Standout Papers
- Caveolins, a Family of Scaffolding Proteins for Organizing “Preassembled Signaling Complexes” at the Plasma Membrane (1998)
- Cancer metabolism: a therapeutic perspective (2016)
- The reverse Warburg effect: Aerobic glycolysis in cancer associated fibroblasts and the tumor stroma (2009)
- Caveolin-1 Null Mice Are Viable but Show Evidence of Hyperproliferative and Vascular Abnormalities (2001)
- Co-purification and Direct Interaction of Ras with Caveolin, an Integral Membrane Protein of Caveolae Microdomains (1996)
- Signal transducing molecules and glycosyl-phosphatidylinositol-linked proteins form a caveolin-rich insoluble complex in MDCK cells (1993)
- Caveolins, Liquid-Ordered Domains, and Signal Transduction (1999)
- Characterization of caveolin-rich membrane domains isolated from an endothelial-rich source: implications for human disease. (1994)
- Caveolae: From Cell Biology to Animal Physiology (2002)
- Identification of Peptide and Protein Ligands for the Caveolin-scaffolding Domain (1997)
- ESPEN expert group recommendations for action against cancer-related malnutrition (2017)
- Role of Caveolae and Caveolins in Health and Disease (2004)
- Dissecting the Interaction between Nitric Oxide Synthase (NOS) and Caveolin (1997)
- Src Tyrosine Kinases, Gα Subunits, and H-Ras Share a Common Membrane-anchored Scaffolding Protein, Caveolin (1996)
- Molecular Cloning of Caveolin-3, a Novel Member of the Caveolin Gene Family Expressed Predominantly in Muscle (1996)
- Expression of Caveolin-3 in Skeletal, Cardiac, and Smooth Muscle Cells (1996)
- Interaction of a Receptor Tyrosine Kinase, EGF-R, with Caveolins (1997)
- Caveolin-1 Regulates Transforming Growth Factor (TGF)-β/SMAD Signaling through an Interaction with the TGF-β Type I Receptor (2001)
- Evidence for a Regulated Interaction between Heterotrimeric G Proteins and Caveolin (1995)
- Caveolae, caveolin and caveolin-rich membrane domains: a signalling hypothesis (1994)
- Cancer stem cells (2012)
- Antibiotics that target mitochondria effectively eradicate cancer stem cells, across multiple tumor types: Treating cancer like an infectious disease (2015)
Immediate Impact
9 by Nobel laureates 43 from Science/Nature 87 standout
Citing Papers
Circulating Tumor Cell Clustering Shapes DNA Methylation to Enable Metastasis Seeding
2019 Standout
Effects of Intermittent Fasting on Health, Aging, and Disease
2019 Standout
Works of Michael P. Lisanti being referenced
Cancer metabolism: a therapeutic perspective
2016 Standout
Caloric restriction augments radiation efficacy in breast cancer
2013
Author Peers
| Author | Last Decade | Papers | Cites | |||
|---|---|---|---|---|---|---|
| Michael P. Lisanti | 46965 | 33236 | 15290 | 568 | 69.7k | |
| Harvey F. Lodish | 46181 | 11479 | 10840 | 572 | 76.6k | |
| Philip Cohen | 67060 | 13461 | 6528 | 488 | 88.5k | |
| Steven P. Gygi | 87120 | 17827 | 11525 | 689 | 119.3k | |
| Kun‐Liang Guan | 57090 | 31416 | 10022 | 418 | 87.4k | |
| Roger J. Davis | 61987 | 11605 | 11579 | 563 | 91.7k | |
| Peter Carmeliet | 52350 | 7612 | 27080 | 720 | 98.1k | |
| Joseph L. Goldstein | 51330 | 14015 | 15746 | 399 | 98.5k | |
| Michael S. Brown | 47368 | 13042 | 14828 | 365 | 91.3k | |
| Dario R. Alessi | 50134 | 10045 | 5602 | 308 | 64.7k | |
| Shuh Narumiya | 28576 | 11905 | 3454 | 550 | 59.8k |
All Works
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