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Imaging Ca2+ Dynamics in Cone Photoreceptor Axon Terminals of the Mouse Retina
Published on: May 6, 2015
Excessive tubulin glutamylation leads to progressive cone-rod dystrophy and loss of outer segment integrity
Rawaa Aljammal1,2, Thamaraiselvi Saravanan1,2, Tongju Guan1,2
1Department of Biochemistry and Molecular Medicine, School of Medicine, West Virginia University, 64 Medical Center Dr., Morgantown, WV 26506, United States.
Abstract:
Mutations in Cytosolic Carboxypeptidase-like Protein 5 (CCP5) are associated with vision loss in humans. To decipher the mechanisms behind CCP5-associated blindness, we generated a novel mouse model lacking CCP5. In this model, we found that increased tubulin glutamylation led to progressive cone-rod dystrophy, with cones showing a more pronounced and earlier functional loss than rod photoreceptors. The observed functional reduction was not due to cell death, levels, or the mislocalization of major phototransduction proteins. Instead, the increased tubulin glutamylation caused shortened photoreceptor axonemes and the formation of numerous abnormal membranous whorls that disrupted the integrity of photoreceptor outer segments (OS). Ultimately, excessive tubulin glutamylation led to the progressive loss of photoreceptors, affecting cones more severely than rods. Our results highlight the importance of maintaining tubulin glutamylation for normal photoreceptor function. Furthermore, we demonstrate that murine cone photoreceptors are more sensitive to disrupted tubulin glutamylation levels than rods, suggesting an essential role for axoneme in the structural integrity of the cone outer segment. This study provides valuable insights into the mechanisms of photoreceptor diseases linked to excessive tubulin glutamylation.
Insights
Mutations in Cytosolic Carboxypeptidase-like Protein 5 (CCP5) cause vision loss. Our mouse model shows excessive tubulin glutamylation disrupts photoreceptor structure, leading to progressive blindness, especially in cones.
Area of Science:
- Ophthalmology
- Cell Biology
- Genetics
Background:
- Mutations in Cytosolic Carboxypeptidase-like Protein 5 (CCP5) are linked to human vision loss.
- Understanding the molecular mechanisms of CCP5-associated blindness is crucial for developing therapeutic strategies.
Purpose of the Study:
- To investigate the functional consequences of CCP5 deficiency in photoreceptors.
- To elucidate the role of tubulin glutamylation in photoreceptor degeneration.
Main Methods:
- Generated a novel mouse model lacking the CCP5 gene.
- Analyzed photoreceptor structure, function, and protein localization using various microscopy and biochemical techniques.
Main Results:
- Increased tubulin glutamylation in CCP5-deficient mice caused progressive cone-rod dystrophy.
- Photoreceptor dysfunction resulted from shortened axonemes and abnormal membranous whorls, not cell death or protein mislocalization.
- Cone photoreceptors exhibited more severe and earlier functional loss than rod photoreceptors.
Conclusions:
- Proper tubulin glutamylation is essential for photoreceptor outer segment integrity and function.
- Murine cone photoreceptors are particularly sensitive to disruptions in tubulin glutamylation.
- This study offers insights into photoreceptor diseases associated with altered tubulin modification.
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