Tai-Ting Woo
Biochemistry, Genetics and Molecular Biology · University of Michigan
Publications
19
Citations
90
Est. group size
~2
Recurring co-author estimate
Active years
10
Publishing since 2016
Typically publishes in teams of ~8 · 20% small-team papers (≤3 authors) · across 6 venues
- Author Response: Noncanonical usage of stop codons in ciliates expands proteins with Q-rich motifs
2024
- Noncanonical usage of stop codons in ciliates expands proteins with Q-rich motifs
eLife · 2024
- Noncanonical usage of stop codons in ciliates expands proteins with structurally flexible Q-rich motifs
eLife · 2024
- Author Response: Noncanonical usage of stop codons in ciliates expands proteins with structurally flexible Q-rich motifs
2024
- Noncanonical usage of stop codons in ciliates expands proteins with structurally flexible Q-rich motifs
eLife · 2023
- Reviewer #2 (Public Review): Noncanonical usage of stop codons in ciliates expands proteins with structurally flexible Q-rich motifs
2023
- Reviewer #1 (Public Review): Noncanonical usage of stop codons in ciliates expands proteins with structurally flexible Q-rich motifs
2023
- Noncanonical usage of stop codons in ciliates expands proteins with structurally flexible Q-rich motifs
2023
- Author Response: Noncanonical usage of stop codons in ciliates expands proteins with structurally flexible Q-rich motifs
2023
- <i>Trichoderma reesei</i> Rad51 tolerates mismatches in hybrid meiosis with diverse genome sequences
Proceedings of the National Academy of Sciences · 2021
- Budding yeast Rad51: a paradigm for how phosphorylation and intrinsic structural disorder regulate homologous recombination and protein homeostasis
Current Genetics · 2021
- Correction to: Budding yeast Rad51: a paradigm for how phosphorylation and intrinsic structural disorder regulate homologous recombination and protein homeostasis
Current Genetics · 2021
- Dual roles of yeast Rad51 N-terminal domain in repairing DNA double-strand breaks
Nucleic Acids Research · 2020
- Noncanonical usage of stop codons in ciliates expands proteins with Q-rich motifs
bioRxiv (Cold Spring Harbor Laboratory) · 2020
- Dynamic distributions of long double-stranded RNA in <i>Tetrahymena</i> during nuclear development and genome rearrangements
Journal of Cell Science · 2016
- eLife×3
- Science Advances×2
- Journal of Cell Science×2
- Current Genetics×2
- bioRxiv (Cold Spring Harbor Laboratory)×2
- Jennifer H. Wisecaver
Biochemistry, Genetics and Molecular Biology · Purdue University West Lafayette
- Sally Lyman Allen
Biochemistry, Genetics and Molecular Biology · University of Michigan
- James Forney
Biochemistry, Genetics and Molecular Biology · Purdue University West Lafayette
- Jiaqian Li
Environmental Science · University of Michigan
- Casey McGrath
Biochemistry, Genetics and Molecular Biology · Indiana University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 25, 2026.
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