β-Cell Cre Expression and Reduced Ins1 Gene Dosage Protect Mice From Type 1 Diabetes

Author:

Skovsø Søs1,Overby Peter1,Memar-Zadeh Jasmine1,Lee Jason T C1,Yang Jenny C C1,Shanina Iryna1,Sidarala Vaibhav2,Levi-D’Ancona Elena2,Zhu Jie2,Soleimanpour Scott A2,Horwitz Marc S1,Johnson James D1ORCID

Affiliation:

1. Life Sciences Institute, University of British Columbia , Vancouver, British Columbia V6T 1Z3 , Canada

2. Department of Molecular and Integrative Physiology, Division of Metabolism, Endocrinology, and Diabetes of the Department of Internal Medicine, University of Michigan , Ann Arbor, Michigan 48105 , USA

Abstract

Abstract A central goal of physiological research is the understanding of cell-specific roles of disease-associated genes. Cre-mediated recombineering is the tool of choice for cell type–specific analysis of gene function in preclinical models. In the type 1 diabetes (T1D) research field, multiple lines of nonobese diabetic (NOD) mice have been engineered to express Cre recombinase in pancreatic β cells using insulin promoter fragments, but tissue promiscuity remains a concern. Constitutive Ins1tm1.1(cre)Thor (Ins1Cre) mice on the C57/bl6-J background have high β-cell specificity with no reported off-target effects. We explored whether NOD:Ins1Cre mice could be used to investigate β-cell gene deletion in T1D disease modeling. We studied wild-type (Ins1WT/WT), Ins1 heterozygous (Ins1Cre/WT or Ins1Neo/WT), and Ins1 null (Ins1Cre/Neo) littermates on a NOD background. Female Ins1Neo/WT mice exhibited significant protection from diabetes, with further near-complete protection in Ins1Cre/WT mice. The effects of combined neomycin and Cre knockin in Ins1Neo/Cre mice were not additive to the Cre knockin alone. In Ins1Neo/Cre mice, protection from diabetes was associated with reduced insulitis at age 12 weeks. Collectively, these data confirm previous reports that loss of Ins1 alleles protects NOD mice from diabetes development and demonstrates, for the first time, that Cre itself may have additional protective effects. This has important implications for the experimental design and interpretation of preclinical T1D studies using β-cell-selective Cre in NOD mice.

Funder

Canadian Institutes for Health Research

JDRF Centre of Excellence at UBC

JDRF

National Institutes of Health

Department of Veterans Affairs

Publisher

The Endocrine Society

Subject

Endocrinology

Reference38 articles.

1. Epitope specificity, cytokine production profile and diabetogenic activity of insulin-specific T cell clones isolated from NOD mice;Daniel;Eur J Immunol,1995

2. Acceleration of type 1 diabetes mellitus in proinsulin 2-deficient NOD mice;Thébault-Baumont;J Clin Invest,2003

3. Type 1 diabetes;Atkinson;Lancet,2014

4. Immune interventions to preserve β cell function in type 1 diabetes;Ehlers;J Investig Med,2016

5. Breeding of a non-obese, diabetic strain of mice;Makino;Jikken Dobutsu,1980

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