van der Weij-de Wit Chantal D, Ihalainen Janne A, van de Vijver Edith, D'Haene Sandrine, Matthijs Hans C P, van Grondelle Rienk, Dekker Jan P
Division of Physics and Astronomy, Faculty of Sciences, Vrije Universiteit, De Boelelaan 1081, 1081 HV Amsterdam, The Netherlands.
Biochim Biophys Acta. 2007 Dec;1767(12):1393-400. doi: 10.1016/j.bbabio.2007.10.001. Epub 2007 Oct 14.
Cyanobacteria respond to iron deficiency during growth by expressing the isiA gene, which produces a chlorophyll-carotenoid protein complex known as IsiA or CP43'. Long-term iron deficiency results in the formation of large IsiA aggregates, some of which associate with photosystem I (PSI) while others are not connected to a photosystem. The fluorescence at room temperature of these unconnected aggregates is strongly quenched, which points to a photoprotective function. In this study, we report time-resolved fluorescence measurements of IsiA aggregates at low temperatures. The average fluorescence lifetimes are estimated to be about 600 ps at 5 K and 150 ps at 80 K. Both lifetimes are much shorter than that of the monomeric complex CP47 at 77 K. We conclude that IsiA aggregates quench fluorescence to a significant extent at cryogenic temperatures. We show by low-temperature fluorescence spectroscopy that unconnected IsiA is present already after two days of growth in an iron-deficient medium, when PSI and PSII are still present in significant amounts and that under these conditions the fluorescence quenching is similar to that after 18 days, when PSI is almost completely absent. We conclude that unconnected IsiA provides photoprotection in all stages of iron deficiency.
蓝细菌在生长过程中通过表达isiA基因来应对缺铁情况,该基因产生一种名为IsiA或CP43'的叶绿素 - 类胡萝卜素蛋白复合物。长期缺铁会导致形成大的IsiA聚集体,其中一些与光系统I(PSI)相关联,而另一些则与光系统无连接。这些未连接的聚集体在室温下的荧光被强烈淬灭,这表明其具有光保护功能。在本研究中,我们报告了低温下IsiA聚集体的时间分辨荧光测量结果。在5 K时平均荧光寿命估计约为600 ps,在80 K时为150 ps。这两个寿命都比77 K时单体复合物CP47的寿命短得多。我们得出结论,IsiA聚集体在低温下能显著淬灭荧光。我们通过低温荧光光谱表明,在缺铁培养基中生长两天后,当PSI和PSII仍大量存在时,未连接的IsiA就已存在,并且在这些条件下荧光淬灭与18天后相似,此时PSI几乎完全不存在。我们得出结论,未连接的IsiA在缺铁的所有阶段都提供光保护作用。