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Nicole DelRosso

Showing results (1-10 of 8) with videos related to

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Methods in Molecular Biology (Clifton, N.J.)|July 16, 2024
Using High-Throughput Measurements to Identify Principles of Transcriptional and Epigenetic RegulatorsNicole DelRosso, Lacramioara Bintu
Nature Communications|January 13, 2025
Mutations to transcription factor MAX allosterically increase DNA selectivity by altering folding and binding pathwaysRenee Hastings, Arjun K Aditham, Nicole DelRosso, et al.
Cell Systems|December 19, 2020
High-Throughput Affinity Measurements of Transcription Factor and DNA Mutations Reveal Affinity and Specificity DeterminantsArjun K Aditham, Craig J Markin, Daniel A Mokhtari, et al.
Nature Protocols|July 1, 2026
High-throughput measurements of protein domain functions using magnetic separationAbby R Thurm, Josh Tycko, Connor H Ludwig, et al.
Biorxiv : the Preprint Server for Biology|September 4, 2024
High-throughput affinity measurements of direct interactions between activation domains and co-activatorsNicole DelRosso, Peter H Suzuki, Daniel Griffith, et al.
Nature|April 5, 2023
Large-scale mapping and mutagenesis of human transcriptional effector domainsNicole DelRosso, Josh Tycko, Peter Suzuki, et al.
Cell|December 16, 2020
High-Throughput Discovery and Characterization of Human Transcriptional EffectorsJosh Tycko, Nicole DelRosso, Gaelen T Hess, et al.
Nature Biotechnology|November 2, 2024
Development of compact transcriptional effectors using high-throughput measurements in diverse contextsJosh Tycko, Mike V Van, Aradhana, et al.
Pageof 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
Methods in Molecular Biology (Clifton, N.J.)|July 16, 2024
Using High-Throughput Measurements to Identify Principles of Transcriptional and Epigenetic RegulatorsNicole DelRosso, Lacramioara Bintu
Nature Communications|January 13, 2025
Mutations to transcription factor MAX allosterically increase DNA selectivity by altering folding and binding pathwaysRenee Hastings, Arjun K Aditham, Nicole DelRosso, et al.
Cell Systems|December 19, 2020
High-Throughput Affinity Measurements of Transcription Factor and DNA Mutations Reveal Affinity and Specificity DeterminantsArjun K Aditham, Craig J Markin, Daniel A Mokhtari, et al.
Nature Protocols|July 1, 2026
High-throughput measurements of protein domain functions using magnetic separationAbby R Thurm, Josh Tycko, Connor H Ludwig, et al.
Biorxiv : the Preprint Server for Biology|September 4, 2024
High-throughput affinity measurements of direct interactions between activation domains and co-activatorsNicole DelRosso, Peter H Suzuki, Daniel Griffith, et al.
Nature|April 5, 2023
Large-scale mapping and mutagenesis of human transcriptional effector domainsNicole DelRosso, Josh Tycko, Peter Suzuki, et al.
Cell|December 16, 2020
High-Throughput Discovery and Characterization of Human Transcriptional EffectorsJosh Tycko, Nicole DelRosso, Gaelen T Hess, et al.
Nature Biotechnology|November 2, 2024
Development of compact transcriptional effectors using high-throughput measurements in diverse contextsJosh Tycko, Mike V Van, Aradhana, et al.
Pageof 1