Twenty-Seven Tamoxifen-Inducible iCre-Driver Mouse Strains for Eye and Brain, Including Seventeen Carrying a New Inducible-First Constitutive-Ready Allele

Author:

Korecki Andrea J1,Hickmott Jack W12,Lam Siu Ling1,Dreolini Lisa3,Mathelier Anthony11,Baker Oliver41,Kuehne Claudia5,Bonaguro Russell J1,Smith Jillian3,Tan Chin-Vern1,Zhou Michelle1,Goldowitz Daniel12,Deussing Jan M5,Stewart A Francis4,Wasserman Wyeth W12,Holt Robert A236,Simpson Elizabeth M1278

Affiliation:

1. Centre for Molecular Medicine and Therapeutics at BC Children’s Hospital, University of British Columbia, Vancouver, British Columbia V5Z 4H4, Canada

2. Department of Medical Genetics, University of British Columbia, Vancouver, British Columbia V6T 1Z3, Canada

3. Canada’s Michael Smith Genome Sciences Centre, British Columbia Cancer Agency, Vancouver, British Columbia V5Z 4S6, Canada

4. Genomics, BIOTEC, Center for Molecular and Cellular Bioengineering, Technische Universität Dresden, 01307, Germany

5. Max Planck Institute of Psychiatry, Munich 80804, Germany

6. Department of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, British Columbia V5A 1S6, Canada

7. Department of Ophthalmology and Visual Sciences, University of British Columbia, Vancouver, British Columbia V5Z 3N9, Canada

8. Department of Psychiatry, University of British Columbia, Vancouver, British Columbia V6T 2A1, Canada

Abstract

Abstract To understand gene function, the cre/loxP conditional system is the most powerful available for temporal and spatial control of expression in mouse. However, the research community requires more cre recombinase expressing transgenic mouse strains (cre-drivers) that restrict expression to specific cell types. To address these problems, a high-throughput method for large-scale production that produces high-quality results is necessary. Further, endogenous promoters need to be chosen that drive cell type specific expression, or we need to further focus the expression by manipulating the promoter. Here we test the suitability of using knock-ins at the docking site 5′ of Hprt for rapid development of numerous cre-driver strains focused on expression in adulthood, using an improved cre tamoxifen inducible allele (icre/ERT2), and testing a novel inducible-first, constitutive-ready allele (icre/f3/ERT2/f3). In addition, we test two types of promoters either to capture an endogenous expression pattern (MaxiPromoters), or to restrict expression further using minimal promoter element(s) designed for expression in restricted cell types (MiniPromoters). We provide new cre-driver mouse strains with applicability for brain and eye research. In addition, we demonstrate the feasibility and applicability of using the locus 5′ of Hprt for the rapid generation of substantial numbers of cre-driver strains. We also provide a new inducible-first constitutive-ready allele to further speed cre-driver generation. Finally, all these strains are available to the research community through The Jackson Laboratory.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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