首页> 外文期刊>Plant Biotechnology Journal >Synthesis of enzymatically active human alpha -L-iduronidase in Arabidopsis cgl (complex glycan-deficient) seeds.
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Synthesis of enzymatically active human alpha -L-iduronidase in Arabidopsis cgl (complex glycan-deficient) seeds.

机译:拟南芥CG1(复合甘油缺乏)种子的酶活性人α-1-型雌核苷酸的合成。

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As an initial step to develop plants as systems to produce enzymes for the treatment of lysosomal storage disorders, Arabidopsis thaliana wild-type (Col-0) plants were transformed with a construct to express human alpha -L-iduronidase (IDUA; EC 3.2.1.76) in seeds using the promoter and other regulatory sequences of the Phaseolus vulgaris arcelin 5-I gene. IDUA protein was easily detected on Western blots of extracts from the T2 seeds, and extracts contained IDUA activity as high as 2.9 nmol 4-methylumbelliferone (4 MU)/min/mg total soluble protein (TSP), corresponding to approximately 0.06 micro g IDUA/mg TSP. The purified protein reacted with an antibody specific for xylose-containing plant complex glycans, indicating its transit through the Golgi complex. In an attempt to avoid maturation of the N-linked glycans of IDUA, the same IDUA transgene was introduced into the Arabidopsis cgl background, which is deficient in the activity of N-acetylglucosaminyl transferase I (EC 2.4.1.101), the first enzyme in the pathway of complex glycan biosynthesis. IDUA activity and protein levels were significantly higher in transgenic cgl vs. wild-type seeds (e.g. maximum levels were 820 nmol 4 MU/min/mg TSP, or 18 micro g IDUA/mg TSP). Affinity-purified IDUA derived from cgl mutant seeds showed a markedly reduced reaction with the antibody specific for plant complex glycans, despite transit of the protein to the apoplast. Furthermore, gel mobility changes indicated that a greater proportion of its N-linked glycans were susceptible to digestion by Streptomyces endoglycosidase H, as compared to IDUA derived from seeds of wild-type Arabidopsis plants. The combined results indicate that IDUA produced in cgl mutant seeds contains glycans primarily in the high-mannose form. This work clearly supports the viability of using plants for the production of human therapeutics with high-mannose glycans..
机译:作为制定植物作为制备用于治疗溶酶体储存疾病的酶的系统的初始步骤,用构建体转化拟南芥野生型(COL-0)植物以表达人α-L-雌壬酶(IDUA; EC 3.2。 1.76)在使用促进剂和其他调节序列的种子中寻常的戊嗪5-I基因。在T2种子的萃取液中容易检测到IDUA蛋白,并含有高达2.9nmol 4-甲基纤维素(4μm)/ min / mg总可溶性蛋白质(TSP)的IDUA活性的提取物,对应于约0.06微g idua / mg tsp。纯化的蛋白质与含木糖的植物复合聚合物的抗体反应,表明其过渡通过GOLGI复合物。为了避免抗IDUA的N-连接聚糖的成熟,将相同的IDUA转基因引入拟南芥CGR背景中,其缺乏N-乙酰葡糖氨基氨基转移酶I(EC 2.4.1.101)的活性,即第一种酶复合甘油生物合成的途径。转基因CGL与野生型种子的IDUA活性和蛋白质水平显着较高(例如,最大水平为820nmol 4 mu / min / mg TSP,或18微g idua / mg TSP)。尽管蛋白质转移到术中,但是,尽管蛋白质转过来,但衍生自CgL突变种子的亲和力纯化的态度与植物复合聚集体的抗体的反应显着降低。此外,凝胶迁移率变化表明,与源自野生型拟南芥植物的种子的idua相比,其易于通过细胞染色酶H消化的更大比例的。合并的结果表明CGL突变种子中产生的抗体含有主要以高甘露糖形式的聚糖。这项工作清楚地支持使用植物用高甘露糖聚糖生产人类治疗的可行性。

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