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1.
Chem Pharm Bull (Tokyo) ; 68(3): 265-272, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-32115534

RESUMO

In optogenetics, red-shifted channelrhodopsins (ChRs) are eagerly sought. We prepared six kinds of new chromophores with one double bond inserted into the polyene side chain of retinal (A1) or 3,4-didehydroretinal (A2), and examined their binding efficiency with opsins (ReaChR and ChrimsonR). All analogs bound with opsins to afford new ChRs. Among them, A2-10ex (an extra double bond is inserted at the C10-C11 position of A2) showed the greatest red-shift in the absorption spectrum of ChrimsonR, with a maximum absorbance at 654 nm (67 nm red-shifted from that of A1-ChrimsonR). Moreover, a long-wavelength spectral boundary of A2-10ex-ChrimsonR was extended to 756 nm, which reached into the far-red region (710-850 nm).


Assuntos
Channelrhodopsins/química , Channelrhodopsins/genética , Retinaldeído/análogos & derivados , Retinaldeído/síntese química , Sítios de Ligação , Channelrhodopsins/metabolismo , Células HEK293 , Humanos , Estrutura Molecular , Retinaldeído/química , Relação Estrutura-Atividade
2.
Biochemistry ; 57(38): 5544-5556, 2018 09 25.
Artigo em Inglês | MEDLINE | ID: mdl-30153419

RESUMO

As optogenetic studies become more popular, the demand for red-shifted channelrhodopsin is increasing, because blue-green light is highly scattered or absorbed by animal tissues. In this study, we developed a red-shifted channelrhodopsin by elongating the conjugated double-bond system of the native chromophore, all -trans-retinal (ATR1). Analogues of ATR1 and ATR2 (3,4-didehydro-retinal) in which an extra C═C bond is inserted at different positions (C6-C7, C10-C11, and C14-C15) were synthesized and introduced into a widely used channelrhodopsin variant, C1C2 (a chimeric protein of channelrhodopsin-1 and channelrhodopsin-2 from Chlamydomonas reinhardtii). C1C2 bearing these retinal analogues as chromophores showed broadened absorption spectra toward the long-wavelength side and photocycle intermediates similar to the conducting state of channelrhodopsin. However, the position of methyl groups on the retinal polyene chain influenced the yield of the pigment, absorption maximum, and photocycle pattern to a variable degree. The lack of a methyl group at position C9 of the analogues considerably decreased the yield of the pigment, whereas a methyl group at position C15 exhibited a large red-shift in the absorption spectra of the C1C2 analogue. Expansion of the chromophore binding pocket by mutation of aromatic residue Phe265 to Ala improved the yield of the pigment bearing elongated ATR1 analogues without a great alteration of the photocycle kinetics of C1C2. Our results show that elongation of the conjugated double-bond system of retinal is a promising strategy for improving the ability of channelrhodopsin to absorb long-wavelength light passing through the biological optical window.


Assuntos
Channelrhodopsins/química , Channelrhodopsins/metabolismo , Chlamydomonas reinhardtii/metabolismo , Retinaldeído/análogos & derivados , Retinaldeído/metabolismo , Animais , Channelrhodopsins/genética , Cinética , Modelos Moleculares , Mutagênese Sítio-Dirigida , Mutação , Conformação Proteica
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