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1.
Cells ; 12(16)2023 08 10.
Article in English | MEDLINE | ID: mdl-37626853

ABSTRACT

HK2 and PKM2 are two main regulators of aerobic glycolysis. Photoreceptors (PRs) use aerobic glycolysis to produce the biomass necessary for the daily renewal of their outer segments. Previous work has shown that HK2 and PKM2 are important for the normal function and long-term survival of PRs but are dispensable for PR maturation, and their individual loss has opposing effects on PR survival during acute nutrient deprivation. We generated double conditional (dcKO) mice lacking HK2 and PKM2 expression in rod PRs. Western blotting, immunofluorescence, optical coherence tomography, and electroretinography were used to characterize the phenotype of dcKO animals. Targeted and stable isotope tracing metabolomics, qRT-PCR, and retinal oxygen consumption were performed. We show that dcKO animals displayed early shortening of PR inner/outer segments, followed by loss of PRs with aging, much more rapidly than either knockout alone without functional loss as measured by ERG. Significant alterations to central glucose metabolism were observed without any apparent changes to mitochondrial function, prior to PR degeneration. Finally, PR survival following experimental retinal detachment was unchanged in dcKO animals as compared to wild-type animals. These data suggest that HK2 and PKM2 have differing roles in promoting PR neuroprotection and identifying them has important implications for developing therapeutic options for combating PR loss during retinal disease.


Subject(s)
Citric Acid Cycle , Retinal Rod Photoreceptor Cells , Animals , Mice , Metabolomics , Oxygen Consumption , Retina , Animals, Wild
2.
Commun Biol ; 6(1): 408, 2023 04 13.
Article in English | MEDLINE | ID: mdl-37055505

ABSTRACT

Studies of primary visual cortex have furthered our understanding of amblyopia, long-lasting visual impairment caused by imbalanced input from the two eyes during childhood, which is commonly treated by patching the dominant eye. However, the relative impacts of monocular vs. binocular visual experiences on recovery from amblyopia are unclear. Moreover, while sleep promotes visual cortex plasticity following loss of input from one eye, its role in recovering binocular visual function is unknown. Using monocular deprivation in juvenile male mice to model amblyopia, we compared recovery of cortical neurons' visual responses after identical-duration, identical-quality binocular or monocular visual experiences. We demonstrate that binocular experience is quantitatively superior in restoring binocular responses in visual cortex neurons. However, this recovery was seen only in freely-sleeping mice; post-experience sleep deprivation prevented functional recovery. Thus, both binocular visual experience and subsequent sleep help to optimally renormalize bV1 responses in a mouse model of amblyopia.


Subject(s)
Amblyopia , Visual Cortex , Male , Animals , Mice , Amblyopia/therapy , Visual Acuity , Sensory Deprivation/physiology , Visual Cortex/physiology , Disease Models, Animal , Sleep
3.
Invest Ophthalmol Vis Sci ; 62(10): 20, 2021 08 02.
Article in English | MEDLINE | ID: mdl-34410299

ABSTRACT

Purpose: Diabetic retinopathy results in vision loss with changes to both retinal blood vessels and neural retina. Recent studies have revealed that animal models of diabetes demonstrate early loss of visual function. We explored the time course of retinal change in three different mouse models of diabetes in a longitudinal study using in vivo measures of retinal structure (optical coherence tomography [OCT]) and visual function (optomotor and pupillary responses). Methods: OCT analysis of retinal microstructure, optokinetic response as a measure of visual acuity, and pupillary response to light stimulation were compared among the db/db, Ins2Akita, and streptozotocin (STZ)-induced mouse models of diabetes at 1.5, 3, 6, and 9 months of diabetes. Results: The db/db, Ins2Akita, and STZ-induced models of diabetes all exhibited vision loss and retinal thinning as disease progressed. Both structural changes and functional measures were significantly correlated with the blood glucose levels. Despite this, vision loss and retinal thinning were not consistently correlated, except for the inner retinal layer thickness at 6 months of diabetes. Conclusions: This longitudinal study compiled structural measures and functional outcome data for type 1 and 2 diabetes mouse models commonly used for diabetes studies and demonstrated an overall decline in retinal-related health in conjunction with weight change and blood glucose alterations. The relationship between the structural change and functional outcome could be correlative but is not necessarily causative, as retinal thinning was not sufficient to explain visual acuity decline.


Subject(s)
Diabetes Mellitus, Experimental/diagnosis , Diabetic Retinopathy/pathology , Retina/pathology , Retinal Vessels/pathology , Tomography, Optical Coherence/methods , Visual Acuity/physiology , Animals , Diabetes Mellitus, Experimental/physiopathology , Diabetic Retinopathy/physiopathology , Follow-Up Studies , Male , Mice , Mice, Inbred C57BL , Retina/physiopathology , Retinal Vessels/physiopathology
4.
Diabetes ; 70(7): 1549-1560, 2021 07.
Article in English | MEDLINE | ID: mdl-33883214

ABSTRACT

Diabetic retinopathy is one of the leading causes of vision loss and blindness. Extensive preclinical and clinical evidence exists for both vascular and neuronal pathology. However, the relationship of these changes in the neurovascular unit and impact on vision remains to be determined. Here, we investigate the role of tight junction protein occludin phosphorylation at S490 in modulating barrier properties and its impact on visual function. Conditional vascular expression of the phosphorylation-resistant Ser490 to Ala (S490A) form of occludin preserved tight junction organization and reduced vascular endothelial growth factor (VEGF)-induced permeability and edema formation after intraocular injection. In the retinas of streptozotocin-induced diabetic mice, endothelial-specific expression of the S490A form of occludin completely prevented diabetes-induced permeability to labeled dextran and inhibited leukostasis. Importantly, vascular-specific expression of the occludin mutant completely blocked the diabetes-induced decrease in visual acuity and contrast sensitivity. Together, these results reveal that occludin acts to regulate barrier properties downstream of VEGF in a phosphorylation-dependent manner and that loss of inner blood-retinal barrier integrity induced by diabetes contributes to vision loss.


