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Plos One|March 23, 2019
Functional interaction of human Ssu72 with RNA polymerase II complexesBenjamin M Spector, Michael E Turek, David H PriceNucleic Acids Research|September 9, 2024
DFF-ChIP: a method to detect and quantify complex interactions between RNA polymerase II, transcription factors, and chromatinBenjamin M Spector, Juan F Santana, Miles A Pufall, et al.Nucleic Acids Research|June 30, 2020
A unified view of the sequence and functional organization of the human RNA polymerase II promoterDonal S Luse, Mrutyunjaya Parida, Benjamin M Spector, et al.Nucleic Acids Research|January 10, 2024
NELF focuses sites of initiation and maintains promoter architectureJuan F Santana, Benjamin M Spector, Gustavo A Suarez, et al.Chemical Science|October 6, 2022
Challenges and opportunities for chiral covalent organic frameworksXing Kang, Emily R Stephens, Benjamin M Spector-Watts, et al.Nucleic Acids Research|January 20, 2022
Nuclear export restricts Gdown1 to a mitotic functionChristopher B Ball, Mrutyunjaya Parida, Juan F Santana, et al.Viruses|April 23, 2022
Human Cytomegalovirus Infection Elicits Global Changes in Host Transcription by RNA Polymerases I, II, and IIIChristopher B Ball, Mrutyunjaya Parida, Ming Li, et al.Nature Communications|April 15, 2022
Differences in RNA polymerase II complexes and their interactions with surrounding chromatin on human and cytomegalovirus genomesBenjamin M Spector, Mrutyunjaya Parida, Ming Li, et al.Plos Pathogens|August 4, 2025
Cell type differences in human cytomegalovirus transcription and epigenetic regulation with insights into major immediate-early enhancer-promoter controlQiaolin Hu, Ming Li, Mrutyunjaya Parida, et al.Nucleic Acids Research|October 5, 2017
Oxidative stress rapidly stabilizes promoter-proximal paused Pol II across the human genomeKyle A Nilson, Christine K Lawson, Nicholas J Mullen, et al.Pageof 2