The PKG Inhibitor CN238 Affords Functional Protection of Photoreceptors and Ganglion Cells against Retinal Degeneration.
Arianna ToloneWadood HaqAlexandra FachingerAkanksha RoySandeep KeshAndreas RentschSophie WucherpfennigYu ZhuJohn GrotenFrank SchwedeTushar TomarFriedrich W HerbergVasilica NacheFrançois Paquet-DurandPublished in: International journal of molecular sciences (2023)
Hereditary retinal degeneration (RD) is often associated with excessive cGMP signalling in photoreceptors. Previous research has shown that inhibition of cGMP-dependent protein kinase G (PKG) can reduce photoreceptor loss in two different RD animal models. In this study, we identified a PKG inhibitor, the cGMP analogue CN238, which preserved photoreceptor viability and functionality in rd1 and rd10 mutant mice. Surprisingly, in explanted retinae, CN238 also protected retinal ganglion cells from axotomy-induced retrograde degeneration and preserved their functionality. Furthermore, kinase activity-dependent protein phosphorylation of the PKG target Kv1.6 was reduced in CN238-treated rd10 retinal explants. Ca 2+ -imaging on rd10 acute retinal explants revealed delayed retinal ganglion cell repolarization with CN238 treatment, suggesting a PKG-dependent modulation of Kv1-channels. Together, these results highlight the strong neuroprotective capacity of PKG inhibitors for both photoreceptors and retinal ganglion cells, illustrating their broad potential for the treatment of retinal diseases and possibly neurodegenerative diseases in general.
Keyphrases
- protein kinase
- optical coherence tomography
- diabetic retinopathy
- optic nerve
- lymph node metastasis
- induced apoptosis
- nitric oxide
- single cell
- squamous cell carcinoma
- drug induced
- high resolution
- risk assessment
- endoplasmic reticulum stress
- type diabetes
- mesenchymal stem cells
- cell therapy
- bone marrow
- computed tomography
- diabetic rats
- spinal cord injury
- mass spectrometry
- neuropathic pain
- liver failure
- stem cells
- cell death
- body mass index
- metabolic syndrome
- acute respiratory distress syndrome
- intensive care unit
- dual energy
- respiratory failure
- newly diagnosed