Steiner Jürgen M, Pompe Johannes A, Löffelhardt Wolfgang
Max F. Perutz Laboratories, University Departments at the Vienna Biocenter, Department of Biochemistry and Molecular Cell Biology and Ludwig Boltzmann Research Unit for Biochemistry, Dr. Bohrgasse 9, 1030 Vienna, Austria.
Curr Genet. 2003 Nov;44(3):132-7. doi: 10.1007/s00294-003-0433-0. Epub 2003 Aug 19.
Phycobilisomes are the complex and highly efficient light-harvesting antenna systems of cyanobacteria, glaucocystophyte algae and red algae. In the glaucocystophyte Cyanophora paradoxa, seven genes for (chromophoric) phycobilisome components are known thus far, which all reside on the cyanelle genome. Here, we report the sequence of apcC, specifying the precursor to the colorless polypeptide L(c)(7.8), the first core linker reported for a eukaryote. The precursor was efficiently imported in vitro into isolated cyanelles. Fractionation into thylakoid membranes and stroma and into intact phycobilisomes and soluble proteins, respectively, indicated a low but significant incorporation of the imported linker polypeptide into the phycobilisomes.
藻胆体是蓝细菌、蓝隐藻和红藻中复杂且高效的捕光天线系统。在蓝隐藻蓝氏原绿藻中,迄今为止已知有七个编码(发色)藻胆体组分的基因,它们都位于蓝小体基因组上。在此,我们报道了apcC的序列,该序列指定了无色多肽L(c)(7.8)的前体,这是首次报道的真核生物的第一个核心连接蛋白。该前体在体外能有效地导入分离的蓝小体。分别分离到类囊体膜和基质以及完整的藻胆体和可溶性蛋白中,结果表明导入的连接蛋白多肽在藻胆体中有少量但显著的掺入。