Veith Thomas, Brauns Jan, Weisheit Wolfram, Mittag Maria, Büchel Claudia
Institute for Molecular Bio Sciences, Johann Wolfgang Goethe-University, SiesmayerstraBe 70, D-60323 Frankfurt am Main, Germany.
Biochim Biophys Acta. 2009 Jul;1787(7):905-12. doi: 10.1016/j.bbabio.2009.04.006. Epub 2009 May 3.
Thylakoids of the diatom Cyclotella meneghiniana were separated by discontinuous gradient centrifugation into photosystem (PS) I, PSII, and fucoxanthin-chlorophyll protein (FCP) fractions. FCPs are homologue to light harvesting complexes of higher plants with similar function in e.g. brown algae and diatoms. Still, it is unclear if FCP complexes are specifically associated with either PSI or PSII, or if FCP complexes function as one antenna for both photosystems. However, a trimeric FCP complex, FCPa, and a higher FCP oligomer, FCPb, have been described for C. meneghiniana, already. In this study, biochemical and spectroscopical evidences are provided that reveal a different subset of associated Fcp polypeptides within the isolated photosystem complexes. Whereas the PSII associated Fcp antenna resembles FCPa since it contains Fcp2 and Fcp6, at least three different Fcp polypeptides are associated with PSI. By re-solubilisation and a further purification step Fcp polypeptides were partially removed from PSI and both fractions were analysed again by biochemical and spectroscopical means, as well as by HPLC. Thereby a protein related to Fcp4 and a so far undescribed 17 kDa Fcp were found to be strongly coupled to PSI, whereas presumably Fcp5, a subunit of the FCPb complex, is only loosely bound to the PSI core. Thus, an association of FCPb and PSI is assumed.
通过不连续梯度离心法将硅藻小环藻的类囊体分离成光系统(PS)I、PSII和岩藻黄质-叶绿素蛋白(FCP)组分。FCP与高等植物的捕光复合体同源,在例如褐藻和硅藻中具有相似功能。然而,目前尚不清楚FCP复合体是否与PS I或PS II特异性相关,或者FCP复合体是否作为两个光系统的一个天线发挥作用。不过,已经报道了小环藻的三聚体FCP复合体FCPa和更高的FCP寡聚体FCPb。在本研究中,提供了生化和光谱学证据,揭示了分离的光系统复合体内相关Fcp多肽的不同子集。与PSII相关的Fcp天线类似于FCPa,因为它包含Fcp2和Fcp6,而至少有三种不同的Fcp多肽与PS I相关。通过重新溶解和进一步纯化步骤,从PS I中部分去除了Fcp多肽,然后通过生化和光谱学方法以及HPLC再次分析这两个组分。由此发现一种与Fcp4相关的蛋白质和一种迄今未描述的17 kDa Fcp与PS I紧密结合,而推测FCPb复合体的一个亚基Fcp5仅松散地结合在PS I核心上。因此,假定FCPb与PS I存在关联。