분자세포학 연구실


번호 제목
30 Wada M., and Kong S.-G. (2018) Actin-mediated movement of chloroplast. Journal of Cell Science 131 (2): jcs210310.
29 Suetsugu N., Takemiya A., Kong S.-G., Higa T., Komatsu A., Shimazaki K., Kohchi T., and Wada M. (2016) RPT2/NCH1 subfamily of NPH3-like proteins is essential for the chloroplast accumulation response in land plants. Pro. Natl Acad. Sci. USA 113 (37):
28 Kong S.-G., and Okajima K. (2016) Diverse photoreceptors and light responses inplants. Journal of Plant Research 129: 111-114.
27 Kong S.-G., Wada M. (2016) Molecular basis ofchloroplast photorelocation movement. Journal of Plant Research 129: 159-166.
26 Kijima S., Hirose K., Kong S.-G., Wada M., and Uyeda T. (2016) Distinct biochemical properties of Arabidopsis thaliana actin isoforms. Plant & Cell Physiology 57 (1): 46-56.
25 *SuetsuguN., *Higa T., *Kong S.-G., and Wada M. (2015) PLASTIDMOVMENT IMPAIRED1 and PLASTID MOVMENT IMPAIRED1-RELATED1. Plant Physiology. 169 (2), 1155-1167. *Co-first authors
24 Nakasone Y., Kawaguchi Y., Kong S.-G., WadaM., and Terazima M. (2014) Photo-induced oligomerization of Arabidopsis thaliana phototropin 2 LOV1.Journal of Physical Chemistry B. 118 (49): 14314-14325.
23 Kong S.-G. and Wada M. (2014) Recent advances in understanding the molecular mechanism ofchloroplast photorelocation movement. Biochimica et Biophysica Acta (BBA)-Bioenergetics 1837 (4): 522-530.
22 Higa T., Suetsugu N., Kong S.-G., and Wada M. (2014) Actin-dependent plastid movement isrequired for motive force generation in directional nuclear movement in plants. Pro. Natl Acad. Sci. USA 111 (1): 4327-4331.
21 *KongS.-G. and Wada M. (2013) Observation of chloroplast-actin filaments inleaves of Arabidopsis. Bio-protocol 3 (24): e1008. http://www.bio-protocol.org/e1008. *Correspondingauthor.
20 Cazzaniga S., Dall’Osto L., Kong S.-G., Wada M., and Bassi R (2013) Interaction betweenavoidance of photon absorption, excess energy dissipation and zeaxanthin synthesis against photoxidative stress in Arabidopsis. Plant Journal 76 (4): 568-579.
19 Kong S.-G., Arai Y., Suetsugu, N., YanagidaT., and Wada M. (2013) Rapid severing and motility of chloroplast-actinfilaments are required for the chloroplast avoidance response in Arabidopsis. Plant Cell 25 (2): 572-590.
18 *Kong S.-G., *Suetsugu N., KikuchiS., Nakai M., Nagatani A., and Wada M. (2013) Bothphototropin 1 and 2 localize on the chloroplast outer membrane with distinctlocalization activity. Plant & Cell Physiology 54 (1): 80-92. *Co-firstauthors
17 *Kong S.-G., Kagawa, T., Wada M., and *Nagatani, A. (2013) A C-terminal membrane association domain of phototropin 2 is necessary for chloroplast movement. Plant & Cell Physiology 54 (1): 57-68. *Co-corresponding authors
16 *Suetsugu, N., *Kong S.-G., Kasahara, M., and Wada M. (2013) Both LOV1 and LOV2 domains of phototropin2function as the photosensory domain for hypocotyl phototropic response in Arabidopsis thaliana. American Journalof Botany 100
15 Shikata H., Shibata M., Ushijima T., Nakashima M., Kong S.-G., Matsuoka K., Lin C., and Matsushita T. (2012). The RS domain of the Arabidopsis splicing factor RRC1 isrequired for phytochrome B signal transduction. Plant Journal 70 (5): 727-738.
14 *Oka Y., *Kong S.-G., *Matsushita T. (2011) Anon-covalently attached chromophore can mediate phytochrome B signaling inArabidopsis. Plant & Cell Physiology 52 (12): 2088-2102. *Co-first authors.
13 Kozuka T., Kong S.-G., Doi M., ShimazakiK.-I., and Nagatani A. (2011) Tissue-autonomous promotion ofpalisade cell development by phototropin 2 in Arabidopsis. Plant Cell 23 (10): 3684-3695.
12 Kong S.-G. and Wada M. (2011) New insights into dynamic actin-based chloroplast movements. Molecular Plant 4 (5): 771-781.
11 Kodama Y., Suetsugu N., Kong S.-G., and Wada M. (2010) Two interactingcoiled-coil proteins, WEB1 and PMI2, maintain the chloroplast photorelocationmovement velocity in Arabidopsis. Pro. Natl Acad. Sci. USA 107 (45):19591-19596.

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