Early manifestations and differential gene expression associated with photoreceptor degeneration in Prom1-deficient retina. 2021

Yuka Kobayashi, and Shizuka Watanabe, and Agnes Lee Chen Ong, and Manabu Shirai, and Chiemi Yamashiro, and Tadahiko Ogata, and Fumiaki Higashijima, and Takuya Yoshimoto, and Takahide Hayano, and Yoshiyuki Asai, and Noriaki Sasai, and Kazuhiro Kimura
Department of Ophthalmology, Yamaguchi University Graduate School of Medicine, 1-1-1 Minami-kogushi, Ube 755-0046, Japan.

Retinitis pigmentosa (RP) and macular dystrophy (MD) are characterized by gradual photoreceptor death in the retina and are often associated with genetic mutations, including those in the prominin-1 (Prom1) gene. Prom1-knockout (KO) mice recapitulate key features of these diseases including light-dependent retinal degeneration and constriction of retinal blood vessels. The mechanisms underlying such degeneration have remained unclear, however. We here analysed early events associated with retinal degeneration in Prom1-KO mice. We found that photoreceptor cell death and glial cell activation occur between 2 and 3 weeks after birth. Whereas gene expression was not affected at 2 weeks, the expression of several genes was altered at 3 weeks in the Prom1-KO retina, with the expression of that for endothelin-2 (Edn2) being markedly upregulated. Expression of Edn2 was also induced by light stimulation in Prom1-KO mice reared in the dark. Treatment with endothelin receptor antagonists attenuated photoreceptor cell death, gliosis and retinal vessel stenosis in Prom1-KO mice. Our findings thus reveal early manifestations of retinal degeneration in a model of RP/MD and suggest potential therapeutic agents for these diseases. This article has an associated First Person interview with the first author of the paper.

UI MeSH Term Description Entries
D012160 Retina The ten-layered nervous tissue membrane of the eye. It is continuous with the OPTIC NERVE and receives images of external objects and transmits visual impulses to the brain. Its outer surface is in contact with the CHOROID and the inner surface with the VITREOUS BODY. The outer-most layer is pigmented, whereas the inner nine layers are transparent. Ora Serrata
D012162 Retinal Degeneration A retrogressive pathological change in the retina, focal or generalized, caused by genetic defects, inflammation, trauma, vascular disease, or aging. Degeneration affecting predominantly the macula lutea of the retina is MACULAR DEGENERATION. (Newell, Ophthalmology: Principles and Concepts, 7th ed, p304) Degeneration, Retinal,Degenerations, Retinal,Retinal Degenerations
D000071916 AC133 Antigen A member of the prominin family, AC133 Antigen is a 5-transmembrane antigen occurring as several isoforms produced by alternative splicing which are processed into mature forms. In humans, it is expressed as a subset of CD34 (bright) human hematopoietic stem cells and CD34 positive leukemias. Functionally, it is associated with roles in cell differentiation, proliferation, and apoptosis. Specifically, it regulates the organization of apical plasma membrane in epithelial cells, disk morphogenesis during early retinal development, MAPK and Akt signaling pathways, and in cholesterol metabolism. AC133-1 Antigen,AC133-2 Antigen,AC141 Antigen,CD133 Antigen,Fudenine,PROML1,Prominin,Prominin-1,Prominin-Like PROML1,AC133 1 Antigen,AC133 2 Antigen,Antigen, AC133,Antigen, AC133-1,Antigen, AC133-2,Antigen, AC141,Antigen, CD133,Prominin 1,Prominin Like PROML1
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D012174 Retinitis Pigmentosa Hereditary, progressive degeneration of the retina due to death of ROD PHOTORECEPTORS initially and subsequent death of CONE PHOTORECEPTORS. It is characterized by deposition of pigment in the retina. Pigmentary Retinopathy,Tapetoretinal Degeneration,Pigmentary Retinopathies,Retinopathies, Pigmentary,Retinopathy, Pigmentary,Tapetoretinal Degenerations
D015870 Gene Expression The phenotypic manifestation of a gene or genes by the processes of GENETIC TRANSCRIPTION and GENETIC TRANSLATION. Expression, Gene,Expressions, Gene,Gene Expressions
D051379 Mice The common name for the genus Mus. Mice, House,Mus,Mus musculus,Mice, Laboratory,Mouse,Mouse, House,Mouse, Laboratory,Mouse, Swiss,Mus domesticus,Mus musculus domesticus,Swiss Mice,House Mice,House Mouse,Laboratory Mice,Laboratory Mouse,Mice, Swiss,Swiss Mouse,domesticus, Mus musculus

