The Role of R-Ras Proteins in Normal and Pathologic Migration and Morphologic Change is a research paper published in American Journal Of Pathology (2021). On theSindex it has a DataRank of 0. It has been cited 58 times.
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U.S. Department of Defense
Grant: W81XWH-11-1-0498
U.S. Department of Defense
Grant: W81XWH-12-1-0164
U.S. Department of Defense
Grant: W81XWH-14-1-0073
U.S. Department of Defense
Grant: W81XWH-15-1-0193
U.S. Department of Defense
Grant: X81XWH-09-1-0086
National Cancer Institute
Grant: F30 CA247139
National Cancer Institute
Grant: R01 CA122804
National Institute of Neurological Disorders and Stroke
Grant: R01 NS109655
National Institute of Neurological Disorders and Stroke
Grant: R01 NS048353
Children's Tumor Foundation
Grant: 2014-04-001
Children's Tumor Foundation
Grant: 2015-05-007
NCI NIH HHS
Grant: U54 CA210963
National Institutes of Health
Grant: 5F30CA247139-02
The Role of HER3 and IGF1R, through Non-Classical Ras Signaling, on Malignant Peripheral Nerve Sheath Tumor Progression
National Institutes of Health
Grant: 3R01NS109655-04S1
Therapeutic Targeting of Receptor Tyrosine Kinase Hierarchies in Schwann Cell Neoplasms
National Institutes of Health
Grant: 5R01NS048353-03
Role of Neuregulin-1 in Schwann Cell Neoplasia
National Institutes of Health
Grant: 5R01CA122804-02
Novel Treatment of NF-1 Associated Malignant Peripheral Nerve Sheath Tumors
National Institutes of Health
Fields of Study
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Sustainable Development Goals
Additional file 10 of R-Ras subfamily proteins elicit distinct physiologic effects and phosphoproteome alterations in neurofibromin-null MPNST cells
Additional file 10 of R-Ras subfamily proteins elicit distinct physiologic effects and phosphoproteome alterations in neurofibromin-null MPNST cells
Additional file 11 of R-Ras subfamily proteins elicit distinct physiologic effects and phosphoproteome alterations in neurofibromin-null MPNST cells
Additional file 11 of R-Ras subfamily proteins elicit distinct physiologic effects and phosphoproteome alterations in neurofibromin-null MPNST cells
Additional file 8 of R-Ras subfamily proteins elicit distinct physiologic effects and phosphoproteome alterations in neurofibromin-null MPNST cells
Additional file 8 of R-Ras subfamily proteins elicit distinct physiologic effects and phosphoproteome alterations in neurofibromin-null MPNST cells
Additional file 9 of R-Ras subfamily proteins elicit distinct physiologic effects and phosphoproteome alterations in neurofibromin-null MPNST cells
Additional file 9 of R-Ras subfamily proteins elicit distinct physiologic effects and phosphoproteome alterations in neurofibromin-null MPNST cells
Additional file 2 of The ancestral type of the R-RAS protein has oncogenic potential
Additional file 2 of The ancestral type of the R-RAS protein has oncogenic potential
Additional file 5 of The ancestral type of the R-RAS protein has oncogenic potential
Additional file 5 of The ancestral type of the R-RAS protein has oncogenic potential
Additional file 3 of The ancestral type of the R-RAS protein has oncogenic potential
Additional file 4 of The ancestral type of the R-RAS protein has oncogenic potential
Additional file 3 of The ancestral type of the R-RAS protein has oncogenic potential
Additional file 1 of The ancestral type of the R-RAS protein has oncogenic potential
Additional file 1 of The ancestral type of the R-RAS protein has oncogenic potential
Additional file 4 of The ancestral type of the R-RAS protein has oncogenic potential