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The function of lactate dehydrogenase A in retinal neurons: implications to retinal degenerative diseases

Ammaji Rajala, Mohd Akbar Bhat, Kenneth Teel, Gopa Kumar Gopinadhan Nair, Lindsey Purcell, Raju V. S. Rajala

2023PNAS Nexus30 citationsDOIOpen Access PDF

Abstract

The postmitotic retina is highly metabolic and the photoreceptors depend on aerobic glycolysis for an energy source and cellular anabolic activities. Lactate dehydrogenase A (LDHA) is a key enzyme in aerobic glycolysis, which converts pyruvate to lactate. Here we show that cell-type-specific actively translating mRNA purification by translating ribosome affinity purification shows a predominant expression of LDHA in rods and cones and LDHB in the retinal pigment epithelium and Müller cells. We show that genetic ablation of LDHA in the retina resulted in diminished visual function, loss of structure, and a loss of dorsal-ventral patterning of the cone-opsin gradient. Loss of LDHA in the retina resulted in increased glucose availability, promoted oxidative phosphorylation, and upregulated the expression of glutamine synthetase (GS), a neuron survival factor. However, lacking LDHA in Müller cells does not affect visual function in mice. Glucose shortage is associated with retinal diseases, such as age-related macular degeneration (AMD), and regulating the levels of LDHA may have therapeutic relevance. These data demonstrate the unique and unexplored roles of LDHA in the maintenance of a healthy retina.

Topics & Concepts

Lactate dehydrogenase ARetinaRetinalGlycolysisBiologyLactate dehydrogenaseAnaerobic glycolysisRetinal degenerationOxidative phosphorylationCell biologyPyruvate dehydrogenase complexBiochemistryNeuroscienceEnzymeRetinal Development and DisordersRetinal Diseases and TreatmentsCellular transport and secretion
The function of lactate dehydrogenase A in retinal neurons: implications to retinal degenerative diseases | Litcius