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Strain Name:

FVB-Tg(ITGAM-DTR/EGFP)34Lan/J

Stock Number:

005515

Availability:

Repository- Live


General Terms and Conditions

Genes & Alleles   GFP;   ITGAM;   DTR;   Tg(ITGAM-DTR/EGFP)34Lan;


Product Information

Strain Details

Type JAX® GEMM® Strain - Coisogenic
Additional information on JAX® GEMM® Strains.
Type JAX® GEMM® Strain - Mutant Strain
Type JAX® GEMM® Strain - Transgenic
Mating SystemHomozygote x Homozygote         (Female x Male)
Specieslaboratory mouse
Donating Investigator Richard Lang,   Cincinnati Children's Hospital
GenerationF?+F6 (27-APR-08)

Strain Description
These transgenic mice have a diphtheria toxin (DT) inducible system that transiently depletes macrophages. The transgene insert contains a fusion product involving simian diphtheria toxin receptor and green fluorescent protein under the control of the human ITGAM (integrin alpha M) promoter (CD11b). RT-PCR analysis of bone marrow macrophages detects specific transgene expression. Cytological analysis of thioglycollate treated peritoneal cells shows the absence of macrophages. Intraperitoneal injection of DT ablates monocyte/macrophage cells in the peritoneal cavity. Mice that are homozygous for the transgene are viable, normal in size and do not display any gross physical or behavioral abnormalities. Transgene expression is not sufficient to be detected by FACS analysis. 12 hours following DT administration all macrophages are ablated in the peritoneum, kidney and ovary. Macrophage population is restored by day 4 following a single intraperitoneal dose of DT. Administration of DT does not affect polymorphonuclear cells. Higher doses (greater than 25ng/g body weight) of DT sickens the mice. This mutant mouse strain may be useful in studies of the specific role of macrophages in the immune response.

Strain Development
A transgenic construct containing sequence encoding DTR/GFP under the control of the human ITGAM (integrin alpha M) promoter was introduced into fertilized FVB/N donor eggs. Founder line 34 was subsequently established.

Gene & Allele Details

Allele Symbol Tg(ITGAM-DTR/EGFP)34Lan
Allele Name transgene insertion 34, Richard A Lang
Common Name(s) CD11b-DTR;
Mutation Made By Richard Lang,   Cincinnati Children's Hospital
Strain of OriginFVB/N
Site of ExpressionInduced in monocytes/macrophages (fluorescence not sufficient for FACS); transient diptheria toxin (DT)-induced ablation of cells.
Expressed Gene GFP, Green Fluorescent Protein, jellyfish
Green Fluorescent Protein (GFP), derived from the jellyfish Aequorea victoria, is a versatile reporter molecule which has found use in many biological applications. The original molecule has been modified in order to enhance its fluorescence intensity (EGFP, enhanced GFP). When utilized in a transgenic construct, tissue expressing sufficient amounts of GFP will fluoresce when exposed to a 488 nm light source.
Expressed Gene DTR, Simian Diphtheria Toxin Receptor,
Promoter ITGAM, integrin, alpha M (complement component 3 receptor 3 subunit), human
General Note Mice carrying this transgene have a diphtheria toxin (DT) inducible system that transiently depletes macrophages. The transgene contains a fusion product involving simian diphtheria toxin receptor and green fluorescent protein under the control of the human ITGAM (integrin alpha M) promoter (CD11b), and human growth hormone sequence. RT-PCR analysis of bone marrow macrophages detects specific transgene expression. Cytological analysis of thioglycollate treated peritoneal cells shows the absence of macrophages. Intraperitoneal injection of DT ablates monocyte/macrophage cells in the peritoneal cavity.
Molecular Note The transgene contains sequence encoding DTR/GFP under the control of the human ITGAM (integrin alpha M) promoter. [J:95141]

Control Information

  Control
   001800 FVB/NJ
 
  Considerations for Choosing Controls

Genotyping Protocols

Fluorescent Proteins

Colony Maintenance

Breeding & HusbandryWhen maintaining a live colony, these mice are bred as homozygotes.
Diet Information LabDiet® 5K52/5K67

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View Strains carrying   Tg(ITGAM-DTR/EGFP)34Lan     (1 strain)

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Strains carrying other alleles of DTR
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View Strains carrying other alleles of DTR     (2 strains)

Additional Web Information

Fluorescent Proteins/lacZ Systems
Genetic Quality Control Annual Report

Animal Health Reports

Room Number           AX12

Research Applications

This mouse can be used to support research in many areas including:

Research Tools
Cell Biology Research
Fluorescent Proteins
Hematological Research
Immunology and Inflammation Research

GFP related

Research Tools
Fluorescent Proteins

References

Selected Reference(s)

Duffield JS; Forbes SJ; Constandinou CM; Clay S; Partolina M; Vuthoori S; Wu S; Lang R; Iredale JP. 2005. Selective depletion of macrophages reveals distinct, opposing roles during liver injury and repair. J Clin Invest 115(1):56-65. [PubMed: 15630444]  [J:95141]

Additional References

Price and Supply Information

Strain Name: FVB-Tg(ITGAM-DTR/EGFP)34Lan/J
Stock Number: 005515

Price Details

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Supply Details

Standard SupplyRepository-Live. No age specifications accepted. Colony sized to produce minimal quantities (typically up to 6 mice) upon order receipt; one order per strain. Expected delivery: 1-3 months. Larger quantities or custom orders arranged upon request.
Supply Notes Usually shipped between four and eight weeks of age.
This strain is included in the Induced Mutant Resource Colony collection.
Genomic DNA is available for this strain from the Mouse DNA Resource.
LicensingSee General Terms and Conditions below for Licensing and Use Restrictions  
Control InformationView Control Information in Strain Details.

General Terms and Conditions

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For additional Licensing and Use Restrictions view the link(s) below:
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The Jackson Laboratory has rigorous genetic quality control and mutant gene genotyping programs to ensure the genetic background of JAX® Mice strains as well as the genotypes of strains with identified molecular mutations. JAX® Mice strains are only made available to researchers after meeting our standards. However, the phenotype of each strain may not be fully characterized and/or captured in the strain data sheets. Therefore, we cannot guarantee a strain's phenotype will meet all expectations. To ensure that JAX® Mice will meet the needs of individual research projects or when requesting a strain that is new to your research, we suggest ordering and performing tests on a small number of mice to determine suitability for your particular project.
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