Related Publications

Yuka Kobayashi, and Shizuka Watanabe, and Agnes Lee Chen Ong, and Manabu Shirai, and Chiemi Yamashiro, and Tadahiko Ogata, and Fumiaki Higashijima, and Takuya Yoshimoto, and Takahide Hayano, and Yoshiyuki Asai, and Noriaki Sasai, and Kazuhiro Kimura
June 1997, Experimental eye research,
Yuka Kobayashi, and Shizuka Watanabe, and Agnes Lee Chen Ong, and Manabu Shirai, and Chiemi Yamashiro, and Tadahiko Ogata, and Fumiaki Higashijima, and Takuya Yoshimoto, and Takahide Hayano, and Yoshiyuki Asai, and Noriaki Sasai, and Kazuhiro Kimura
July 2007, Brain research,
Yuka Kobayashi, and Shizuka Watanabe, and Agnes Lee Chen Ong, and Manabu Shirai, and Chiemi Yamashiro, and Tadahiko Ogata, and Fumiaki Higashijima, and Takuya Yoshimoto, and Takahide Hayano, and Yoshiyuki Asai, and Noriaki Sasai, and Kazuhiro Kimura
February 2004, Investigative ophthalmology & visual science,
Yuka Kobayashi, and Shizuka Watanabe, and Agnes Lee Chen Ong, and Manabu Shirai, and Chiemi Yamashiro, and Tadahiko Ogata, and Fumiaki Higashijima, and Takuya Yoshimoto, and Takahide Hayano, and Yoshiyuki Asai, and Noriaki Sasai, and Kazuhiro Kimura
January 1987, Progress in clinical and biological research,
Yuka Kobayashi, and Shizuka Watanabe, and Agnes Lee Chen Ong, and Manabu Shirai, and Chiemi Yamashiro, and Tadahiko Ogata, and Fumiaki Higashijima, and Takuya Yoshimoto, and Takahide Hayano, and Yoshiyuki Asai, and Noriaki Sasai, and Kazuhiro Kimura
March 2024, The British journal of ophthalmology,
Yuka Kobayashi, and Shizuka Watanabe, and Agnes Lee Chen Ong, and Manabu Shirai, and Chiemi Yamashiro, and Tadahiko Ogata, and Fumiaki Higashijima, and Takuya Yoshimoto, and Takahide Hayano, and Yoshiyuki Asai, and Noriaki Sasai, and Kazuhiro Kimura
May 2006, Neuroscience letters,
Yuka Kobayashi, and Shizuka Watanabe, and Agnes Lee Chen Ong, and Manabu Shirai, and Chiemi Yamashiro, and Tadahiko Ogata, and Fumiaki Higashijima, and Takuya Yoshimoto, and Takahide Hayano, and Yoshiyuki Asai, and Noriaki Sasai, and Kazuhiro Kimura
August 2004, Journal of neurochemistry,
Yuka Kobayashi, and Shizuka Watanabe, and Agnes Lee Chen Ong, and Manabu Shirai, and Chiemi Yamashiro, and Tadahiko Ogata, and Fumiaki Higashijima, and Takuya Yoshimoto, and Takahide Hayano, and Yoshiyuki Asai, and Noriaki Sasai, and Kazuhiro Kimura
January 1998, Folia morphologica,
Yuka Kobayashi, and Shizuka Watanabe, and Agnes Lee Chen Ong, and Manabu Shirai, and Chiemi Yamashiro, and Tadahiko Ogata, and Fumiaki Higashijima, and Takuya Yoshimoto, and Takahide Hayano, and Yoshiyuki Asai, and Noriaki Sasai, and Kazuhiro Kimura
April 2020, Genome biology and evolution,
Yuka Kobayashi, and Shizuka Watanabe, and Agnes Lee Chen Ong, and Manabu Shirai, and Chiemi Yamashiro, and Tadahiko Ogata, and Fumiaki Higashijima, and Takuya Yoshimoto, and Takahide Hayano, and Yoshiyuki Asai, and Noriaki Sasai, and Kazuhiro Kimura
April 2011, Investigative ophthalmology & visual science,
Copied contents to your clipboard!