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1.
Bioorg Chem ; 33(1): 34-44, 2005 Feb.
Article in English | MEDLINE | ID: mdl-15668181

ABSTRACT

Mitogen-activated protein kinase phosphatase-4 (MKP-4) is a dual specificity phosphatase, which acts as a negative regulator of insulin-stimulated pathways. Here, we describe expression, purification, and biochemical characterization of MKP-4. We used the Baculovirus expression system and purification with a combination of affinity and gel filtration chromatography to generate pure MKP-4 and MKP-4/p38 complex. Both MKP-4 and the MKP-4/p38 complex exhibited moderate activity toward the surrogate substrates p-nitrophenyl phosphate, 6, 8-difluoro-4-methylumbelliferyl phosphate, and 3-O-methylfluorescein phosphate. The phosphatase activity could be inhibited by peroxovanate, a potent inhibitor of protein tyrosine phosphatases. We further determined kinetic parameters for the MKP-4 and the MKP-4/p38 by using spectrophotometric and fluorescence intensity methods. The MKP-4/p38 complex was found to provide substantially higher phosphatase activity than MKP-4 alone, similar to what has been shown for MKP-3. Our data allow the configuration of screens for modulators of MKP-4 activity.


Subject(s)
Gene Expression Regulation , Protein Tyrosine Phosphatases , Cells, Cultured , Dual-Specificity Phosphatases , Electrophoresis, Polyacrylamide Gel , Humans , Hydrogen-Ion Concentration , Inhibitory Concentration 50 , Insulin/metabolism , Kinetics , Mitogen-Activated Protein Kinase 3/metabolism , Mitogen-Activated Protein Kinase Phosphatases , Phosphoprotein Phosphatases , Protein Tyrosine Phosphatases/antagonists & inhibitors , Protein Tyrosine Phosphatases/genetics , Protein Tyrosine Phosphatases/isolation & purification , Protein Tyrosine Phosphatases/metabolism , Spectrometry, Fluorescence , Substrate Specificity , p38 Mitogen-Activated Protein Kinases/metabolism
2.
J Biol Chem ; 279(14): 13976-83, 2004 Apr 02.
Article in English | MEDLINE | ID: mdl-14722102

ABSTRACT

Glucose is the main physiological stimulus for insulin biosynthesis and secretion by pancreatic beta-cells. Glucose-6-phosphatase (G-6-Pase) catalyzes the dephosphorylation of glucose-6-phosphate to glucose, an opposite process to glucose utilization. G-6-Pase activity in pancreatic islets could therefore be an important factor in the control of glucose metabolism and, consequently, of glucose-dependent insulin secretion. While G-6-Pase activity has been shown to be present in pancreatic islets, the gene responsible for this activity has not been conclusively identified. A homolog of liver glucose-6-phosphatase (LG-6-Pase) specifically expressed in islets was described earlier; however, the authors could not demonstrate enzymatic activity for this protein. Here we present evidence that the previously identified islet-specific glucose-6-phosphatase-related protein (IGRP) is indeed the major islet glucose-6-phosphatase. IGRP overexpressed in insect cells possesses enzymatic activity comparable to the previously described G-6-Pase activity in islets. The K(m) and V(max) values determined using glucose-6-phosphate as the substrate were 0.45 mm and 32 nmol/mg/min by malachite green assay, and 0.29 mm and 77 nmol/mg/min by glucose oxidase/peroxidase coupling assay, respectively. High-throughput screening of a small molecule library led to the identification of an active compound that specifically inhibits IGRP enzymatic activity. Interestingly, this inhibitor did not affect LG-6-Pase activity, while conversely LG-6-Pase inhibitors did not affect IGRP activity. These data demonstrate that IGRP is likely the authentic islet-specific glucose-6-phosphatase catalytic subunit, and selective inhibitors to this molecule can be obtained. IGRP inhibitors may be an attractive new approach for the treatment of insulin secretion defects in type 2 diabetes.


Subject(s)
Diabetes Mellitus, Type 2/metabolism , Islets of Langerhans/enzymology , Proteins/genetics , Proteins/metabolism , Animals , Baculoviridae/genetics , Buffers , COS Cells , Coloring Agents , Dimethyl Sulfoxide/pharmacology , Enzyme Activation/drug effects , Free Radical Scavengers/pharmacology , Gene Expression , Glucose-6-Phosphatase/antagonists & inhibitors , Glucose-6-Phosphatase/metabolism , Humans , Hydrogen-Ion Concentration , Hyperglycemia/metabolism , Hyperglycemia/physiopathology , Insecta , Liver/enzymology , Male , Metals/pharmacology , Mice , Mice, Inbred C57BL , Mice, Obese , RNA, Messenger/analysis , Rosaniline Dyes
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