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Production of a Functional Human Acid Maltase in Tobacco Seeds: Biochemical Analysis Uptake by Human GSDII Cells and In Vivo Studies in GAA Knockout Mice

机译:烟草种子中功能性人类酸性马耳他酶的生产:生化分析人类GSDII细胞的摄取和GAA基因敲除小鼠的体内研究。

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摘要

Genetic deficiency of acid alpha glucosidase (GAA) results in glycogen storage disease type II (GSDII) or Pompe’s disease. To investigate whether we could generate a functional recombinant human GAA enzyme (tobrhGAA) in tobacco seeds for future enzyme replacement therapy, we subcloned the human GAA cDNA into the plant expression plasmid-pBI101 under the control of the soybean β-conglycinin seed-specific promoter and biochemically analyzed the tobrhGAA. Tobacco seeds contain the metabolic machinery that is more compatible with mammalian glycosylation–phosphorylation and processing. We found the tobrhGAA to be enzymatically active was readily taken up by GSDII fibroblasts and in white blood cells from whole blood to reverse the defect. The tobrhGAA corrected the enzyme defect in tissues at 7 days after a single dose following intraperitoneal (IP) administration in GAA knockout (GAA−/−) mice. Additionally, we could purify the tobrhGAA since it bound tightly to the matrix of Sephadex G100 and can be eluted by competition with maltose. These data demonstrate indirectly that the tobrhGAA is fully functional, predominantly proteolytically cleaved and contains the minimal phosphorylation and mannose-6-phosphate residues essential for biological activity.
机译:酸性α-葡萄糖苷酶(GAA)的​​遗传缺陷会导致II型糖原贮积病(GSDII)或庞贝氏病。为了研究我们是否可以在烟草种子中产生功能性重组人GAA酶(tobrhGAA)以用于将来的酶替代治疗,我们将人GAA cDNA亚克隆到大豆β-伴大豆球蛋白种子特异性启动子控制下的植物表达质粒-pBI101中并对tobrhGAA进行生化分析。烟草种子含有与哺乳动物糖基化-磷酸化和加工过程更相容的代谢机制。我们发现tobrhGAA具有酶促活性,很容易被GSDII成纤维细胞吸收,并从全血中吸收白细胞以逆转该缺陷。在GAA基因敲除(GAA -/-)小鼠腹膜内(IP)施用单剂量后7天,tobrhGAA纠正了组织中的酶缺陷。此外,我们可以纯化tobrhGAA,因为它与Sephadex G100的基质紧密结合,并且可以通过与麦芽糖竞争而被洗脱。这些数据间接表明,tobrhGAA具有完整功能,主要是被蛋白水解酶切割,并且含有最小的磷酸化作用和对生物活性至关重要的甘露糖6磷酸残基。

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