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New insights into the post-translational modification of multiple phosphoenolpyruvate carboxylase isoenzymes by phosphorylation and monoubiquitination during sorghum seed development and germination

机译:高粱种子发育和萌发过程中磷酸化和单泛素化对多种磷酸烯醇丙酮酸羧化酶同工酶的翻译后修饰的新见解

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摘要

Phosphoenolpyruvate carboxylase (PEPC; E.C. 4.1.1.31) was characterized in developing and germinating sorghum seeds, focusing on the transcript and polypeptide abundance of multiple plant-type phosphoenolpyruvate carboxylase (PTPC) genes, and the post-translational modification of each isoenzyme by phosphorylation versus monoubiquitination during germination. We observed high levels of SbPPC4 (Sb07g014960) transcripts during early development (stage I), and extensive transcript abundance of SbPPC2 (Sb02g021090) and SbPPC3 (Sb04g008720) throughout the entire life cycle of the seed. Although tandem mass spectrometry (MS) analysis of immunopurified PTPC indicated that four different PTPC isoenzymes were expressed in the developing and germinating seeds, SbPPC3 was the most abundant isozyme of the developing seed, and of the embryo and the aleurone layer of germinating seeds. In vivo phosphorylation of the different PTPC isoenzymes at their conserved N-terminal seryl phosphorylation site during germination was also established by MS/MS analysis. Furthermore, three of the four isoenzymes were partially monoubiquitinated, with MS/MS pinpointing SbPPC2 and SbPPC3 monoubiquitination at the conserved Lys-630 and Lys-624 residues, respectively. Our results demonstrate that monoubiquitination and phosphorylation simultaneously occur in vivo with different PTPC isozymes during seed germination. In addition, we show that PTPC monoubiquitination in germinating sorghum seeds always increases at stage II (emergence of the radicle), is maintained during the aerobic period of rapid cell division and reserve mobilization, and remains relatively constant until stage IV–V when coleoptiles initiate the formation of the photosynthetic tissues.
机译:磷酸烯醇丙酮酸羧化酶(PEPC; EC 4.1.1.31)的特征在于高粱种子的发育和发芽,着重于多种植物型磷酸烯醇丙酮酸羧化酶(PTPC)基因的转录本和多肽丰度,以及通过磷酸化与发芽过程中的单泛素化。我们在种子的整个生命周期中观察到了早期发育(第一阶段)中高水平的SbPPC4(Sb07g014960)转录本,以及SbPPC2(Sb02g021090)和SbPPC3(Sb04g008720)的大量转录本。尽管对纯化的PTPC进行串联质谱(MS)分析表明,在发育中的种子和发芽种子中表达了四种不同的PTPC同工酶,但SbPPC3是发育中的种子,胚和萌发种子的糊粉层中最丰富的同工酶。还通过MS / MS分析确定了不同PTPC同工酶在发芽过程中保守的N末端丝氨酰磷酸化位点的体内磷酸化。此外,四种同工酶中的三种被部分地单泛素化,MS / MS分别在保守的Lys-630和Lys-624残基上精确定位了SbPPC2和SbPPC3单泛素化。我们的结果表明,在种子萌发过程中,单泛素化和磷酸化同时在体内与不同的PTPC同工酶同时发生。此外,我们显示发芽的高粱种子中的PTPC单泛素化始终在II期(胚芽出现)增加,在有氧细胞快速分裂和储备动员的有氧期间保持不变,直到胚芽鞘启动时在IV–V期保持相对恒定。光合组织的形成。

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