Division of Biochemistry and Interdisciplinary Plant Group, Christopher S. Bond Life Sciences Center, University of Missouri, Columbia, Missouri 65211, USA.
Plant Cell. 2011 Aug;23(8):2991-3006. doi: 10.1105/tpc.111.085829. Epub 2011 Aug 9.
Nucleotides are synthesized from de novo and salvage pathways. To characterize the uridine salvage pathway, two genes, UKL1 and UKL2, that tentatively encode uridine kinase (UK) and uracil phosphoribosyltransferase (UPRT) bifunctional enzymes were studied in Arabidopsis thaliana. T-DNA insertions in UKL1 and UKL2 reduced transcript expression and increased plant tolerance to toxic analogs 5-fluorouridine and 5-fluorouracil. Enzyme activity assays using purified recombinant proteins indicated that UKL1 and UKL2 have UK but not UPRT activity. Subcellular localization using a C-terminal enhanced yellow fluorescent protein fusion indicated that UKL1 and UKL2 localize to plastids. The ukl2 mutant shows reduced transient leaf starch during the day. External application of orotate rescued this phenotype in ukl2, indicating pyrimidine pools are limiting for starch synthesis in ukl2. Intermediates for lignin synthesis were upregulated, and there was increased lignin and reduced cellulose content in the ukl2 mutant. Levels of ATP, ADP, ADP-glucose, UTP, UDP, and UDP-glucose were altered in a light-dependent manner. Seed composition of the ukl1 and ukl2 mutants included lower oil and higher protein compared with the wild type. Unlike single gene mutants, the ukl1 ukl2 double mutant has severe developmental defects and reduced biomass accumulation, indicating these enzymes catalyze redundant reactions. These findings point to crucial roles played by uridine salvage for photoassimilate allocation and partitioning.
核苷酸可以通过从头合成途径和补救途径合成。为了研究尿苷补救途径,我们研究了拟南芥中两个基因 UKL1 和 UKL2,它们暂定编码尿苷激酶 (UK) 和尿嘧啶磷酸核糖基转移酶 (UPRT) 双功能酶。UKL1 和 UKL2 的 T-DNA 插入减少了转录表达,并增加了植物对毒性类似物 5-氟尿嘧啶和 5-氟尿苷的耐受性。使用纯化的重组蛋白进行的酶活性测定表明,UKL1 和 UKL2 具有 UK 但没有 UPRT 活性。使用 C 端增强型黄色荧光蛋白融合进行的亚细胞定位表明,UKL1 和 UKL2 定位于质体。ukl2 突变体在白天表现出短暂叶片淀粉减少。ukl2 中外源添加乳清酸盐可挽救该表型,表明嘧啶库对 ukl2 中淀粉合成有限制作用。木质素合成的中间产物上调,ukl2 突变体中的木质素增加,纤维素含量减少。ukl1 和 ukl2 突变体中 ATP、ADP、ADP-葡萄糖、UTP、UDP 和 UDP-葡萄糖的水平以光依赖性方式发生改变。ukl1 和 ukl2 突变体的种子组成包括油分较低和蛋白质较高,与野生型相比。与单个基因突变体不同,ukl1 ukl2 双突变体具有严重的发育缺陷和生物量积累减少,表明这些酶催化冗余反应。这些发现表明尿苷补救在光合产物分配和分配中起着至关重要的作用。