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SUMOylation of pancreatic glucokinase regulates its cellular stability and activity.


ABSTRACT: Glucokinase is the predominant hexokinase expressed in hepatocytes and pancreatic ?-cells, with a pivotal role in regulating glucose-stimulated insulin secretion, illustrated by glucokinase gene mutations causing monogenic diabetes and congenital hyperinsulinemic hypoglycemia. A complex tissue-specific network of mechanisms regulates this enzyme, and a major unanswered question in glucokinase biology is how post-translational modifications control the function of the enzyme. Here, we show that the pancreatic isoform of human glucokinase is SUMOylated in vitro, using recombinant enzymes, and in insulin-secreting model cells. Three N-terminal lysines unique for the pancreatic isoform (Lys-12/Lys-13 and/or Lys-15) may represent one SUMOylation site, with an additional site (Lys-346) common for the pancreatic and the liver isoform. SUMO-1 and E2 overexpression stabilized preferentially the wild-type human pancreatic enzyme in MIN6 ?-cells, and SUMOylation increased the catalytic activity of recombinant human glucokinase in vitro and also of glucokinase in target cells. Small ubiquitin-like modifier conjugation represents a novel form of post-translational modification of the enzyme, and it may have an important regulatory function in pancreatic ?-cells.

SUBMITTER: Aukrust I 

PROVIDER: S-EPMC3581398 | biostudies-literature | 2013 Feb

REPOSITORIES: biostudies-literature

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SUMOylation of pancreatic glucokinase regulates its cellular stability and activity.

Aukrust Ingvild I   Bjørkhaug Lise L   Negahdar Maria M   Molnes Janne J   Johansson Bente B BB   Müller Yvonne Y   Haas Wilhelm W   Gygi Steven P SP   Søvik Oddmund O   Flatmark Torgeir T   Kulkarni Rohit N RN   Njølstad Pål R PR  

The Journal of biological chemistry 20130107 8


Glucokinase is the predominant hexokinase expressed in hepatocytes and pancreatic β-cells, with a pivotal role in regulating glucose-stimulated insulin secretion, illustrated by glucokinase gene mutations causing monogenic diabetes and congenital hyperinsulinemic hypoglycemia. A complex tissue-specific network of mechanisms regulates this enzyme, and a major unanswered question in glucokinase biology is how post-translational modifications control the function of the enzyme. Here, we show that t  ...[more]

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