Generation of knock-in mice carrying third cones with spectral sensitivity different from S and L cones
スポンサーリンク
概要
- 論文の詳細を見る
Red-green color vision in primates is unique in the sense that it is mediated by two photoreceptor cells that are indistinguishable in all aspects except for their visual pigments. In order to generate an animal model for investigation of the interaction between red-green inputs at the molecular level, we applied knock-in technology and X-chromosome inactivation machinery to make a mouse model with cone cells possessing visual pigments with different spectral sensitivities. We introduced a S308A point mutation into the Green opsin gene allele on the X-chromosome. This manipulation generated a 24 nm red-shift of absorption maximum in the cone pigment with negligible functional differences in other molecular properties. Amplitudes of responses in ERG and ganglion cell recordings of homozygotes were similar to those of wild-types, although the spectral sensitivities differed. Heterozygotes showed variable spectral sensitivities of ganglion cell responses due to the different integration of the native and the S308A cone inputs on the dendritic fields. In situ hybridization experiments showed that cone cells with respective pigments formed patch-like clusters of specific L cone-types, approximately 30 mu m in diameter, which were randomly distributed in the dorsal region of the retinas. Since the patch-like clustering was arranged by X-inactivation, such clustering could be present in the peripheral retinas of New World monkeys with polymorphic L pigments, indicating that our mice would be a suitable model to study evolution of the mammalian color vision system.
- 社団法人日本動物学会の論文
- 2005-10-25
著者
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Hasegawa Jun
Department of Anesthesiology, Tokai University School of Medicine
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Shichida Yoshinori
Department of Biophysics, Graduate School of Science, Kyoto University
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Imai H
Department Of Biophysics Graduate School Of Science Kyoto University:core Reserch For Evolutional Sc
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Imai Hiroo
Department Of Cellular And Molecular Biology Primate Research Institute Kyoto University
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HONDA Yoshihito
Department of Ophthalmology and Visual Sciences, Kyoto University Graduate School of Medicine
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Honda Yoshihito
Department Of Ophthalmology And Visual Science Graduate School Of Medicine Kyoto University
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Imai Hiroo
Department Of Biophysics Graduate School Of Science Kyoto University:core Reserch For Evolutional Sc
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Imai Hiroo
Primate Research Institute Kyoto University
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Imai Hiroo
Department Of Biophysics Graduate School Of Science Kyoto University
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Shichida Yoshinori
Deptartment Of Biophysics Graduate School Of Science Kyoto University And Crest Japan Science And Te
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Shichida Yoshinori
Department Of Biophysics Graduate School Of Science Kyoto University:core Reserch For Evolutional Sc
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Shichida Yoshinori
Department Of Biophysics Graduate School Of Science Kyoto Univ.
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ONISHI Akishi
Department of Biophysics, Graduate School of Science, Kyoto University
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Onishi Akishi
Department Of Biophysics Graduate School Of Science Kyoto University:core Reserch For Evolutional Sc
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Shichida Y
Department Of Biophysics Graduate School Of Science Kyoto University
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TACHIBANA Masao
Department of Psychology, Graduate School of Humanities and Sociology, The University of Tokyo
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Tachibana Masao
Department Of Psychology Graduate School Of Humanities And Sociology The University Od Tokyo
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Tachibana Masao
Department Of Psychology Faculty Of Letters The University Of Tokyo
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Chisaka Osamu
Department of Cell and Developmental Biology, Graduate School of Biostudies, Kyoto University
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Ueda Yoshiki
Department of Ophthalmology and Visual Sciences, Grduate School of Medicine, Kyoto University
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Ueda Yoshiki
Department Of Ophthalmology And Visual Sciences Grduate School Of Medicine Kyoto University
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Chisaka Osamu
Department Of Cell And Development Graduate School Of Biostudies Kyoto University
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Chisaka Osamu
Department Of Biophysics Faculty Of Science Kyoto University
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Hasegawa Jun
Department Of Anesthesiology Tokai University School Of Medicine
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