Genetically engineered mice for combinatorial cardiovascular optobiology.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 34711305.
- Also identified by DOI 10.7554/eLife.67858 and PMC identifier 8555989.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Optogenetic effectors and sensors provide a novel real-time window into complex physiological processes, enabling determination of molecular signaling processes within functioning cellular networks. However, the combination of these optical tools in mice is made practical by construction of genetic lines that are optically compatible and genetically tractable. We present a new toolbox of 21 mouse lines with lineage-specific expression of optogenetic effectors and sensors for direct biallelic combination, avoiding the multiallelic requirement of Cre recombinase -mediated DNA recombination, focusing on models relevant for cardiovascular biology. Optogenetic effectors (11 lines) or Ca<sup>2+</sup> sensors (10 lines) were selectively expressed in cardiac pacemaker cells, cardiomyocytes, vascular endothelial and smooth muscle cells, alveolar epithelial cells, lymphocytes, glia, and other cell types. Optogenetic effector and sensor function was demonstrated in numerous tissues. Arterial/arteriolar tone was modulated by optical activation of the second messengers InsP<sub>3</sub> (optoα1AR) and cAMP (optoß2AR), or Ca<sup>2+</sup>-permeant membrane channels (CatCh2) in smooth muscle (<i>Acta2</i>) and endothelium (<i>Cdh5</i>). Cardiac activation was separately controlled through activation of nodal/conducting cells or cardiac myocytes. We demonstrate combined effector and sensor function in biallelic mouse crosses: optical cardiac pacing and simultaneous cardiomyocyte Ca<sup>2+</sup> imaging in <i>Hcn4</i><sup>BAC</sup>-CatCh2/<i>Myh6</i>-GCaMP8 crosses. These experiments highlight the potential of these mice to explore cellular signaling in vivo, in complex tissue networks.
Medical subject headings
- Gene Expression
- Mice
- Optogenetics