Tian Li, DellaPenna Dean, Dixon Richard A
Plant Biology Division, The Samuel Roberts Noble Foundation, 2510 Sam Noble Parkway, Ardmore, OK 73401, USA.
Planta. 2007 Sep;226(4):1067-73. doi: 10.1007/s00425-007-0564-5. Epub 2007 Jun 14.
Plastoquinone plays critical roles in photosynthesis, chlororespiration and carotenoid biosynthesis. The previously isolated pds2 mutant from Arabidopsis was deficient in tocopherol and plastoquinone accumulation, and the biochemical phenotype of this mutant could not be reversed by externally applied homogentisate, suggesting a later step in tocopherol and/or plastoquinone biosynthesis had been disrupted. Recently, the protein encoded by At3g11950 (AtHST) was shown to condense homogentisate with solanesyl diphosphate (SDP), the substrate for plastoquinone synthesis, but not phytyl diphosphate (PDP), the substrate for tocopherol biosynthesis. We have sequenced the AtHST allele in the pds2 mutant background and identified an in-frame 6 bp (2 aa) deletion in the gene. The pds2 mutation could be functionally complemented by constitutive expression of AtHST, demonstrating that the molecular basis for the pds2 mutation is this 6 bp-lesion in the AtHST gene. Confocal microscopy of EGFP tagged AtHST suggested that AtHST is localized to the chloroplast envelope, supporting the hypothesis that plastoquinone synthesis occurs in the plastid.
质体醌在光合作用、叶绿体呼吸作用和类胡萝卜素生物合成中发挥着关键作用。先前从拟南芥中分离出的pds2突变体在生育酚和质体醌积累方面存在缺陷,并且该突变体的生化表型不能通过外源施加尿黑酸来逆转,这表明生育酚和/或质体醌生物合成的后期步骤受到了破坏。最近,At3g11950(AtHST)编码的蛋白质被证明能使尿黑酸与质体醌合成的底物——茄尼基二磷酸(SDP)缩合,但不能与生育酚生物合成的底物——植基二磷酸(PDP)缩合。我们对pds2突变体背景下的AtHST等位基因进行了测序,并在该基因中鉴定出一个读码框内6个碱基对(2个氨基酸)的缺失。pds2突变可以通过AtHST的组成型表达在功能上得到互补,这表明pds2突变的分子基础是AtHST基因中的这种6个碱基对的损伤。对EGFP标记的AtHST进行共聚焦显微镜观察表明,AtHST定位于叶绿体被膜,这支持了质体醌合成发生在质体中的假说。