Graduate School of Natural Sciences, Nagoya City University, Yamanohata, Mizuho-ku, Nagoya, 467-8501, Japan,
Plant Mol Biol. 2014 Dec;86(6):585-93. doi: 10.1007/s11103-014-0248-z. Epub 2014 Sep 9.
The chloroplast psbB operon includes five genes encoding photosystem II and cytochrome b 6 /f complex components. The psbN gene is located on the opposite strand. PsbN is localized in the thylakoid and is present even in the dark, although its level increases upon illumination and then decreases. However, the translation mechanism of the psbN mRNA remains unclear. Using an in vitro translation system from tobacco chloroplasts and a green fluorescent protein as a reporter protein, we show that translation occurs from a tobacco primary psbN 5'-UTR of 47 nucleotides (nt). Unlike many other chloroplast 5'-UTRs, the psbN 5'-UTR has two processing sites, at -39 and -24 upstream from the initiation site. Processing at -39 enhanced the translation rate fivefold. In contrast, processing at -24 did not affect the translation rate. These observations suggest that the two distinct processing events regulate, at least in part, the level of PsbN during development. The psbN 5'-UTR has no Shine-Dalgarno (SD)-like sequence. In vitro translation assays with excess amounts of the psbN 5'-UTR or with deleted psbN 5'-UTR sequences demonstrated that protein factors are required for translation and that their binding site is an 18 nt sequence in the 5'-UTR. Mobility shift assays using 10 other chloroplast 5'-UTRs suggested that common or similar proteins are involved in translation of a set of mRNAs lacking SD-like sequences.
叶绿体 psbB 操纵子包含五个基因,编码光系统 II 和细胞色素 b6/f 复合物的组成部分。psbN 基因位于相反的链上。PsbN 定位于类囊体中,即使在黑暗中也存在,尽管其水平在光照下增加,然后降低。然而,psbN mRNA 的翻译机制尚不清楚。使用来自烟草叶绿体的体外翻译系统和绿色荧光蛋白作为报告蛋白,我们表明翻译发生在烟草初级 psbN 5'-UTR 的 47 个核苷酸(nt)上。与许多其他叶绿体 5'-UTRs 不同,psbN 5'-UTR 有两个加工位点,位于起始位点上游的-39 和-24。在-39 处进行加工将翻译速率提高了五倍。相比之下,在-24 处进行加工不会影响翻译速率。这些观察结果表明,这两个不同的加工事件至少部分调节了发育过程中 PsbN 的水平。psbN 5'-UTR 没有 Shine-Dalgarno(SD)样序列。使用过量的 psbN 5'-UTR 或缺失的 psbN 5'-UTR 序列进行体外翻译测定表明,蛋白质因子是翻译所必需的,其结合位点是 5'-UTR 中的 18 个核苷酸序列。使用其他 10 个叶绿体 5'-UTR 的迁移率变动测定表明,缺乏 SD 样序列的一组 mRNA 的翻译涉及共同或类似的蛋白质。