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21 results on '"Devin Bready"'

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1. Modulation of GPR133 (ADGRD1) Signaling by its Intracellular Interaction Partner Extended Synaptotagmin 1 (ESYT1)

3. PTK7 is a positive allosteric modulator of GPR133 (ADGRD1) signaling in GBM

4. TMET-19. DEFINING A NOVEL ROLE FOR CD97 IN REGULATING GBM GLYCOLYTIC METABOLISM

5. Dissociation of the intramolecularly cleaved N- and C-terminal fragments of the adhesion G protein-coupled receptor GPR133 (ADGRD1) increases canonical signaling

6. Expression profiling of the adhesion G protein-coupled receptor GPR133 (ADGRD1) in glioma subtypes

7. CBIO-05. SOX2 CHROMATIN ARCHITECTURE AND ENHANCER ACTIVITY IN THE MAINTENANCE AND DEVELOPMENT OF NEURAL STEM CELLS

8. CSIG-07. ACTIVATION OF THE ADHESION G PROTEIN-COUPLED RECEPTOR GPR133 BY ANTIBODIES AGAINST THE N-TERMINUS

9. CSIG-05. DISSOCIATION OF THE INTRAMOLECULARLY CLEAVED N- AND C-TERMINAL FRAGMENTS OF ADHESION G PROTEIN-COUPLED RECEPTOR GPR133 (ADGRD1) INCREASES ITS CANONICAL SIGNALING IN GLIOBLASTOMA

10. Exogenous Gene Transmission of Isocitrate Dehydrogenase 2 Mimics Ischemic Preconditioning Protection

11. Low-Grade Astrocytoma Mutations in IDH1, P53, and ATRX Cooperate to Block Differentiation of Human Neural Stem Cells via Repression of SOX2

12. Mutant Isocitrate Dehydrogenase Inhibitors as Targeted Cancer Therapeutics

13. Functional impact of intramolecular cleavage and dissociation of adhesion G protein–coupled receptor GPR133 (ADGRD1) on canonical signaling

14. Molecular Pathogenesis of Low-Grade Glioma

15. Direct RNA sequencing on nanopore arrays redefines the transcriptional complexity of a viral pathogen

16. Modeling Glioma with Human Embryonic Stem Cell-Derived Neural Lineages

17. Modeling Glioma with Human Embryonic Stem Cell-Derived Neural Lineages

18. CSIG-21. DE-ORPHANIZING GPR133 - AN ADHESION GPCR REQUIRED FOR GLIOBLASTOMA PROGRESSION

19. STEM-17. LOW GRADE ASTROCYTOMA MUTATIONS COOPERATE TO DISRUPT SOX2 GENOMIC ARCHITECTURE AND BLOCK DIFFERENTIATION VIA PREVIOUSLY UNIDENTIFIED ENHANCER ELEMENTS

20. Hydrodynamic delivery of mitochondrial genes in vivo protects against moderate ischemia‐reperfusion injury in the rat kidney (690.17)

21. 378. Isocitrate Dehydrogenase 2 Overexpression Ameliorates Ischemia Reperfusion Injury to the Kidney

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