Kim Da-Eun, Roy Swapan Kumar, Kamal Abu Hena Mostafa, Cho Kun, Kwon Soo Jeong, Cho Seong-Woo, Park Chul-Soo, Choi Jong-Soon, Komatsu Setsuko, Lee Moon-Soon, Woo Sun-Hee
Department of Crop Science, Chungbuk National University, 410 Seongbong-ro, Heungdeok-gu, Cheongju, Chungbuk, 361-763, Korea.
Mol Biol Rep. 2014 Aug;41(8):5359-66. doi: 10.1007/s11033-014-3407-z. Epub 2014 Jun 24.
Mitochondria are important organelles for cellular respiration within the eukaryotic cell and have many important functions including vitamin synthesis, amino acid metabolism and photorespiration. To investigate the mitochondrial proteome of the roots of wheat seedlings, a systematic and targeted analysis were carried out on the mitochondrial proteome from 15 day-old wheat seedling root material. Mitochondria were isolated by Percoll gradient centrifugation; and extracted proteins were disassociated and analyzed by Tricine SDS-PAGE couple to LTQ-FTICR mass spectrometry. From the isolated the sample, 184 proteins were identified which is composed of 140 proteins as mitochondria and 44 proteins as other subcellular proteins that are predicted by the freeware sub-cellular predictor. The identified proteins in mitochondria were functionally classified into 12 classes using the ProtFun 2.2 servers based on biological processes. Proteins were shown to be involved in amino acid biosynthesis (17.1%), biosynthesis of cofactors (6.4%), cell envelope (11.4%), central intermediary metabolism (10%), energy metabolism (20%), fatty acid metabolism (0.7%), purines and pyrimidines (5.7%), regulatory functions (0.7%), replication and transcription (1.4%), translation (22.1%), transport and binding (1.4%), and unknown (2.8%). These results indicate that many of the protein components present and functions of identifying proteins are common to other profiles of mitochondrial proteins performed to date. These results are provided the extensive and noble clues, to our knowledge, of mitochondrial proteins from wheat roots.
线粒体是真核细胞内进行细胞呼吸的重要细胞器,具有许多重要功能,包括维生素合成、氨基酸代谢和光呼吸作用。为了研究小麦幼苗根系的线粒体蛋白质组,对15日龄小麦幼苗根系材料的线粒体蛋白质组进行了系统的靶向分析。通过Percoll梯度离心法分离线粒体;提取的蛋白质经解离后,通过Tricine SDS-PAGE结合LTQ-FTICR质谱进行分析。从分离的样品中,鉴定出184种蛋白质,其中140种为线粒体蛋白,44种为其他亚细胞蛋白,这些是通过免费软件亚细胞预测器预测的。利用ProtFun 2.2服务器根据生物学过程将线粒体中鉴定出的蛋白质功能分为12类。结果表明,这些蛋白质参与氨基酸生物合成(17.1%)、辅因子生物合成(6.4%)、细胞膜(11.4%)、中心中间代谢(10%)、能量代谢(20%)、脂肪酸代谢(0.7%)、嘌呤和嘧啶(5.7%)、调节功能(0.7%)、复制和转录(1.4%)、翻译(22.1%)、运输和结合(1.4%)以及未知功能(2.8%)。这些结果表明,目前鉴定出的蛋白质的许多组成成分和功能与其他已进行的线粒体蛋白质分析结果具有共性。据我们所知,这些结果为小麦根系线粒体蛋白质提供了广泛而有价值的线索。