Related Experiment Video
Updated: Jun 15, 2026

A Practical Approach to Genetic Inducible Fate Mapping: A Visual Guide to Mark and Track Cells In Vivo
Published on: December 30, 2009
An inducible genetic tool for tracking and manipulating specific microglial states in development and disease
Kia M Barclay1,2,3,4, Nora Abduljawad1,2,3,4,5, Zuolin Cheng6
1Department of Neuroscience, Washington University in St. Louis School of Medicine, St. Louis, MO 63110, USA.
Abstract:
Recent single-cell RNA sequencing studies have revealed distinct microglial states in development and disease. These include proliferative region-associated microglia (PAM) in developing white matter and disease-associated microglia (DAM) prevalent in various neurodegenerative conditions. PAM and DAM share a similar core gene signature and other functional properties. However, the extent of the dynamism and plasticity of these microglial states, as well as their functional significance, remains elusive, partly due to the lack of specific tools. Here, we report the generation of an inducible Cre driver line, Clec7a-CreERT2, designed to target PAM and DAM in the brain parenchyma. Utilizing this tool, we profile labeled cells during development and in several disease models, uncovering convergence and context-dependent differences in PAM/DAM gene expression. Through long-term tracking, we demonstrate surprising levels of plasticity in these microglial states. Lastly, we specifically depleted DAM in cuprizone-induced demyelination, revealing their roles in disease progression and recovery.
Insights
Scientists developed a new tool to track specific brain immune cells, proliferative region-associated microglia (PAM) and disease-associated microglia (DAM). This research reveals their surprising adaptability and crucial roles in brain development and neurodegenerative diseases.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Single-cell RNA sequencing identifies distinct microglial states: proliferative region-associated microglia (PAM) in development and disease-associated microglia (DAM) in neurodegeneration.
- PAM and DAM share core gene signatures, but their plasticity and functional roles require further investigation.
- Lack of specific tools hinders the study of PAM and DAM dynamics.
Conclusions:
- The Clec7a-CreERT2 tool enables detailed study of PAM and DAM dynamics.
- Microglial states exhibit remarkable plasticity and context-dependent functions.
- DAM play significant roles in the pathogenesis and resolution of demyelinating diseases.
More Related Videos
Related Concept Videos
In-vitro Mutagenesis
Genetic Screens
Forward genetic screens
Forward or “classical” genetic screens involve creating random mutations in an organism’s DNA using radiation, mutagens, or insertion of additional bases, which result in visible changes...

