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Comparative Analyses of Arabidopsis complex glycan1 Mutants and Genetic Interaction with staurosporin and temperature sensitive3a1[W][OA]

机译:拟南芥复合聚糖1突变体与星形孢菌素和温度敏感性3a1的遗传相互作用的比较分析[W] [OA]

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摘要

We compare three Arabidopsis (Arabidopsis thaliana) complex glycan1 (cgl1) alleles and report on genetic interaction with staurosporin and temperature sensitive3a (stt3a). STT3a encodes a subunit of oligosaccharyltransferase that affects efficiency of N-glycan transfer to nascent secretory proteins in the endoplasmic reticulum; cgl1 mutants lack N-acetyl-glucosaminyltransferase I activity and are unable to form complex N-glycans in the Golgi apparatus. By studying CGL1-green fluorescent protein fusions in transient assays, we show that the extra N-glycosylation site created by a point mutation in cgl1 C5 is used in planta and interferes with folding of full-length membrane-anchored polypeptides in the endoplasmic reticulum. Tunicamycin treatment or expression in the stt3a-2 mutant relieved the folding block, and migration to Golgi stacks resumed. Complementation tests with C5-green fluorescent protein and other N-glycosylation variants of CGL1 demonstrated that suppression of aberrant N-glycosylation restores activity. Interestingly, CGL1 seems to be functional also as nonglycosylated enzyme. Two other cgl1 alleles showed splicing defects of their transcripts. In cgl1 C6, a point mutation affects the 3′ splice site of intron 14, resulting in frame shifts; in cgl1-T, intron 11 fails to splice due to insertion of a T-DNA copy. Introgression of stt3a-2 did not restore complex glycan formation in cgl1 C6 or cgl1-T but suppressed the N-acetyl-glucosaminyltransferase I defect in cgl1 C5. Root growth assays revealed synergistic effects in double mutants cgl1 C6 stt3a-2 and cgl1-T stt3a-2 only. Besides demonstrating the conditional nature of cgl1 C5 in planta, our observations with loss-of-function alleles cgl1 C6 and cgl1-T in the stt3a-2 underglycosylation background prove that correct N-glycosylation is important for normal root growth and morphology in Arabidopsis.
机译:我们比较了三个拟南芥(Arabidopsis thaliana)复合glycan1(cgl1)等位基因,并报告了与星形孢菌素和温度敏感性3a(stt3a)的遗传相互作用。 STT3a编码一个寡糖基转移酶的亚基,它会影响N-聚糖向内质网新生分泌蛋白的转移效率; cgl1突变体缺乏N-乙酰基-氨基葡萄糖氨基转移酶I的活性,并且无法在高尔基体中形成复杂的N-聚糖。通过在瞬时分析中研究CGL1-绿色荧光蛋白融合物,我们显示了由cgl1 C5中的点突变产生的额外N-糖基化位点已用于植物中,并干扰了内质网中全长膜锚定多肽的折叠。衣霉素处理或在stt3a-2突变体中的表达缓解了折叠障碍,并恢复了向高尔基体的迁移。与C5-绿色荧光蛋白和CGL1的其他N-糖基化变体的互补测试表明,抑制异常N-糖基化可恢复活性。有趣的是,CGL1似乎也可以作为非糖基化酶起作用。其他两个cgl1等位基因显示其转录本的剪接缺陷。在cgl1 C6中,点突变影响内含子14的3'剪接位点,导致移码;在cgl1-T中,内含子11由于插入T-DNA拷贝而不能剪接。 stt3a-2的渗入不能恢复cgl1 C6或cgl1-T中复杂的聚糖形成,但可以抑制cgl1 C5中的N-乙酰基-氨基葡萄糖氨基转移酶I缺陷。根生长试验显示仅在双突变体cgl1 C6 stt3a-2和cgl1-T stt3a-2中具有协同作用。除了证明植物中cgl1 C5的条件性质外,我们在stt3a-2糖基化不足背景下对功能缺失的等位基因cgl1 C6和cgl1-T的观察还证明,正确的N-糖基化对于拟南芥的正常根生长和形态很重要。

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