroen Pouwels, et al.
Cell Reports|September 16, 2020
Structural Basis for Regulation of the Opposing (p)ppGpp Synthetase and Hydrolase within the Stringent Response Orchestrator RelPatrick Pausch, Maha Abdelshahid, Wieland Steinchen, et al.
Nature Communications|June 27, 2015
Co-translational capturing of nascent ribosomal proteins by their dedicated chaperonesPatrick Pausch, Ujjwala Singh, Yasar Luqman Ahmed, et al.
Nature Microbiology|October 10, 2018
Collapse of genetic division of labour and evolution of autonomy in pellicle biofilmsAnna Dragoš, Marivic Martin, Carolina Falcón García, et al.
Nature Microbiology|January 13, 2019
Publisher Correction: Collapse of genetic division of labour and evolution of autonomy in pellicle biofilmsAnna Dragoš, Marivic Martin, Carolina Falcón Garcia, et al.
Science (New York, N.Y.)|July 18, 2020
CRISPR-CasΦ from huge phages is a hypercompact genome editorPatrick Pausch, Basem Al-Shayeb, Ezra Bisom-Rapp, et al.
Cell|November 24, 2022
Diverse virus-encoded CRISPR-Cas systems include streamlined genome editorsBasem Al-Shayeb, Petr Skopintsev, Katarzyna M Soczek, et al.
Cell Host & Microbe|May 16, 2024
Type IV-A3 CRISPR-Cas systems drive inter-plasmid conflicts by acquiring spacers in transFabienne Benz, Sarah Camara-Wilpert, Jakob Russel, et al.
Pageof 3

Showing results (11-20 of 23) with videos related to

Sort By:
Pageof 3
Nature Structural & Molecular Biology|August 12, 2021
DNA interference states of the hypercompact CRISPR-CasΦ effectorPatrick Pausch, Katarzyna M Soczek, Dominik A Herbst, et al.
Nucleic Acids Research|February 28, 2026
Structural basis of Cas8-independent Cas3 recruitment in Type I-F2 CRISPR-CasThomas Noé Perry, Christopher-Nils Mais, Mariana Sanchez-Londono, et al.
Developmental Cell|August 11, 2015
Formin-like 2 Promotes β1-Integrin Trafficking and Invasive Motility Downstream of PKCαYing Wang, Antti Arjonen, Jeroen Pouwels, et al.
Cell Reports|September 16, 2020
Structural Basis for Regulation of the Opposing (p)ppGpp Synthetase and Hydrolase within the Stringent Response Orchestrator RelPatrick Pausch, Maha Abdelshahid, Wieland Steinchen, et al.
Nature Communications|June 27, 2015
Co-translational capturing of nascent ribosomal proteins by their dedicated chaperonesPatrick Pausch, Ujjwala Singh, Yasar Luqman Ahmed, et al.
Nature Microbiology|October 10, 2018
Collapse of genetic division of labour and evolution of autonomy in pellicle biofilmsAnna Dragoš, Marivic Martin, Carolina Falcón García, et al.
Nature Microbiology|January 13, 2019
Publisher Correction: Collapse of genetic division of labour and evolution of autonomy in pellicle biofilmsAnna Dragoš, Marivic Martin, Carolina Falcón Garcia, et al.
Science (New York, N.Y.)|July 18, 2020
CRISPR-CasΦ from huge phages is a hypercompact genome editorPatrick Pausch, Basem Al-Shayeb, Ezra Bisom-Rapp, et al.
Cell|November 24, 2022
Diverse virus-encoded CRISPR-Cas systems include streamlined genome editorsBasem Al-Shayeb, Petr Skopintsev, Katarzyna M Soczek, et al.
Cell Host & Microbe|May 16, 2024
Type IV-A3 CRISPR-Cas systems drive inter-plasmid conflicts by acquiring spacers in transFabienne Benz, Sarah Camara-Wilpert, Jakob Russel, et al.
Pageof 3