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Published on: January 7, 2013
Starvation reduces pyruvate dehydrogenase phosphate phosphatase activity in rat kidney
1Department of Biochemistry, Faculty of Medical Sciences, University of the West Indies, St. Augustine, Trinidad, West Indies.
Insights
Starvation reduces kidney pyruvate dehydrogenase complex (PDC) activation by decreasing PDHP phosphatase activity, an effect reversed by insulin and glucose. This impacts cellular energy regulation in starved rats.
Area of Science:
- Biochemistry
- Cellular Metabolism
- Enzymology
Background:
- Pyruvate dehydrogenase complex (PDC) activity is regulated by phosphorylation and dephosphorylation.
- PDHP phosphatase activates PDC by removing phosphate groups.
- Nutritional status, such as starvation, can influence enzyme activity and regulation.
Purpose of the Study:
- To investigate the effect of starvation on pyruvate dehydrogenase complex (PDC) activation in rat kidneys.
- To determine the role of PDHP phosphatase activity in starvation-induced changes in PDC activation.
- To explore the influence of insulin and glucose on PDHP phosphatase activity in starved rats.
Main Methods:
- In vitro activation of phosphorylated PDC (PDHP) using PDHP phosphatase from rat kidneys.
- Measurement of PDC activity (PDCa) and total activity (PDCt) under varying Mg2+ concentrations.
- Incubation of renal PDHP phosphatase with pig heart PDC in the presence of divalent cations and okadaic acid.
Main Results:
- Starvation for 48 hours decreased the rate of PDC activation and increased the Mg2+ requirement for half-maximal activation.
- PDHP phosphatase activity was reduced in kidneys of starved rats.
- Insulin and glucose administration to starved rats prevented the reduction in PDHP phosphatase activity.
Conclusions:
- Starvation alters PDC regulation in rat kidneys, partly due to reduced PDHP phosphatase activity.
- Insulin and glucose play a role in restoring PDHP phosphatase activity in starved animals.
- Divalent cation-independent PDHP phosphatase activity may differ between fed and starved animals, contributing to altered PDC behavior.
Abstract:
Pyruvate dehydrogenase complex (PDC) from rat kidney or pig heart previously inactivated by phosphorylation (PDHP) was activated in vitro by PDHP phosphatase from kidneys of starved or fed rats. Starvation for 48 h of the rats from which the PDC was prepared led to a decrease in the rate of activation of PDC at early time periods (< 2 min), particularly at submaximal concentrations of Mg2+. Using intact permeable kidney mitochondria incubated for 15 sec, it was found that starvation of rats more than doubled the Mg2+ concentration at which the half maximal increment of PDC activity (PDCa) was observed. Reduction of PDHP phosphatase activity due to starvation was also apparent when phosphatase was separated from PDC and recombined with PDC from the same or different animals. Intraperitoneal injection of insulin and glucose 1 h before sacrifice of starved rats prevented the reduction of PDHP phosphatase activity whether or not protein synthesis was inhibited. The effect of insulin in restoration of PDHP phosphatase activity of starved rats was not mimicked by 5-methylpyrazole 3-carboxylic acid, an inhibitor of lipolysis. When renal PDHP phosphatase was incubated with pig heart PDC in the presence of 10 mM Mg2+ and 0.1 mM Ca2+ the increment in PDCa, in 1 min was 30% of fully activated PDC activity (PDCt) observed after 15 min. Removal of divalent cations did not affect the increment in 1 min but prevented further increments. Conversely okadaic acid diminished 1 min increment but did not disturb PDCt. It is suggested that the different behaviour of renal PDC from fed and starved animals may partly be due to different divalent cation independent PDHP phosphatase activity.
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