Subject(s)
Blood-Retinal Barrier/physiology , Diabetes Mellitus, Experimental/physiopathology , Diabetic Retinopathy/physiopathology , Occludin/physiology , Visual Acuity , Animals , Leukostasis/prevention & control , Mice , Mice, Inbred C57BL , Permeability , Phosphorylation , Streptozocin , Vascular Endothelial Growth Factor A/physiology
5.
PLoS Genet ; 15(5): e1008130, 2019 05.
Article in English | MEDLINE | ID: mdl-31048900

ABSTRACT

Nanophthalmos is a rare, potentially devastating eye condition characterized by small eyes with relatively normal anatomy, a high hyperopic refractive error, and frequent association with angle closure glaucoma and vision loss. The condition constitutes the extreme of hyperopia or farsightedness, a common refractive error that is associated with strabismus and amblyopia in children. NNO1 was the first mapped nanophthalmos locus. We used combined pooled exome sequencing and strong linkage data in the large family used to map this locus to identify a canonical splice site alteration upstream of the last exon of the gene encoding myelin regulatory factor (MYRF c.3376-1G>A), a membrane bound transcription factor that undergoes autoproteolytic cleavage for nuclear localization. This variant produced a stable RNA transcript, leading to a frameshift mutation p.Gly1126Valfs*31 in the C-terminus of the protein. In addition, we identified an early truncating MYRF frameshift mutation, c.769dupC (p.S264QfsX74), in a patient with extreme axial hyperopia and syndromic features. Myrf conditional knockout mice (CKO) developed depigmentation of the retinal pigment epithelium (RPE) and retinal degeneration supporting a role of this gene in retinal and RPE development. Furthermore, we demonstrated the reduced expression of Tmem98, another known nanophthalmos gene, in Myrf CKO mice, and the physical interaction of MYRF with TMEM98. Our study establishes MYRF as a nanophthalmos gene and uncovers a new pathway for eye growth and development.


Subject(s)
Glaucoma, Angle-Closure/genetics , Hyperopia/genetics , Membrane Proteins/genetics , Microphthalmos/genetics , Retinal Degeneration/genetics , Transcription Factors/genetics , Adult , Animals , Child , Child, Preschool , Exons , Family , Female , Frameshift Mutation/genetics , Genetic Variation/genetics , Glaucoma, Angle-Closure/metabolism , Humans , Hyperopia/metabolism , Male , Membrane Proteins/metabolism , Mice , Mice, Inbred C57BL , Mice, Knockout , Microphthalmos/metabolism , Middle Aged , Pedigree , RNA Splice Sites/genetics , Refractive Errors/genetics , Transcription Factors/metabolism
6.
J Immunol ; 202(4): 1057-1068, 2019 02 15.
Article in English | MEDLINE | ID: mdl-30635390

ABSTRACT

Autoimmune retinopathy (AIR) is a treatable condition that manifests in acute and progressive vision loss in patients. It has recently been determined that AIR is associated with an imbalance of TH1 versus regulatory T cell immunity toward the retinal protein, recoverin. This study describes a new murine model to understand the immunopathology of AIR and its association with T cell responses toward recoverin. Immunization of C57BL/6 mice with recoverin resulted in ocular inflammation including infiltration of CD4+ and CD8+ T lymphocytes, B cells, and CD11b+Ly6C+ inflammatory monocytes in the eyes. Production of IFN-γ and IL-17 from T cells was exacerbated in IL-10 knockout (KO) mice and kinetics of disease development was accelerated. Infiltration of T cells and inflammatory monocytes into the eyes dramatically increased in recoverin-immunized IL-10 KO mice. An immunodominant peptide of recoverin, AG-16, was capable of inducing disease in IL-10 KO mice and resulted in expansion of AG-16 tetramer-specific CD4+ T cells in lymphoid organs and eyes. Adoptive transfer of recoverin-stimulated cells into naive mice was sufficient to induce AIR, and immunization of B cell-deficient mice led to a milder form of the disease. This model supports the hypothesis that recoverin-specific T cell responses are major drivers of AIR pathogenesis and that IL-10 is an important factor in protection.


Subject(s)
Autoimmune Diseases/immunology , Eye/immunology , Interleukin-10/immunology , Recoverin/immunology , Retinal Diseases/immunology , Animals , Eye/pathology , Inflammation/immunology , Interleukin-10/deficiency , Mice , Mice, Inbred C57BL , Mice, Knockout , Monocytes/immunology , Th1 Cells/immunology , Th17 Cells/immunology
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