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首页> 外文期刊>Toxicological Sciences >A Gene-Shuffled Glyphosate Acetyltransferase Protein from Bacillus licheniformis (GAT4601) Shows No Evidence of Allergenicity or Toxicity
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A Gene-Shuffled Glyphosate Acetyltransferase Protein from Bacillus licheniformis (GAT4601) Shows No Evidence of Allergenicity or Toxicity

机译:来自地衣芽孢杆菌(GAT4601)的基因改组草甘膦乙酰基转移酶蛋白没有显示出任何致敏性或毒性的证据

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摘要

The glyphosate acetyltransferase (gat) gene from Bacillus licheniformis was subjected to multiple rounds of gene shuffling to optimize kinetics of corresponding GAT proteins to acetylate the herbicide active ingredient glyphosate. Genetically modified soybeans expressing the gat4601 gene (356043 soybeans) are tolerant to the application of glyphosate. The current manuscript reports the outcome of the allergenicity and toxicity assessment for the GAT4601 protein. Bioinformatic comparison of the amino acid sequence of GAT4601 did not identify similarities to known allergenic or toxic proteins. In vitro studies conducted with heterologously produced GAT4601 protein demonstrated that it was rapidly degraded in simulated gastric fluid containing pepsin ( 30 s) and in simulated intestinal fluid containing pancreatin ( 2 min) and completely inactivated at temperatures above 56°C. The GAT4601 protein expressed in planta is not glycosylated and similar protein profiles were observed in flour extracts from 356043 soybeans and nontransgenic near isoline comparator soybeans (Jack) using serum from soy allergic persons. No evidence of adverse effects was observed in mice following acute oral exposure to 2000 mg/kg of GAT4601 protein or in a repeated dose dietary exposure study at doses of 800–1000 mg/kg/day. This comprehensive assessment demonstrates that the GAT4601 protein does not present a risk for adverse effects in humans when used in the context of agricultural biotechnology.
机译:对地衣芽孢杆菌的草甘膦乙酰基转移酶(gat)基因进行多轮基因改组,以优化相应GAT蛋白的动力学,从而使除草剂活性成分草甘膦乙酰化。表达gat4601基因的转基因大豆(356043大豆)可耐受草甘膦的施用。本手稿报告了GAT4601蛋白的致敏性和毒性评估结果。 GAT4601氨基酸序列的生物信息学比较未发现与已知的致敏性或毒性蛋白相似。用异源产生的GAT4601蛋白进行的体外研究表明,它在含有胃蛋白酶的模拟胃液(<30 s)和含有胰酶的模拟肠液中(<2分钟)迅速降解,并在高于56°C的温度下完全失活。植物中表达的GAT4601蛋白未糖基化,使用大豆过敏者的血清从356043大豆和非转基因近等值比较大豆(Jack)的面粉提取物中观察到相似的蛋白质谱。在小鼠急性口服2000 mg / kg的GAT4601蛋白后或在800-1000 mg / kg / day的重复剂量饮食暴露研究中,未观察到不良反应的证据。这项全面的评估表明,当用于农业生物技术时,GAT4601蛋白不会对人类产生不利影响。

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