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Amanda Ames
Amanda Ames
Graduate Student Research Assistance
在 brandeis.edu 的电子邮件经过验证
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HP1 oligomerization compensates for low-affinity H3K9me recognition and provides a tunable mechanism for heterochromatin-specific localization
S Biswas, Z Chen, JD Karslake, A Farhat, A Ames, G Raiymbek, ...
Science advances 8 (27), eabk0793, 2022
222022
Human DNA ligases I and III have stand-alone end-joining capability, but differ in ligation efficiency and specificity
JR McNally, AM Ames, SJ Admiraal, PJ O’Brien
Nucleic Acids Research 51 (2), 796-805, 2023
42023
Concise modular synthesis of thalassotalic acids A–C
JM Schulz, HT Lanovoi, AM Ames, PC McKegg, JD Patrone
Journal of natural products 82 (4), 1045-1048, 2019
42019
Investigating mitotic inheritance of histone modifications using tethering strategies
A Larkin, A Ames, M Seman, K Ragunathan
Histone Methyltransferases: Methods and Protocols, 419-440, 2022
32022
Tracking live-cell single-molecule dynamics enables measurements of heterochromatin-associated protein–protein interactions
Z Chen, M Seman, Y Fyodorova, A Farhat, A Ames, A Levashkevich, ...
Nucleic acids research, gkae692, 2024
2024
Epigenetic memory is governed by an effector recruitment specificity toggle in Heterochromatin Protein 1
A Ames, M Seman, A Larkin, G Raiymbek, Z Chen, A Levashkevich, B Kim, ...
Nature communications 15 (1), 6276, 2024
2024
Exploring the Molecular Basis of HP1-Mediated Epigenetic Inheritance
A Ames
Brandeis University, 2024
2024
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