Anne M. Strohecker
Biochemistry, Genetics and Molecular Biology · The Ohio State University
Publications
54
Citations
12,201
Est. group size
—
Recurring co-author estimate
Active years
24
Publishing since 2001
Anne M. Strohecker's work focuses on autophagy, a cellular recycling process, and how it supports cancer cell metabolism and growth. Her recent publicly available records center on a single study examining how autophagy sustains mitochondrial glutamine metabolism in lung tumors driven by a BRAF V600E mutation, a common cancer-associated gene alteration.
Publication counts were low and steady for several years but spiked sharply in 2023, largely due to multiple supplementary files from a single major study, making it hard to assess a consistent underlying trend.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Supplementary Figure Legends from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S8 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S2 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S7 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S1 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S3 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S5 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S4 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S6 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S4 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S5 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S7 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S3 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S8 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Figure S2 from Autophagy Sustains Mitochondrial Glutamine Metabolism and Growth of <i>Braf</i><sup>V600E</sup>–Driven Lung Tumors
2023
- Autophagy×2
- PLoS ONE×2
- Cancer Research×2
- iScience×1
- Cellular and Molecular Life Sciences×1
- Evangelia Chavdoula
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Richard K. Wilson
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Shuaixin Gao
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Yunlong Liu
Biochemistry, Genetics and Molecular Biology · Indiana University
- Ziyu Liu
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 19, 2026.
Claim or correct this profile