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Assembly of water-soluble chlorophyll-binding proteins with native hydrophobic chlorophylls in water-in-oil emulsions.
Bednarczyk D, Takahashi S, Satoh H, Noy D. Bednarczyk D, et al. Among authors: takahashi s. Biochim Biophys Acta. 2015 Mar;1847(3):307-313. doi: 10.1016/j.bbabio.2014.12.003. Epub 2014 Dec 12. Biochim Biophys Acta. 2015. PMID: 25511505
Water-soluble chlorophyll-binding proteins from Arabidopsis thaliana and Raphanus sativus target the endoplasmic reticulum body.
Takahashi S, Aizawa K, Nakayama K, Satoh H. Takahashi S, et al. BMC Res Notes. 2015 Aug 20;8:365. doi: 10.1186/s13104-015-1333-3. BMC Res Notes. 2015. PMID: 26289422 Free PMC article.
Chlorophyll a/b binding-specificity in water-soluble chlorophyll protein.
Palm DM, Agostini A, Averesch V, Girr P, Werwie M, Takahashi S, Satoh H, Jaenicke E, Paulsen H. Palm DM, et al. Among authors: takahashi s. Nat Plants. 2018 Nov;4(11):920-929. doi: 10.1038/s41477-018-0273-z. Epub 2018 Oct 8. Nat Plants. 2018. PMID: 30297830
Effect of near-infrared irradiation on photoconversion of the water-soluble chlorophyll-binding protein of Chenopodium album.
Takahashi S, Uchida A, Nakayama K, Satoh H. Takahashi S, et al. Biosci Biotechnol Biochem. 2015;79(3):439-42. doi: 10.1080/09168451.2014.980221. Epub 2014 Nov 17. Biosci Biotechnol Biochem. 2015. PMID: 25402334
Identification of genes encoding photoconvertible (Class I) water-soluble chlorophyll-binding proteins from Chenopodium ficifolium.
Takahashi S, Abe E, Nakayama K, Satoh H. Takahashi S, et al. Biosci Biotechnol Biochem. 2015;79(2):205-10. doi: 10.1080/09168451.2014.972326. Epub 2014 Oct 21. Biosci Biotechnol Biochem. 2015. PMID: 25333387
Cysteine-2 and Cys30 are essential for chlorophyll-binding activity of the water-soluble chlorophyll-binding protein (WSCP) of Chenopodium album.
Takahashi S, Seki Y, Uchida A, Nakayama K, Satoh H. Takahashi S, et al. Biosci Biotechnol Biochem. 2014;78(11):1825-32. doi: 10.1080/09168451.2014.940274. Epub 2014 Jul 25. Biosci Biotechnol Biochem. 2014. PMID: 25060234
Reducing reagents such as β-mercaptoethanol or dithiothreitol inhibit photoconversion, indicating that S-S bridge(s) in CaWSCP are quite important for it. ...Our findings indicated that the S-S bridge between Cys2 and Cys30 in each CaWSCP subuni …
Reducing reagents such as β-mercaptoethanol or dithiothreitol inhibit photoconversion, indicating that S-S bridge(s) in …
Three-step photoconversion of only three subunits of the water-soluble chlorophyll-binding protein tetramer from Chenopodium album.
Takahashi S, Uchida A, Nakayama K, Satoh H. Takahashi S, et al. Protein J. 2014 Aug;33(4):337-43. doi: 10.1007/s10930-014-9565-y. Protein J. 2014. PMID: 24824829
Molecular cloning, characterization and analysis of the intracellular localization of a water-soluble chlorophyll-binding protein (WSCP) from Virginia pepperweed (Lepidium virginicum), a unique WSCP that preferentially binds chlorophyll b in vitro.
Takahashi S, Yanai H, Oka-Takayama Y, Zanma-Sohtome A, Fujiyama K, Uchida A, Nakayama K, Satoh H. Takahashi S, et al. Planta. 2013 Dec;238(6):1065-80. doi: 10.1007/s00425-013-1952-7. Epub 2013 Sep 1. Planta. 2013. PMID: 23995835
The photoconvertible water-soluble chlorophyll-binding protein of Chenopodium album is a member of DUF538, a superfamily that distributes in Embryophyta.
Takahashi S, Yoshikawa M, Kamada A, Ohtsuki T, Uchida A, Nakayama K, Satoh H. Takahashi S, et al. J Plant Physiol. 2013 Nov 15;170(17):1549-52. doi: 10.1016/j.jplph.2013.06.001. Epub 2013 Jun 30. J Plant Physiol. 2013. PMID: 23820553
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