Lydia W. S. Finley
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Lydia W. S. Finleycomputer-science Degrees
Computer Science
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Machine Learning
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Artificial Intelligence
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Computer Science
Lydia W. S. Finley's Degrees
- Masters Computer Science Stanford University
- Bachelors Computer Science University of California, Berkeley
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Why Is Lydia W. S. Finley Influential?
(Suggest an Edit or Addition)According to Wikipedia, Lydia W. S. Finley is an American scientist and an assistant member at the Cell Biology Program at Memorial Sloan Kettering Cancer Center and an assistant professor at Weill Cornell Medical College. Finley is known for her contributions to understanding the metabolic underpinnings of stem cell fate.
Lydia W. S. Finley's Published Works
Published Works
- SIRT3 opposes reprogramming of cancer cell metabolism through HIF1α destabilization. (2011) (733)
- Intracellular α-ketoglutarate maintains the pluripotency of embryonic stem cells (2014) (667)
- Sirtuin regulation of mitochondria: energy production, apoptosis, and signaling. (2010) (551)
- SIRT4 has tumor-suppressive activity and regulates the cellular metabolic response to DNA damage by inhibiting mitochondrial glutamine metabolism. (2013) (375)
- Hypoxia Induces Production of L-2-Hydroxyglutarate. (2015) (354)
- Short-term calorie restriction enhances skeletal muscle stem cell function. (2012) (337)
- Serine catabolism regulates mitochondrial redox control during hypoxia. (2014) (328)
- Succinate Dehydrogenase Is a Direct Target of Sirtuin 3 Deacetylase Activity (2011) (320)
- Adrenergic nerves activate an angio-metabolic switch in prostate cancer (2017) (251)
- The coordination of nuclear and mitochondrial communication during aging and calorie restriction (2009) (204)
- Acetylation-Dependent Regulation of Skp2 Function (2012) (183)
- SIRT3 is a mitochondrial tumor suppressor: a scientific tale that connects aberrant cellular ROS, the Warburg effect, and carcinogenesis. (2012) (165)
- Metabolic signatures of cancer cells and stem cells (2019) (165)
- α-Ketoglutarate links p53 to cell fate during tumour suppression (2019) (142)
- Metabolic regulation of chromatin modifications and gene expression (2018) (125)
- SIRT4 Represses Peroxisome Proliferator-Activated Receptor α Activity To Suppress Hepatic Fat Oxidation (2013) (114)
- Isoform Switching as a Mechanism of Acquired Resistance to Mutant Isocitrate Dehydrogenase Inhibition. (2018) (110)
- Metabolic regulation by SIRT3: implications for tumorigenesis. (2012) (108)
- PHD3 Loss in Cancer Enables Metabolic Reliance on Fatty Acid Oxidation via Deactivation of ACC2. (2016) (101)
- Skeletal muscle transcriptional coactivator PGC-1α mediates mitochondrial, but not metabolic, changes during calorie restriction (2012) (99)
- A novel AMPK-dependent FoxO3A-SIRT3 intramitochondrial complex sensing glucose levels (2013) (82)
- Lipid Deprivation Induces a Stable, Naive-to-Primed Intermediate State of Pluripotency in Human PSCs. (2019) (77)
- Extracellular serine controls epidermal stem cell fate and tumor initiation (2020) (54)
- Inhibition of epithelial cell migration and Src/FAK signaling by SIRT3 (2018) (50)
- Pluripotency transcription factors and Tet1/2 maintain Brd4-independent stem cell identity (2018) (46)
- A non-canonical tricarboxylic acid cycle underlies cellular identity (2022) (45)
- SnapShot: cancer metabolism pathways. (2013) (43)
- Altered social behavior and neuronal development in mice lacking the Uba6-Use1 ubiquitin transfer system. (2013) (42)
- Metabolic Coordination of Cell Fate by α-Ketoglutarate-Dependent Dioxygenases. (2020) (41)
- Flura-seq identifies organ-specific metabolic adaptations during early metastatic colonization (2019) (41)
- Glutamine independence is a selectable feature of pluripotent stem cells (2019) (36)
- Repurposing an adenine riboswitch into a fluorogenic imaging and sensing tag (2021) (16)
- Metabolic signal curbs cancer-cell migration (2019) (10)
- SnapShot: Cancer metabolism. (2021) (8)
- Pluripotency transcription factors and Tet1/2 maintain Brd4-independent stem cell identity (2018) (5)
- Metabolic determinants of tumour initiation (2022) (5)
- Regulation and function of the mammalian tricarboxylic acid cycle (2022) (5)
- Leveraging insights into cancer metabolism—a symposium report (2019) (3)
- 13 – The Metabolism of Cell Growth and Proliferation (2015) (3)
- Leucine retention in lysosomes is regulated by starvation (2022) (3)
- Metabolic decisions in development and disease—a Keystone Symposia report (2021) (2)
- Extracellular serine controls epidermal stem cell fate and tumour initiation (2020) (2)
- Author Correction: Extracellular serine controls epidermal stem cell fate and tumour initiation (2020) (2)
- Author response: Flura-seq identifies organ-specific metabolic adaptations during early metastatic colonization (2019) (2)
- Short-circuiting respiration. (2021) (2)
- roughex down-regulates G 2 cyclins in (2007) (1)
- Isoform switching as a mechanism of acquired resistance to isocitrate dehydrogenase inhibition (2018) (1)
- The role of SIRT3 in regulating cancer cell metabolism (2012) (1)
- Metabolic diversity drives cancer cell invasion (2022) (1)
- Abstract IA15: Metabolic coordination of cancer cell fate (2020) (0)
- To Suppress Hepatic Fat Oxidation Activity α Proliferator-Activated Receptor SIRT4 Represses Peroxisome (2014) (0)
- Editor's evaluation: Hyaluronic acid fuels pancreatic cancer cell growth (2020) (0)
- Abstract PO-021: Cell identity determines TCA cycle dynamics (2020) (0)
- What is cancer metabolism? (2023) (0)
- α-Ketoglutarate links p53 to cell fate during tumour suppression (2019) (0)
- Metabolic signatures of cancer cells and stem cells (2019) (0)
- Amino acid intake strategies define pluripotent cell states (2022) (0)
- New York Stem Cell Foundation Robertson Investigators. (2022) (0)
- Publisher Correction: Repurposing an adenine riboswitch into a fluorogenic imaging and sensing tag (2022) (0)
- A novel AMPK-dependent FoxO3A-SIRT3 intramitochondrial complex sensing glucose levels (2013) (0)
- Hypoxia Induces Productio n of L-2-Hydroxyglutarate Graphical Abstract Highlights (0)
- Abstract SY43-01: Stereochemistry matters: L-2HG as a tumor response to hypoxia (2015) (0)
- Ogdh Is a Genetic Vulnerability and Therapeutic Target in Acute Myeloid Leukemia (2022) (0)
- Leukemia-Associated Oncometabolite 2-Hydroxyglutarate Regulates Epigenetic Modifications in Response to Oxygen Availability in Cells without IDH1/2 Mutations (2014) (0)
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