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1.
Cell Physiol Biochem ; 16(1-3): 87-98, 2005.
Article in English | MEDLINE | ID: mdl-16121037

ABSTRACT

Sheep K-Cl cotransporter-1(shKCC1) cDNA was cloned from kidney by RT-PCR with an open reading frame of 3258 base pairs exhibiting 92%, 90%, 88% and 87% identity with pig, rabbit and human, rat and mouse KCC1 cDNAs, respectively, encoding an approximately 122 kDa polypeptide of 1086-amino acids. Hydropathy analysis reveals the familiar KCC1 topology with 12 transmembrane domains (TMDs) and the hydrophilic NH2-terminal (NTD) and COOH-terminal (CTD) domains both at the cytoplasmic membrane face. However, shKCC1 has two rather than one large extracellular loops (ECL): ECL3 between TMDs 5 and 6, and ECL6, between TMDs 11 and 12. The translated shKCC1 protein differs in 12 amino acid residues from other KCC1s, mainly within the NTD, ECL3, ICL4, ECL6, and CTD. Notably, a tyrosine residue at position 996 replaces aspartic acid conserved in all other species. Human embryonic kidney (HEK293) cells and mouse NIH/3T3 fibroblasts, transiently transfected with shKCCI-cDNA, revealed the glycosylated approximately 150 kDa proteins by Western blots and positive immunofluorescence-staining with polyclonal rabbit anti-ratKCC1 antibodies. ShKCC1 was functionally expressed in NIH/3T3 cells by an elevated basal Cl-dependent K influx measured with Rb as K-congener that was stimulated three-fold by the KCC-activator N-ethylmaleimide.


Subject(s)
Kidney/metabolism , Sheep/genetics , Symporters/genetics , Amino Acid Sequence , Animals , Base Sequence , Cell Line , Chlorides/metabolism , Cloning, Molecular , DNA, Complementary/genetics , Gene Expression , Humans , In Vitro Techniques , Mice , Molecular Sequence Data , NIH 3T3 Cells , Potassium/metabolism , Recombinant Proteins/chemistry , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , Sequence Homology, Amino Acid , Sheep/metabolism , Species Specificity , Symporters/chemistry , Symporters/metabolism , K Cl- Cotransporters
2.
Diabetes ; 52(6): 1519-27, 2003 Jun.
Article in English | MEDLINE | ID: mdl-12765965

ABSTRACT

Increased leukocyte-endothelial cell adhesion is a key early event in the development of retinopathy and atherogenesis in diabetic patients. We recently reported that raised activity of glycosylating enzyme [beta]1,6 acetylglucosaminyltransferase (core 2 GlcNAc-T) is responsible for increased leukocyte-endothelial cell adhesion and capillary occlusion in retinopathy. Here, we demonstrate that elevated glucose increases the activity of core 2 GlcNAc-T and adhesion of human leukocytes to retinal capillary endothelial cells, in a dose-dependent manner, through diabetes-activated serine/threonine protein kinase C beta2 (PKCbeta2)-dependent phosphorylation. This regulatory mechanism, involving phosphorylation of core 2 GlcNAc-T, is also present in polymorphonuclear leukocytes isolated from type 1 and type 2 diabetic patients. Inhibition of PKCbeta2 activation with the specific inhibitor, LY379196, attenuated serine phosphorylation of core 2 GlcNAc-T and prevented increased leukocyte-endothelial cell adhesion. Raised activity of core 2 GlcNAc-T was associated with a threefold increase in O-linked glycosylation of P-selectin glycoprotein ligand-1 on the surface of leukocytes of diabetic patients compared with age-matched control subjects. PKCbeta2-dependent phosphorylation of core 2 GlcNAc-T may thus represent a novel regulatory mechanism for activation of this key enzyme in mediating increased leukocyte-endothelial cell adhesion and capillary occlusion in diabetic retinopathy.


Subject(s)
Capillaries/physiopathology , Cell Adhesion/physiology , Diabetes Mellitus, Type 1/physiopathology , Diabetes Mellitus, Type 2/physiopathology , Diabetic Retinopathy/physiopathology , Endothelium, Vascular/physiology , Leukocytes/physiology , N-Acetylglucosaminyltransferases/metabolism , Protein Kinase C/metabolism , Animals , Capillaries/enzymology , Capillaries/physiology , Cattle , Diabetes Mellitus, Type 1/enzymology , Diabetes Mellitus, Type 2/enzymology , Diabetic Retinopathy/enzymology , Glycated Hemoglobin/metabolism , Humans , Kinetics , Phosphorylation , Protein Kinase C beta , Reference Values , Retinal Vessels/enzymology , Retinal Vessels/physiopathology , U937 Cells
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