Plant Molecular Biology, Faculty of Biology, Ludwig-Maximilians-Universität München, Planegg-Martinsried, Germany.
Plant J. 2019 Aug;99(3):521-535. doi: 10.1111/tpj.14342. Epub 2019 May 17.
GUN1 integrates retrograde signals in chloroplasts but the underlying mechanism is elusive. FUG1, a chloroplast translation initiation factor, and GUN1 are co-expressed at the transcriptional level, and FUG1 co-immunoprecipitates with GUN1. We used mutants of GUN1 (gun1-103) and FUG1 (fug1-3) to analyse their functional relationship at the physiological and system-wide level, the latter including transcriptome and proteome analyses. Absence of GUN1 aggravates the effects of decreased FUG1 levels on chloroplast protein translation, resulting in transiently more pronounced phenotypes regarding photosynthesis, leaf colouration, growth and cold acclimation. The gun1-103 mutation also enhances variegation in the var2 mutant, increasing the fraction of white sectors, while fug1-3 suppresses the var2 phenotype. The transcriptomes of fug1-3 and gun1-103 plants are very similar, but absence of GUN1 alone has almost no effect on protein levels, whereas steady-state levels of chloroplast proteins are markedly decreased in fug1-3. In fug1 gun1 double mutants, effects on transcriptomes and particularly on proteomes are enhanced. Our results show that GUN1 function becomes critical when chloroplast proteostasis is perturbed by decreased rates of synthesis (fug1) or degradation (var2) of chloroplast proteins, or by low temperatures. The functions of FUG1 and GUN1 appear to be related, corroborating the view that GUN1 helps to maintain chloroplast protein homeostasis (proteostasis).
GUN1 在叶绿体中整合逆行信号,但潜在的机制尚不清楚。FUG1,一种叶绿体翻译起始因子,与 GUN1 在转录水平上共同表达,并且 FUG1 与 GUN1 共免疫沉淀。我们使用 GUN1(gun1-103)和 FUG1(fug1-3)突变体来分析它们在生理和系统水平上的功能关系,后者包括转录组和蛋白质组分析。GUN1 的缺失加剧了 FUG1 水平降低对叶绿体蛋白翻译的影响,导致光合作用、叶片颜色、生长和低温适应方面的表型暂时更为明显。gun1-103 突变还增强了 var2 突变体的斑驳现象,增加了白色区域的比例,而 fug1-3 则抑制了 var2 表型。fug1-3 和 gun1-103 植物的转录组非常相似,但单独缺失 GUN1 对蛋白质水平几乎没有影响,而 fug1-3 中叶绿体蛋白的稳态水平明显降低。在 fug1 gun1 双突变体中,对转录组的影响,特别是对蛋白质组的影响增强。我们的结果表明,当叶绿体蛋白合成(fug1)或降解(var2)率降低或温度降低扰乱叶绿体蛋白质稳态(蛋白质稳态)时,GUN1 的功能变得至关重要。FUG1 和 GUN1 的功能似乎相关,这证实了 GUN1 有助于维持叶绿体蛋白质稳态的观点。