My long range goal, in the proposed project, is the elucidation of molecular mechanisms governing normal and pathologic expression of the genes for the major human red blood cell membrane skeleton protein spectrin. Alpha and beta spectrin mRNA levels, synthesis and degradation will be measured in normal red cell maturation. These parameters will also be investigated in certain human red blood cell diseases, inherited hemolytic anemias, associated with spectrin deficiency. I will isolate the alpha and beta spectrin gene promoters by molecular cloning. These will be analyzed by restriction mapping and nucleotide sequencing. Functional activity of the spectrin promoters will be studied in erythroid heterologous gene expression systems, using mouse erythroleukemia cells and the interleukin-3 dependent murine stem cell line FDC-Pmix. I will fuse the spectin gene promoters to chloramphenical acetyltransferase genes for ease in quantitation of their biological effects in the heterologous gene expression systems. Experimental mutagenesis of normal spectin promoters will allow detailed molecular dissection of the regions involved in red blood cell-specific gene expression. Promoters from any patients found to have deficient synthesis of spectrin mRNA will be isolated by molecular cloning. These will be investigated by mapping, sequencing, and functional assay in a heterologous gene expression system. It is hoped that these studies will lead to a greater understanding of gene regulation in red blood cell development, illuminate the molecular pathogenesis of inherited hemolytic anemias, and allow improved detection of the responsible genes in man.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
First Independent Research Support & Transition (FIRST) Awards (R29)
Project #
5R29HL039834-05
Application #
3471801
Study Section
Hematology Subcommittee 2 (HEM)
Project Start
1988-07-01
Project End
1993-06-30
Budget Start
1992-07-01
Budget End
1993-06-30
Support Year
5
Fiscal Year
1992
Total Cost
Indirect Cost
Name
University of Minnesota Twin Cities
Department
Type
Schools of Medicine
DUNS #
168559177
City
Minneapolis
State
MN
Country
United States
Zip Code
55455
Wang, D S; Shaw, R; Winkelmann, J C et al. (1994) Binding of PH domains of beta-adrenergic receptor kinase and beta-spectrin to WD40/beta-transducin repeat containing regions of the beta-subunit of trimeric G-proteins. Biochem Biophys Res Commun 203:29-35
Chu, Z L; Wickrema, A; Krantz, S B et al. (1994) Erythroid-specific processing of human beta spectrin I pre-mRNA. Blood 84:1992-9
Winkelmann, J C; Forget, B G (1993) Erythroid and nonerythroid spectrins. Blood 81:3173-85
Ward, J C; Harris, K W; Penny, L A et al. (1992) A structurally abnormal erythropoietin receptor gene in a human erythroleukemia cell line. Exp Hematol 20:371-3
Harris, K W; Mitchell, R A; Winkelmann, J C (1992) Ligand binding properties of the human erythropoietin receptor extracellular domain expressed in Escherichia coli. J Biol Chem 267:15205-9
Porter, G A; Dmytrenko, G M; Winkelmann, J C et al. (1992) Dystrophin colocalizes with beta-spectrin in distinct subsarcolemmal domains in mammalian skeletal muscle. J Cell Biol 117:997-1005
Winkelmann, J C; Penny, L A; Deaven, L L et al. (1990) The gene for the human erythropoietin receptor: analysis of the coding sequence and assignment to chromosome 19p. Blood 76:24-30
Winkelmann, J C; Chang, J G; Tse, W T et al. (1990) Full-length sequence of the cDNA for human erythroid beta-spectrin. J Biol Chem 265:11827-32
Key, N S; Vercellotti, G M; Winkelmann, J C et al. (1990) Infection of vascular endothelial cells with herpes simplex virus enhances tissue factor activity and reduces thrombomodulin expression. Proc Natl Acad Sci U S A 87:7095-9
Winkelmann, J C; Costa, F F; Linzie, B L et al. (1990) Beta spectrin in human skeletal muscle. Tissue-specific differential processing of 3' beta spectrin pre-mRNA generates a beta spectrin isoform with a unique carboxyl terminus. J Biol Chem 265:20449-54