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Immunolocalization of 1-O-sinapoylglucose:malate sinapoyltransferase in Arabidopsis thaliana

机译:拟南芥中1-O-芥子糖基葡萄糖:苹果酸芥子碱基转移酶的免疫定位

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The serine carboxypeptidase-like protein 1-O-sinapoylglucose:malate sinapoyltransferase (SMT) catalyzes the transfer of the sinapoyl moiety of 1-O-sinapoylglucose to malate in the formation of sinapoylmalate in some members of the Brassicaceae. Rabbit polyclonal monospecific antibodies were raised against the recombinant SMT produced in Escherichia coli from the corresponding Arabidopsis thaliana (L.) Heynh. cDNA. Immunoblot analysis of protein from different Arabidopsis tissues showed that the SMT is produced in all plant organs, except in the seeds and young seedlings. The enzyme was most abundant in older seedlings as well as in rosette leaves and the flowering stem of the plant. Minor amounts were found in the cauline leaves, flower buds and siliques. Traces were detected in the root and flowers. Arabidopsis and transgenic tobacco (Nicotiana tabacum L.) plants expressing the full-length Arabidopsis SMT containing an N-terminal signal peptide showed apparent molecular masses of the protein of 52–55 kDa. The difference of ca. 8 kDa compared to the recombinant protein produced in E. coli was shown to be due to post-translational N-glycosylation of SMT in plants. Immunofluorescent labeling of Arabidopsis leaf sections localized SMT to the central vacuoles of mesophyll and epidermal cells. Comparable leaf sections of an SMT deletion mutant showed no vacuolar immunofluorescent labeling. We conclude that Arabidopsis SMT is synthesized as a precursor protein that is targeted to the endoplasmic reticulum where the signal peptide is removed. The correct N-terminus of the recombinantly produced SMT protein lacking the signal peptide was confirmed by Edman degradation. The protein is probably glycosylated in the Golgi apparatus from where it is subsequently routed to the vacuole.
机译:丝氨酸羧肽酶样蛋白1-O-芥子糖基葡萄糖:苹果酸芥子碱基转移酶(SMT)催化1-O-芥子糖基葡萄糖的芥子碱基部分向苹果酸的转移,在芥菜科的某些成员中形成芥子酸基苹果酸酯。产生针对在大肠杆菌中从相应的拟南芥(L.)Heynh生产的重组SMT的兔多克隆单特异性抗体。 cDNA。对来自拟南芥不同组织的蛋白质进行的免疫印迹分析表明,SMT在所有植物器官中产生,种子和幼苗中除外。该酶在较老的幼苗,莲座丛叶和植物的开花茎中含量最高。在茎生叶,花蕾和长角果中发现少量。在根和花中检测到痕迹。表达含有N末端信号肽的全长拟南芥SMT的拟南芥和转基因烟草(Nicotiana tabacum L.)植物显示该蛋白质的表观分子量为52-55 kDa。的区别。与在大肠杆菌中产生的重组蛋白相比,显示8 kDa是由于植物中SMT的翻译后N-糖基化。拟南芥叶切片的免疫荧光标记将SMT定位于叶肉和表皮细胞的中央液泡。 SMT缺失突变体的可比叶切片未显示液泡免疫荧光标记。我们得出的结论是,拟南芥SMT被合成为前体蛋白,该蛋白靶向信号肽被去除的内质网。埃德曼降解证实了重组生产的缺少信号肽的SMT蛋白的正确N端。该蛋白质可能在高尔基体中被糖基化,随后从那里被输送到液泡。

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