4.6 Article

The Physiological Effects of Deleting the Mouse Slc30a8 Gene Encoding Zinc Transporter-8 Are Influenced by Gender and Genetic Background

Journal

PLOS ONE
Volume 7, Issue 7, Pages -

Publisher

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0040972

Keywords

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Funding

  1. National Institutes of Health (NIH) [CA68485, DK20593, DK58404, HD15052, DK59637, EY08126, DK92589, DK052068, DK085064, DK043748, DK078188, DK080193, P60 DK20593]
  2. American Diabetes Association [9901-116]
  3. Juvenile Diabetes Research Association [4-2007-1056]
  4. Barbara Davis Center Diabetes and Endocrinology Research Center [P30 DK57516]
  5. JDRF [1-2008-1021]
  6. Vanderbilt Molecular Endocrinology Training Program [5T32 DK07563]
  7. [K01 DK081666]

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Objective: The SLC30A8 gene encodes the islet-specific transporter ZnT-8, which is hypothesized to provide zinc for insulin-crystal formation. A polymorphic variant in SLC30A8 is associated with altered susceptibility to type 2 diabetes. Several groups have examined the effect of global Slc30a8 gene deletion but the results have been highly variable, perhaps due to the mixed 129SvEv/C57BL/6J genetic background of the mice studied. We therefore sought to remove the conflicting effect of 129SvEv-specific modifier genes. Methods: The impact of Slc30a8 deletion was examined in the context of the pure C57BL/6J genetic background. Results: Male C57BL/6J Slc30a8 knockout (KO) mice had normal fasting insulin levels and no change in glucose-stimulated insulin secretion (GSIS) from isolated islets in marked contrast to the similar to 50% and similar to 35% decrease, respectively, in both parameters observed in male mixed genetic background Slc30a8 KO mice. This observation suggests that 129SvEv-specific modifier genes modulate the impact of Slc30a8 deletion. In contrast, female C57BL/6J Slc30a8 KO mice had reduced (similar to 20%) fasting insulin levels, though this was not associated with a change in fasting blood glucose (FBG), or GSIS from isolated islets. This observation indicates that gender also modulates the impact of Slc30a8 deletion, though the physiological explanation as to why impaired insulin secretion is not accompanied by elevated FBG is unclear. Neither male nor female C57BL/6J Slc30a8 KO mice showed impaired glucose tolerance. Conclusions: Our data suggest that, despite a marked reduction in islet zinc content, the absence of ZnT-8 does not have a substantial impact on mouse physiology.

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