Expression of Cre recombinase in retinal Müller cells

Yumi Ueki1, John D Ash, Meili Zhu

  • 1Oklahoma Center for Neuroscience, University of Oklahoma Health Sciences Center, Oklahoma City, OK, USA.

Vision Research
|December 2, 2009
PubMed
Abstract

Insights

A novel transgenic mouse model exhibits Cre recombinase activity in retinal Müller glial cells, enabling conditional gene targeting for studying retinal diseases. This tool is valuable for investigating Müller glia function and maintenance.

Area of Science:

  • Retinal biology
  • Gene targeting
  • Transgenic mouse models

Background:

  • Müller glial cells are crucial for retinal function and maintenance.
  • Conditional gene targeting is essential for studying specific cell functions in vivo.
  • The vitelliform macular dystrophy-2 (VMD2) promoter is a target for RPE-specific gene expression.

Purpose of the Study:

  • To develop an inducible RPE-specific Cre mouse line using the VMD2 promoter.
  • To characterize a mouse line with unexpected Cre activity in Müller glial cells.
  • To evaluate the utility of this mouse line for conditional gene targeting in Müller glia.

Main Methods:

  • Generation of transgenic mice with human P(VMD2)-rtTA and TRE-cre cassettes.
  • Cre expression analysis using a Cre-activatable lacZ reporter (R26R) mouse line.
  • Assessment of Cre-mediated recombination via a floxed interleukin-6 signal transducer (gp130) mouse line.

Main Results:

  • Cre activity was observed in Müller cells and photoreceptors of the neural retina.
  • Cre-mediated recombination initiated by embryonic day 15.
  • Successful deletion of the floxed gp130 gene in 52% of retinal Müller cells.
  • Normal retinal function and morphology in VMD2-cre mice up to 10 months of age.

Conclusions:

  • A transgenic Cre mouse model with activity in retinal Müller cells was successfully generated.
  • This VMD2-driven Cre mouse line is a valuable tool for studying gene activation and inactivation in Müller glia.
  • The model facilitates research into Müller cell biology and its role in retinal health and disease.

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