Barjaktarović Zarko, Nordheim Alfred, Lamkemeyer Tobias, Fladerer Claudia, Madlung Johannes, Hampp Rüdiger
University of Tübingen, Botany Institute, Physiological Ecology of Plants, Auf der Morgenstelle 1, D-72076 Tübingen, Germany.
J Exp Bot. 2007;58(15-16):4357-63. doi: 10.1093/jxb/erm302.
In previous studies it has been shown that callus cell cultures of Arabidopsis thaliana respond to changes in gravitational field strengths by altered gene expression. In this study an investigation was carried out into how different g conditions affect the proteome of such cells. For this purpose, callus cells were exposed to 8 g (centrifugation) and simulated microgravity (2-D clinorotation: fast rotating clinostat, yielding 0.0016 g at maximum; and 3-D random positioning) for up to 16 h. Extracts containing total soluble protein were subjected to 2-D SDS-PAGE. Image analysis of Sypro Ruby-stained gels showed that approximately 28 spots reproducibly and significantly (P <0.05) changed in amount after 2 h of hypergravity (18 up- and 10 down-regulated). These spots were analysed by electrospray ionization tandem mass spectrometry (ESI-MS/MS). In the case of 2-D clinorotation, 19 proteins changed in a manner similar to hypergravity, while random positioning affected only eight spots. Identified proteins were mainly stress related, and are involved in detoxification of reactive oxygen species, signalling, and calcium binding. Surprisingly, centrifugation and clinorotation showed homologies which were not detected for random positioning. The data indicate that simulation of weightlessness is different between clinorotation and random positioning.
在先前的研究中已经表明,拟南芥愈伤组织细胞培养物会通过改变基因表达来响应重力场强度的变化。在本研究中,对不同重力条件如何影响此类细胞的蛋白质组进行了调查。为此,将愈伤组织细胞暴露于8g(离心)和模拟微重力(二维回转:快速旋转的回转器,最大产生0.0016g;以及三维随机定位)下长达16小时。含有总可溶性蛋白质的提取物进行二维SDS-PAGE。对Sypro Ruby染色凝胶的图像分析表明,在超重力处理2小时后,约28个斑点的量可重复且显著(P<0.05)变化(18个上调和10个下调)。通过电喷雾电离串联质谱(ESI-MS/MS)对这些斑点进行分析。在二维回转的情况下,19种蛋白质的变化方式与超重力相似,而随机定位仅影响8个斑点。鉴定出的蛋白质主要与应激相关,参与活性氧的解毒、信号传导和钙结合。令人惊讶的是,离心和回转显示出随机定位未检测到的同源性。数据表明,回转和随机定位之间失重模拟是不同的。