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Cd9 Protects Photoreceptors from Injury and Potentiates Edn2 Expression
Toshiro Iwagawa1, Yuko Aihara1, Daisy Umutoni1
1,.
Purpose:
Cd9 is a tetraspanin membrane protein that plays various roles in tissue development and disease pathogenesis, especially in cancer, but the expression patterns and function of Cd9 in retinal development and disease are not well understood. We asked its roles during retinal photoreceptor degeneration by using CD9-knockout mice.
Methods:
Cd9 knockout mice and rd1 mice were used to examine roles of Cd9 for progression of photoreceptor degeneration. Reverse transcription-polymerase chain reaction and immunohistochemistry were mainly used as analytical methods.
Results:
Cd9 transcripts were only weakly expressed in retina at embryonic day 14, but its expression level subsequently increased and peaked at around postnatal day 12. In 6-week-old female mice derived retina, mRNA expression decreased slightly but was maintained at a significant level. Published RNA-sequencing data and immunohistochemistry indicated that Cd9 was expressed abundantly in Müller glia and weakly in other retinal neurons. Notably, when photoreceptors were damaged, Cd9 expression was increased in rod photoreceptors and decreased in Müller glia. Cd9 knockout mice retinas developed normally; however, once the retina suffered damage, degeneration of photoreceptors was more severe in Cd9 knockout retinas than control retinas. Induction of Edn2, which is known to protect against photoreceptor damage, was severely hampered. In addition, induction of Socs3, which is downstream of gp130 (Il6st), was weaker in Cd9 knockout retinas.
Conclusions:
Taken together, these findings indicate that, although Cd9 was dispensable for normal gross morphological development, it protected rod photoreceptors and enhanced Edn2 expression, possibly through modulation of gp130 signaling.
Insights
Tetraspanin CD9 protein protects rod photoreceptors from degeneration and enhances protective Edn2 expression, possibly via gp130 signaling, despite being dispensable for normal retinal development.
Area of Science:
- Ophthalmology
- Neuroscience
- Cell Biology
Background:
- Tetraspanin CD9 (Cd9) is implicated in various diseases, but its role in retinal development and degeneration remains unclear.
- Understanding Cd9's function in the retina is crucial for developing therapeutic strategies against photoreceptor diseases.
Purpose of the Study:
- To investigate the expression patterns and functional significance of Cd9 during retinal photoreceptor degeneration.
- To elucidate the role of Cd9 in the progression of retinal damage using a mouse model.
Main Methods:
- Utilized CD9-knockout mice and rd1 mice to study photoreceptor degeneration.
- Employed reverse transcription-polymerase chain reaction (RT-PCR) and immunohistochemistry for expression analysis.
- Analyzed RNA-sequencing data to confirm Cd9 expression patterns.
Main Results:
- Cd9 expression in the retina increases postnatally, peaking around postnatal day 12, and is abundant in Müller glia.
- Cd9 knockout mice exhibited more severe photoreceptor degeneration upon retinal damage.
- The induction of protective Edn2 and Socs3 was significantly hampered in Cd9 knockout retinas.
Conclusions:
- Cd9 is essential for protecting rod photoreceptors against damage and enhances Edn2 expression.
- Cd9 likely modulates gp130 signaling to confer protection to photoreceptors.
- Cd9 is dispensable for normal retinal development but plays a critical role in mitigating photoreceptor degeneration.
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