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从天然宿主中纯化和表征拟南芥糖基转移酶复合物:用于结构研究的蛋白质超表达系统。

Purification and characterization of Arabidopsis thaliana oligosaccharyltransferase complexes from the native host: a protein super-expression system for structural studies.

机构信息

Department of Horticultural Sciences, Texas A&M University, College Station, TX, 77843, USA.

Department of Biomedical Engineering College of Creative Convergence Engineering, Catholic Kwandong University, Gangneung, Gangwon-do, 25601, South Korea.

出版信息

Plant J. 2018 Apr;94(1):131-145. doi: 10.1111/tpj.13847. Epub 2018 Mar 12.

Abstract

The oligosaccharyltransferase (OT) complex catalyzes N-glycosylation of nascent secretory polypeptides in the lumen of the endoplasmic reticulum. Despite their importance, little is known about the structure and function of plant OT complexes, mainly due to lack of efficient recombinant protein production systems suitable for studies on large plant protein complexes. Here, we purified Arabidopsis OT complexes using the tandem affinity-tagged OT subunit STAUROSPORINE AND TEMPERATURE SENSITIVE3a (STT3a) expressed by an Arabidopsis protein super-expression platform. Mass-spectrometry analysis of the purified complexes identified three essential OT subunits, OLIGOSACCHARYLTRANSFERASE1 (OST1), HAPLESS6 (HAP6), DEFECTIVE GLYCOSYLATION1 (DGL1), and a number of ribosomal subunits. Transmission-electron microscopy showed that STT3a becomes incorporated into OT-ribosome super-complexes formed in vivo, demonstrating that this expression/purification platform is suitable for analysis of large protein complexes. Pairwise in planta interaction analyses of individual OT subunits demonstrated that all subunits identified in animal OT complexes are conserved in Arabidopsis and physically interact with STT3a. Genetic analysis of newly established OT subunit mutants for OST1 and DEFENDER AGAINST APOTOTIC DEATH (DAD) family genes revealed that OST1 and DAD1/2 subunits are essential for the plant life cycle. However, mutations in these individual isoforms produced much milder growth/underglycosylation phenotypes than previously reported for mutations in DGL1, OST3/6 and STT3a.

摘要

寡糖基转移酶 (OT) 复合物在内质网腔中催化新生分泌多肽的 N-糖基化。尽管它们很重要,但由于缺乏适合研究大型植物蛋白复合物的高效重组蛋白生产系统,对植物 OT 复合物的结构和功能知之甚少。在这里,我们使用在拟南芥蛋白超表达平台上表达的串联亲和标签 OT 亚基 STAUROSPORINE AND TEMPERATURE SENSITIVE3a (STT3a) 纯化了拟南芥 OT 复合物。纯化复合物的质谱分析鉴定出三个必需的 OT 亚基,OLIGOSACCHARYLTRANSFERASE1 (OST1)、HAPLESS6 (HAP6)、DEFECTIVE GLYCOSYLATION1 (DGL1) 和许多核糖体亚基。透射电镜显示,STT3a 被掺入体内形成的 OT-核糖体超复合物中,证明这种表达/纯化平台适合分析大型蛋白复合物。对单个 OT 亚基的体内相互作用分析表明,动物 OT 复合物中鉴定的所有亚基在拟南芥中都是保守的,并且与 STT3a 物理相互作用。对新建立的 OT 亚基突变体的遗传分析表明,OST1 和 DEFENDER AGAINST APOTOTIC DEATH (DAD) 家族基因的亚基对于植物的生命周期是必需的。然而,这些单个异构体的突变产生的生长/低聚糖化表型比以前报道的 DGL1、OST3/6 和 STT3a 突变体的突变要温和得多。

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