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One or more keywords matched the following properties of Ramos, Joe
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overview My lab’s mission is to determine the underlying mechanisms that control cancer cell invasion and to exploit this knowledge in drug development. Currently we are examining the dysregulation of cell signaling in glioblastoma, skin cancer, and kidney cancer and developing drugs to block growth and invasion of these tumors. Because of my research, we better understand how cell adhesion mechanisms drive developmental and pathological processes and have validated some of these mechanisms as targets for novel therapeutic interventions. Working with collaborators I have identified important spatio-temporal regulation of integrin mediated cell adhesion and signaling during gastrulation and muscle development. I elucidated underlying mechanisms mediating adhesion changes during epithelial to mesenchymal transitions. Our work on the signaling that regulates adhesive changes led to the identification of the death effector domain containing protein PEA-15 as a potent regulator of ERK1/2 and thereby integrin activity. We further identified ERK-dependent physiological and pathological effects of PEA-15. In examining the molecular mechanisms by which PEA15 works we found that it also interacts with the kinase RSK2 and acts as a scaffold to direct ERK to RSK2 and enhance RSK2 activity. We defined RSK2 as a primary mediator of Ras signals to integrins and an essential regulator of integrin activation and cell migration. Finally, in our collaborations with chemists we have developed new anti-cancer drug leads (GBM and Kidney) from organometallic and natural product structures.
One or more keywords matched the following items that are connected to Ramos, Joe
Item TypeName
Concept Genes, ras
Concept Proto-Oncogene Proteins p21(ras)
Concept ras Proteins
Concept Proto-Oncogene Proteins c-bcl-2
Concept Proto-Oncogene Proteins c-sis
Concept Proto-Oncogene Proteins c-akt
Academic Article The death effector domain of PEA-15 is involved in its regulation of integrin activation.
Academic Article Death effector domain protein PEA-15 potentiates Ras activation of extracellular signal receptor-activated kinase by an adhesion-independent mechanism.
Academic Article Identification of cell signaling molecules by expression cloning.
Academic Article Phosphoprotein enriched in astrocytes-15 kDa expression inhibits astrocyte migration by a protein kinase C delta-dependent mechanism.
Academic Article R-Ras regulates migration through an interaction with filamin A in melanoma cells.
Academic Article A phospholipase C?1-activated pathway regulates transcription in human vascular smooth muscle cells.
Academic Article PEA-15 potentiates H-Ras-mediated epithelial cell transformation through phospholipase D.
Academic Article RSK2 protein suppresses integrin activation and fibronectin matrix assembly and promotes cell migration.
Academic Article Targeted deletion of RasGRP1 impairs skin tumorigenesis.
Academic Article Bit-1 is an essential regulator of myogenic differentiation.
Grant RSK-2 regulates integrin-mediated adhesion and migration
Grant Regulation of Cell Signaling and Adhesion
Grant Regulation of tumor promotion by RasGRP1
Grant Ras activation pathways in UVR-induced epidermal transformation
Search Criteria
  • Proto Oncogene Proteins
  • p21
  • ras
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