Flachmann R, Kühlbrandt W
European Molecular Biology Laboratory, Heidelberg, Germany.
Proc Natl Acad Sci U S A. 1996 Dec 10;93(25):14966-71. doi: 10.1073/pnas.93.25.14966.
A chimeric Lhcb gene encoding light-harvesting chlorophyll a/b-binding protein (LHCII) was expressed in transgenic tobacco plants. To separate native from recombinant LHCII, the protein was extended by six histidines at its C terminus. Recombinant LHCII was isolated by detergent-mediated monomerization of pure trimers followed by affinity-chromatography on Ni(2+)-NTA-agarose (NTA is nitrilotriacetic acid). Elution with imidazole yielded recombinant monomers that formed trimers readily after dilution of the detergent without further in vitro manipulations. LHCII subunits showed the typical chlorophyll a/b ratio at all steps of purification indicating no significant loss of pigments. Transgenic tobacco overexpressed amounts of recombinant protein that corresponded to about 0.7% of total LHCII. This yield suggested that expression in planta might be an alternative to the expression of eukaryotic membrane proteins in yeast. Recombinant LHCII was able to form two-dimensional crystals after addition of digalactolipids, which diffracted electrons to 3.6-A resolution. LHCII carrying a replacement of Arg-21 with Gln accumulated to only 0.004% of total thylakoid proteins. This mutant was monomeric in the photosynthetic membrane probably due to the deletion of the phosphatidylglycerol binding site and was degraded by the plastidic proteolytic system. Exchange of Asn-183 with Leu impaired LHCII biogenesis in a similar way presumably due to the lack of a chlorophyll a binding site.
一个编码捕光叶绿素a/b结合蛋白(LHCII)的嵌合Lhcb基因在转基因烟草植株中得到表达。为了将天然LHCII与重组LHCII区分开来,该蛋白在其C末端延伸了六个组氨酸。通过洗涤剂介导的纯三聚体单体化,然后在Ni(2+)-NTA-琼脂糖(NTA是次氮基三乙酸)上进行亲和层析,分离出重组LHCII。用咪唑洗脱得到重组单体,在洗涤剂稀释后,这些单体无需进一步的体外操作就能很容易地形成三聚体。在纯化的所有步骤中,LHCII亚基都显示出典型的叶绿素a/b比值,表明色素没有明显损失。转基因烟草中重组蛋白的过表达量约占总LHCII的0.7%。这个产量表明,植物体内表达可能是在酵母中表达真核膜蛋白的一种替代方法。添加二半乳糖脂后,重组LHCII能够形成二维晶体,其电子衍射分辨率达到3.6 Å。将Arg-21替换为Gln的LHCII积累量仅占总类囊体蛋白的0.004%。这个突变体在光合膜中呈单体状态,可能是由于磷脂酰甘油结合位点的缺失,并且被质体蛋白水解系统降解。将Asn-183替换为Leu以类似的方式损害了LHCII的生物合成,大概是由于缺乏叶绿素a结合位点。