Institute of Molecular Biology, University of Oregon, Eugene, OR, 97403, USA.
Plant J. 2019 Jul;99(1):56-66. doi: 10.1111/tpj.14308. Epub 2019 Apr 4.
The expression of chloroplast genes relies on a host of nucleus-encoded proteins. Identification of such proteins and elucidation of their functions are ongoing challenges. We used ribosome profiling to revisit the function of the pentatricopeptide repeat protein LPE1, reported to stimulate translation of the chloroplast psbA mRNA in Arabidopsis. Mutation of the maize LPE1 ortholog causes a photosystem II (PSII) deficiency and a defect in translation of the chloroplast psbJ open reading frame (ORF) but has no effect on psbA expression. To reflect this function, we named the maize LPE1 ortholog Translation of psbJ 1 (TPJ1). Arabidopsis lpe1 mutants likewise exhibit a loss of psbJ translation, and have, in addition, a decrease in psbN translation. We detected a small decrease in ribosome occupancy on the psbA mRNA in Arabidopsis lpe1 mutants, but ribosome profiling analyses of other PSII mutants (hcf107 and hcf173) in conjunction with in vitro RNA binding data strongly suggest that this is a secondary effect of their PSII deficiency. We conclude that maize TPJ1 promotes PSII synthesis by activating translation of the psbJ ORF, that this function is conserved in Arabidopsis LPE1, and that an additional role for LPE1 in psbN translation contributes to the PSII deficiency in lpe1 mutants.
质体基因的表达依赖于一系列核编码蛋白。鉴定这些蛋白并阐明其功能是当前的挑战。我们使用核糖体图谱分析重新研究了五肽重复蛋白 LPE1 的功能,该蛋白被报道可刺激拟南芥质体 psbA mRNA 的翻译。玉米 LPE1 同源物的突变导致光系统 II(PSII)缺陷和质体 psbJ 开放阅读框(ORF)的翻译缺陷,但对 psbA 表达没有影响。为了反映这一功能,我们将玉米 LPE1 同源物命名为 psbJ 1 翻译(TPJ1)。拟南芥 lpe1 突变体同样表现出 psbJ 翻译的丧失,此外,psbN 翻译也减少。我们在拟南芥 lpe1 突变体中检测到质体 psbA mRNA 的核糖体占有率略有下降,但与体外 RNA 结合数据结合的其他 PSII 突变体(hcf107 和 hcf173)的核糖体图谱分析强烈表明这是其 PSII 缺陷的继发效应。我们得出结论,玉米 TPJ1 通过激活 psbJ ORF 的翻译来促进 PSII 的合成,这一功能在拟南芥 LPE1 中保守存在,而 LPE1 在 psbN 翻译中的额外作用导致 lpe1 突变体中的 PSII 缺陷。