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Peptides That Block RAS-p21 Protein-Induced Cell Transformation
Matthew R. Pincus
, Bo Lin
, Purvi Patel
, Elmer Gabutan
, Nitzan Zohar
, Wilbur B. Bowne
Research output
:
Contribution to journal
›
Review article
›
peer-review
3
Scopus citations
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Keyphrases
P21 Protein
100%
Cell Transformation
100%
Oncogenic Ras
100%
Small Molecules
50%
Mutant Protein
50%
Peptide Molecules
50%
Non-small Cell Lung Cancer (NSCLC)
33%
Specific Domain
33%
Oncogenic Proteins
33%
Anti-oncogenic
33%
Lung Carcinoma
16%
Monoclonal Antibody
16%
Apoptosis
16%
Cancer Cells
16%
G Protein
16%
Tumor
16%
Lung
16%
Pancreatic Cancer
16%
Colon Cancer
16%
Personalized Medicine
16%
Colorectal Carcinoma
16%
Effector Domain
16%
Cyclic Peptide
16%
Signal Transduction
16%
Peptide Sequencing
16%
Small Molecule Libraries
16%
FDA-approved Drugs
16%
Peptide Library
16%
New Drug Targets
16%
Single Amino Acid Substitution
16%
Informatics
16%
Cell-penetrating Peptide
16%
Bound Form
16%
Ras Signaling
16%
G12D
16%
Molecular Simulation
16%
High-throughput Assay
16%
Amgen
16%
Variable Domains
16%
G12C
16%
Polycyclic Aromatic Compounds
16%
AMG510
16%
MRTX849
16%
Compound Inserts
16%
Biochemistry, Genetics and Molecular Biology
P21
100%
Cell Transformation
100%
Carcinogenesis
62%
Cancer Cell
18%
Small Molecule
18%
Mutant Protein
18%
Signal Transduction
6%
Wild Type
6%
Guanosine Triphosphate
6%
Colon
6%
Peptide Sequence
6%
Monoclonal Antibody
6%
Amino Acid Substitution
6%
Peptide Library
6%
Cell-Penetrating Peptide
6%
Molecular Library
6%
G Protein
6%
Cyclic Peptide
6%
Programmed Cell Death
6%
Pharmacology, Toxicology and Pharmaceutical Science
Carcinogenesis
100%
Protein P21
100%
Mutant Protein
33%
Small Cell Carcinoma
22%
Malignant Neoplasm
11%
Monoclonal Antibody
11%
Amino Acid
11%
Carcinogen
11%
Guanine Nucleotide Binding Protein
11%
Colorectal Carcinoma
11%
Colon Carcinoma
11%
Guanosine Triphosphate
11%
Cell Penetrating Peptide
11%
Lung Carcinoma
11%
Cyclopeptide
11%
Polycyclic Aromatic Compound
11%