Brian D. Gregory, Ph.D.

Affiliations: 
2005 Harvard University, Cambridge, MA, United States 
Area:
Microbiology Biology
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"Brian Gregory"

Parents

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Ann Hochschild grad student 2005 Harvard
 (Molecular interactions of Escherichia coli sigma(70) region 4 involved in transcription initiation.)

Children

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Ammar Naqvi grad student 2011-2016 (Chemistry Tree)
Matthew R. Willmann post-doc Penn (Cell Biology Tree)
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Publications

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Shan M, Ji X, Janssen K, et al. (2021) Dynamic changes in RNA-protein interactions and RNA secondary structure in mammalian erythropoiesis. Life Science Alliance. 4
Hua X, Berkowitz ND, Willmann MR, et al. (2021) Global Analysis of RNA-Dependent RNA Polymerase-Dependent Small RNAs Reveals New Substrates and Functions for These Proteins and SGS3 in Arabidopsis. Non-Coding Rna. 7
Yu X, Willmann MR, Vandivier LE, et al. (2020) Messenger RNA 5' NAD Capping Is a Dynamic Regulatory Epitranscriptome Mark That Is Required for Proper Response to Abscisic Acid in Arabidopsis. Developmental Cell
Yu X, Sharma B, Gregory BD. (2020) The impact of epitranscriptomic marks on post-transcriptional regulation in plants. Briefings in Functional Genomics
Bhat SS, Bielewicz D, Gulanicz T, et al. (2020) mRNA adenosine methylase (MTA) deposits mA on pri-miRNAs to modulate miRNA biogenesis in . Proceedings of the National Academy of Sciences of the United States of America
Kramer MC, Janssen KA, Palos K, et al. (2020) N-methyladenosine and RNA secondary structure affect transcript stability and protein abundance during systemic salt stress in Arabidopsis. Plant Direct. 4: e00239
Shan M, Gregory BD. (2020) Using RNA Affinity Purification Followed by Mass Spectrometry to Identify RNA-Binding Proteins (RBPs). Methods in Molecular Biology (Clifton, N.J.). 2166: 241-253
Kuksa PP, Li F, Kannan S, et al. (2020) HiPR: High-throughput probabilistic RNA structure inference. Computational and Structural Biotechnology Journal. 18: 1539-1547
Kuksa PP, Amlie-Wolf A, Hwang YC, et al. (2020) HIPPIE2: a method for fine-scale identification of physically interacting chromatin regions. Nar Genomics and Bioinformatics. 2: lqaa022
Heldt NA, Seliga A, Winfield M, et al. (2020) Electronic cigarette exposure disrupts blood-brain barrier integrity and promotes neuroinflammation. Brain, Behavior, and Immunity
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