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Abu Hena Mostafa Kamal,Da-Eun Kim,Myeong-Won Oh,Young-Gu Cho,Hong-Sig Kim,Nobuyuki Uozumi,Jong-Soon Choi,Kun Cho,Sun-Hee Woo 한국작물학회 2010 한국작물학회 학술발표대회 논문집 Vol.2010 No.04
To better understanding the function of the luminal sub-organelles within the thylakoid network, we have carried out a systematical analysis and identification of the lumenal proteins in the thylakoid of wheat by using Tricine / 1D-PAGE, and LTQ-ESI-FTICR mass spectrometry followed by SWISS-PROT database searching. We isolation and fractionation these membrane from fully developed wheat leaves using a combination of differential and gradient centrifugation couple to high speed ultra-centrifuge. After collecting all proteins to eliminate possible same proteins, we estimated that there are 407 different proteins including chloroplast, chloroplast stroma, lumenal, and thylakoid membrane proteins excluding 20 proteins, which were identified in nucleus, cytoplasm and mitochondria. A combination of these three programs (PSORT, TargetP, and TMHMM) was found to provide a useful tool for evaluating chloroplast localization, transit peptide, transmembranes, and also could reveal possible alternative processing sites and dual targeting. Finally, we report also sub-cellular location specific protein interaction network using Cytoscape software, which provides further insight into the biochemical pathways of photosynthesis. The present work helps understanding photosynthesis process in wheat at the molecular level and provides a new overview of the biochemical machinery of the thylakoid in wheat.
Iron deficiency regulated OsOPT7 is essential for iron homeostasis in rice
Bashir, Khurram,Ishimaru, Yasuhiro,Itai, Reiko Nakanishi,Senoura, Takeshi,Takahashi, Michiko,An, Gynheung,Oikawa, Takaya,Ueda, Minoru,Sato, Aiko,Uozumi, Nobuyuki,Nakanishi, Hiromi,Nishizawa, Naoko K. Springer-Verlag 2015 Plant Molecular Biology Vol. No.