Integrin activation is tightly regulated by intracellular signals, and integrins localize signaling molecules to sites of cell adhesion. These relationships are highly relevant to blood and vascular cells, where integrins regulate growth, differentiation, survival and function. The purpose of this Program Project is to characterize fundamental mechanisms of integrin signaling in blood and vascular cells, with the common goal of identifying general rules of integrin signaling. Project 1 will test the hypothesis that integrin alphaIIbbeta3 utilizes a novel pathway involving protein tyrosine kinases and hematopoietic cell- specific adapter molecules to promote cytoskeletal reorganization in adherent platelets and megakaryocytes. Particular emphasis will be placed on identifying protein-protein interactions that initiate and propagate signal relay form alphaIIbbeta3 to actin. Project 2 will identify and characterize signaling pathways that suppress integrin activation. Special emphasis will be placed on proteins identified in genetic screens to influence integrin activation, including Ras GTPases, MAP kinases, and PEA-15, a death effector, domain-containing protein. Project 3 will test the hypothesis that integrins are components of complex intracellular signaling networks whose spatially and temporally regulated activation governs endothelial cell and monocytic migration. It will determine how these networks regulate localized integrin activity, and how integrins and mechanical forces regulate localized activation of Rac, Cdc42, PAK and ERK kinases to control cell migration. Project 4 will examine relationships between Abl tyrosine kinases and integrin signaling by determining how Abl modulates filopodia formation, cell migration and chemotaxis. It will also determine how integrins stimulate the nuclear export of c-Abl and how they override the inhibition of c-Abl activity by F-actin. These projects will be supported by core units that provide recombinant proteins, cell microinjection and imaging capabilities and administrative coordination. The synergy achieved by this Program will lead to a better understanding of integrin signaling, with implications for hemostasis, vascular biology and blood diseases.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Program Projects (P01)
Project #
5P01HL057900-10
Application #
6870209
Study Section
Heart, Lung, and Blood Initial Review Group (HLBP)
Program Officer
Ganguly, Pankaj
Project Start
1997-04-01
Project End
2007-03-31
Budget Start
2005-04-01
Budget End
2006-03-31
Support Year
10
Fiscal Year
2005
Total Cost
$1,579,363
Indirect Cost
Name
University of California San Diego
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
804355790
City
La Jolla
State
CA
Country
United States
Zip Code
92093
Wilson, RaeAnna; Espinosa-Diez, Cristina; Kanner, Nathan et al. (2016) MicroRNA regulation of endothelial TREX1 reprograms the tumour microenvironment. Nat Commun 7:13597
Liao, Zhongji; Kato, Hisashi; Pandey, Manjula et al. (2015) Interaction of kindlin-2 with integrin ?3 promotes outside-in signaling responses by the ?V?3 vitronectin receptor. Blood 125:1995-2004
Desgrosellier, Jay S; Lesperance, Jacqueline; Seguin, Laetitia et al. (2014) Integrin ?v?3 drives slug activation and stemness in the pregnant and neoplastic mammary gland. Dev Cell 30:295-308
Fitzpatrick, Paul; Shattil, Sanford J; Ablooglu, Ararat J (2014) C-terminal COOH of integrin ?1 is necessary for ?1 association with the kindlin-2 adapter protein. J Biol Chem 289:11183-93
Seguin, Laetitia; Kato, Shumei; Franovic, Aleksandra et al. (2014) An integrin ??-KRAS-RalB complex drives tumour stemness and resistance to EGFR inhibition. Nat Cell Biol 16:457-68
Casar, B; Rimann, I; Kato, H et al. (2014) In vivo cleaved CDCP1 promotes early tumor dissemination via complexing with activated ?1 integrin and induction of FAK/PI3K/Akt motility signaling. Oncogene 33:255-68
Ye, Feng; Petrich, Brian G; Anekal, Praju et al. (2013) The mechanism of kindlin-mediated activation of integrin ?IIb?3. Curr Biol 23:2288-2295
Scheppke, Lea; Murphy, Eric A; Zarpellon, Alessandro et al. (2012) Notch promotes vascular maturation by inducing integrin-mediated smooth muscle cell adhesion to the endothelial basement membrane. Blood 119:2149-58
Cantor, Joseph M; Ginsberg, Mark H (2012) CD98 at the crossroads of adaptive immunity and cancer. J Cell Sci 125:1373-82
Banno, Asoka; Goult, Benjamin T; Lee, HoSup et al. (2012) Subcellular localization of talin is regulated by inter-domain interactions. J Biol Chem 287:13799-812

Showing the most recent 10 out of 79 publications