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Diabetes 51:2804-2810, 2002
© 2002 by the American Diabetes Association, Inc.

Diacylglycerol Production and Protein Kinase C Activity Are Increased in a Mouse Model of Diabetic Embryopathy

Yuji Hiramatsu1,2,4, Naotaka Sekiguchi2,3, Michio Hayashi2,3, Keiji Isshiki2,3, Tamotsu Yokota2,3, George L. King2,3, and Mary R. Loeken1,3

1 Section on Cellular and Molecular Physiology, Joslin Diabetes Center, Boston, Massachusetts
2 Section on Vascular Cell Biology, Joslin Diabetes Center, Boston, Massachusetts
3 Department of Medicine, Harvard Medical School, Boston, Massachusetts
4 Department of Obstetrics and Gynecology, Okayama University Graduate School of Medicine and Dentistry, Okayama, Japan

Activation of the diacylglycerol-protein kinase C (DAG-PKC) cascade by excess glucose has been implicated in vascular complications of diabetes. Its involvement in diabetic embryopathy has not been established. We examined DAG production and PKC activities in embryos and decidua of streptozotocin (STZ)-diabetic or transiently hyperglycemic mice during neural tube formation. STZ diabetes significantly increased DAG and total PKC activity in decidua (1.5- and 1.4-fold, respectively) and embryos (1.7- and 1.3-fold, respectively) on day 9.5. Membrane-associated PKC {alpha}, ßII, {delta}, and {zeta} were increased in decidua by 1.25- to 2.8-fold. Maternal hyperglycemia induced by glucose injection on day 7.5, the day before the onset of neural tube formation, also increased DAG, PKC activity, and PKC isoforms (1.1-, 1.6-, and 1.5-fold, respectively) in the embryo on day 9.5. Notably, membrane-associated PKC activity was increased 24-fold in embryos of diabetic mice with structural defects. These data indicate that hyperglycemia just before organogenesis activates the DAG-PKC cascade and is correlated with congenital defects.



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Copyright © 2002 by the American Diabetes Association.