In the development of the kidney and in its recovery from injury, a key step in morphogenesis is polarization of the tubule epithelial cells. Polarization of kidney epithelial cells depends on interactions between cells and the extracellular matrix, and on cell-cell contacts. Although the molecules responsible for transducing these adhesive events into morphogenetic signals are unknown, prime candidates are the integrins, a superfamily of cell adhesion molecules. Integrins are known to be receptors for a variety of extracellular matrix proteins and to associate with the actin cytoskeleton. More recently it has been recognized that they are also involved in cell-cell interactions. Other information suggests that integrins may influence cell differentiation and proliferation, possibly through generation of second messengers. Recent evidence suggests that integrins are characteristically expressed in distinct nephron segments and may play a key role during development in the polarization of the condensed mesenchyme. Integrins may also be significant factors in the pathophysiology of acute renal failure. In this project the involvement of integrins in epithelial polarization will be investigated using complementary in vitro and in vivo approaches. The functions of integrins expressed by MDCK cells will be investigated with cell adhesion assays and immunocytochemical and biochemical techniques using subunit-specific monoclonaI and polyclonaI antibodies and cDNA probes (Specific Aim 1A). Integrin expression, distribution, activation, and targeting will be examined during the polarization process and in cells cultured on different substrata and under conditions which perturb cell-cell contacts (Specific Aim lB). The effects of disrupting integrin function on the polarity of MDCK cells will be investigated with antibodies that interfere with integrin ligand binding and by expression of integrin cDNAs and antisense constructs in MDCK cells. (Specific Aim lC). Integrin function during differentiation of the kidney will be studied in mouse embryos, whole organ cultures, and transfer cultures of kidney primordia using blocking antibodies and antisense constructs (Specific Aim 2A). Alterations in integrin expression during regeneration in vivo will be examined in mouse kidneys made ischemic by clamping of the renal artery (Specific Aim 2B). In the long-term, the results of these experiments will provide important information on the molecular interactions responsible for induction of kidney polarization by cell adhesion. These studies will also aid our understanding of how the kidney epithelium develops and recovers from injury.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
1R01DK046768-01A2
Application #
2146017
Study Section
General Medicine B Study Section (GMB)
Project Start
1994-04-01
Project End
1998-03-31
Budget Start
1994-04-01
Budget End
1995-03-31
Support Year
1
Fiscal Year
1994
Total Cost
Indirect Cost
Name
Massachusetts General Hospital
Department
Type
DUNS #
City
Boston
State
MA
Country
United States
Zip Code
02199
Yu, Wei; Datta, Anirban; Leroy, Pascale et al. (2005) Beta1-integrin orients epithelial polarity via Rac1 and laminin. Mol Biol Cell 16:433-45
Zuk, Anna; Matlin, Karl S (2002) Induction of a laminin isoform and alpha(3)beta(1)-integrin in renal ischemic injury and repair in vivo. Am J Physiol Renal Physiol 283:F971-84
Zuk, A; Bonventre, J V; Matlin, K S (2001) Expression of fibronectin splice variants in the postischemic rat kidney. Am J Physiol Renal Physiol 280:F1037-53
Zuk, A; Bonventre, J V; Brown, D et al. (1998) Polarity, integrin, and extracellular matrix dynamics in the postischemic rat kidney. Am J Physiol 275:C711-31
Zinkl, G M; Zuk, A; van der Bijl, P et al. (1996) An antiglycolipid antibody inhibits Madin-Darby canine kidney cell adhesion to laminin and interferes with basolateral polarization and tight junction formation. J Cell Biol 133:695-708
Zuk, A; Matlin, K S (1996) Apical beta 1 integrin in polarized MDCK cells mediates tubulocyst formation in response to type I collagen overlay. J Cell Sci 109 ( Pt 7):1875-89
Hay, E D; Zuk, A (1995) Transformations between epithelium and mesenchyme: normal, pathological, and experimentally induced. Am J Kidney Dis 26:678-90