首页> 外文期刊>The Journal of biological chemistry >Functional Identification of a Hydroxyproline-O-galactosyltransferase Specific for Arabinogalactan Protein Biosynthesis in Arabidopsis
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Functional Identification of a Hydroxyproline-O-galactosyltransferase Specific for Arabinogalactan Protein Biosynthesis in Arabidopsis

机译:拟南芥中阿拉伯半乳蛋白生物合成特异的羟脯氨酸-O-半乳糖基转移酶的功能鉴定

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Although plants contain substantial amounts of arabinogalactan proteins (AGPs), the enzymes responsible for AGP glycosylation are largely unknown. Bioinformatics indicated that AGP galactosyltransferases (GALTs) are members of the carbohydrate-active enzyme glycosyltransferase (GT) 31 family (CAZy GT31) involved in N- and O-glycosylation. Six Arabidopsis GT31 members were expressed in Pichia pastoris and tested for enzyme activity. The At4g21060 gene (named AtGALT2) was found to encode activity for adding galactose (Gal) to hydroxyproline (Hyp) in AGP protein backbones. AtGALT2 specifically catalyzed incorporation of [14C]Gal from UDP-[14C]Gal to Hyp of model substrate acceptors having AGP peptide sequences, consisting of non-contiguous Hyp residues, such as (Ala-Hyp) repetitive units exemplified by chemically synthesized (AO)7 and anhydrous hydrogen fluoride-deglycosylated d(AO)51. Microsomal preparations from Pichia cells expressing AtGALT2 incorporated [14C]Gal to (AO)7, and the resulting product co-eluted with (AO)7 by reverse-phase HPLC. Acid hydrolysis of the [14C]Gal-(AO)7 product released 14C-radiolabel as Gal only. Base hydrolysis of the [14C]Gal-(AO)7 product released a 14C-radiolabeled fragment that co-eluted with a Hyp-Gal standard after high performance anion-exchange chromatography fractionation. AtGALT2 is specific for AGPs because substrates lacking AGP peptide sequences did not act as acceptors. Moreover, AtGALT2 uses only UDP-Gal as the substrate donor and requires Mg2+ or Mn2+ for high activity. Additional support that AtGALT2 encodes an AGP GALT was provided by two allelic AtGALT2 knock-out mutants, which demonstrated lower GALT activities and reductions in β-Yariv-precipitated AGPs compared with wild type plants. Confocal microscopic analysis of fluorescently tagged AtGALT2 in tobacco epidermal cells indicated that AtGALT2 is probably localized in the endomembrane system consistent with its function.
机译:虽然植物含有大量的阿拉伯半乳蛋白(AGPS),但是负责AGP糖基化的酶主要是未知的。生物信息学表明,AGP半乳糖基转移酶(GALTS)是参与N-和O-糖基化的碳水化合物 - 活性酶糖基转移酶(GT)31系列(Cazy GT31)的成员。六个拟南芥GT31成员在Pichia Pastoris中表达并测试了酶活性。发现AT4G21060基因(命名为AtgAlt2),以编码在AGP蛋白骨架中加入半乳糖(GAL)至羟脯氨酸(哌啶)的活性。 Atgalt2特别催化了来自UDP-[14C] GAL的[14C] GAL的掺入具有AGP肽序列的模型底物对序列,由非连续的低残留序列组成,例如通过化学合成(AO的ALA-HYP)重复单元(AO )7和无水氟化氢 - 脱糖基化的D(AO)51。从表达AtgAlt2的Pichia细胞的微粒体制剂掺入[14C] GAL至(AO)7,并通过反相HPLC用(AO)7共洗脱。 [14C] Gal-(AO)7产物的酸水解仅释放了14C-放射性标记为GAL。 [14C] Gal-(AO)7产物的基础水解释放了14C-放射性标记的片段,其在高性能阴离子交换色谱分离后用次高GAL标准洗脱。 ATGALT2特异于AGP,因为缺乏AGP肽序列的底物并未充当受体。此外,ATGALT2仅使用UDP-GAL作为底物供体,并且需要Mg2 +或Mn2 +的高活性。通过两个等位基因Atgalt2敲除突变体提供ATGALT2编码AGP GALT的额外支持,该突变突变体显示了较低的GALT活性并降低了与野生型植物相比的β-yariv沉淀的AGP。烟草表皮细胞中荧光标记的Atgalt2的共聚焦显微镜分析表明,AtgAlt2可能局部的内膜系统,其功能一致。

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