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Caroline Benz

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

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Molecular Systems Biology|January 19, 2022
Proteome-scale mapping of binding sites in the unstructured regions of the human proteomeCaroline Benz, Muhammad Ali, Izabella Krystkowiak, et al.
The Journal of Biological Chemistry|January 25, 2026
A tryptophane-phenylalanine binding motif for the histone methyltransferases MLL4 and MLL3Soumi Biswas, Zohreh Tavaf, Caroline Benz, et al.
Iscience|November 17, 2022
B cell linker protein (BLNK) is a regulator of Met receptor signaling and trafficking in non-small cell lung cancerShivanthy Pathmanathan, Zhong Yao, Paula Coelho, et al.
Structure (London, England : 1993)|April 5, 2024
MLL4 binds TET3Dustin C Becht, Sk Abdul Mohid, Ji-Eun Lee, et al.
Nature Communications|September 13, 2023
Identification of motif-based interactions between SARS-CoV-2 protein domains and human peptide ligands pinpoint antiviral targetsFilip Mihalič, Caroline Benz, Eszter Kassa, et al.
Nature Communications|August 15, 2025
High-throughput investigation of cyclin docking interactions reveals the complexity of motif binding determinantsMihkel Örd, Matthew J Winters, Mythili S Subbanna, et al.
Biorxiv : the Preprint Server for Biology|December 16, 2024
High-throughput discovery and deep characterization of cyclin-CDK docking motifsMihkel Örd, Matthew J Winters, Mythili S Subbanna, et al.
Nature Communications|November 20, 2021
Large scale discovery of coronavirus-host factor protein interaction motifs reveals SARS-CoV-2 specific mechanisms and vulnerabilitiesThomas Kruse, Caroline Benz, Dimitriya H Garvanska, et al.
Nature Communications|April 26, 2023
Large-scale phage-based screening reveals extensive pan-viral mimicry of host short linear motifsFilip Mihalič, Leandro Simonetti, Girolamo Giudice, et al.
Nature Communications|June 7, 2024
ASXLs binding to the PHD2/3 fingers of MLL4 provides a mechanism for the recruitment of BAP1 to active enhancersYi Zhang, Guojia Xie, Ji-Eun Lee, et al.
Pageof 2

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

Sort By:
Pageof 2
You have reached the last page of results.This site can display upto 20 results.
Molecular Systems Biology|January 19, 2022
Proteome-scale mapping of binding sites in the unstructured regions of the human proteomeCaroline Benz, Muhammad Ali, Izabella Krystkowiak, et al.
The Journal of Biological Chemistry|January 25, 2026
A tryptophane-phenylalanine binding motif for the histone methyltransferases MLL4 and MLL3Soumi Biswas, Zohreh Tavaf, Caroline Benz, et al.
Iscience|November 17, 2022
B cell linker protein (BLNK) is a regulator of Met receptor signaling and trafficking in non-small cell lung cancerShivanthy Pathmanathan, Zhong Yao, Paula Coelho, et al.
Structure (London, England : 1993)|April 5, 2024
MLL4 binds TET3Dustin C Becht, Sk Abdul Mohid, Ji-Eun Lee, et al.
Nature Communications|September 13, 2023
Identification of motif-based interactions between SARS-CoV-2 protein domains and human peptide ligands pinpoint antiviral targetsFilip Mihalič, Caroline Benz, Eszter Kassa, et al.
Nature Communications|August 15, 2025
High-throughput investigation of cyclin docking interactions reveals the complexity of motif binding determinantsMihkel Örd, Matthew J Winters, Mythili S Subbanna, et al.
Biorxiv : the Preprint Server for Biology|December 16, 2024
High-throughput discovery and deep characterization of cyclin-CDK docking motifsMihkel Örd, Matthew J Winters, Mythili S Subbanna, et al.
Nature Communications|November 20, 2021
Large scale discovery of coronavirus-host factor protein interaction motifs reveals SARS-CoV-2 specific mechanisms and vulnerabilitiesThomas Kruse, Caroline Benz, Dimitriya H Garvanska, et al.
Nature Communications|April 26, 2023
Large-scale phage-based screening reveals extensive pan-viral mimicry of host short linear motifsFilip Mihalič, Leandro Simonetti, Girolamo Giudice, et al.
Nature Communications|June 7, 2024
ASXLs binding to the PHD2/3 fingers of MLL4 provides a mechanism for the recruitment of BAP1 to active enhancersYi Zhang, Guojia Xie, Ji-Eun Lee, et al.
Pageof 2