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在植物体内对海洋栖热菌 Cel5A 和 CBM6 工程化 Cel5A 的差异靶向分析,用于自水解。

In planta differential targeting analysis of Thermotoga maritima Cel5A and CBM6-engineered Cel5A for autohydrolysis.

机构信息

Department of Forest Products and Technology (BK21 Program), Chonnam National University, Gwangju, 500-757, Republic of Korea.

出版信息

Transgenic Res. 2011 Aug;20(4):877-86. doi: 10.1007/s11248-010-9464-8. Epub 2010 Dec 9.

Abstract

The heterologous expression of glycosyl hydrolases in bioenergy crops can improve the lignocellulosic conversion process for ethanol production. We attempted to obtain high-level expression of an intact Thermotoga maritima endoglucanase, Cel5A, and CBM6-engineered Cel5A in transgenic tobacco plants for the mass production and autohydrolysis of endoglucanase. Cel5A expression was targeted to different subcellular compartments, namely, the cytosol, apoplast, and chloroplast, using the native form of the pathogenesis-related protein 1a (PR1a) and Rubisco activase (RA) transit peptides. Cel5A transgenic tobacco plants with the chloroplast transit peptide showed the highest average endoglucanase activity and protein accumulation up to 4.5% total soluble protein. Cel5A-CBM6 was targeted to the chloroplast and accumulated up to 5.2% total soluble protein. In terms of the direct conversion of plant tissue into free sugar, the Cel5A-CBM6 transgenic plant was 33% more efficient than the Cel5A transgenic plant. The protein stability of Cel5A and Cel5A-CBM6 in lyophilized leaf material is an additional advantage in the bioconversion process.

摘要

在生物能源作物中异源表达糖苷水解酶可以改善木质纤维素转化为乙醇的过程。我们试图在转基因烟草植物中获得高水平表达完整的嗜热栖热菌内切葡聚糖酶 Cel5A 和 CBM6 工程化的 Cel5A,用于内切葡聚糖酶的大规模生产和自水解。使用病原体相关蛋白 1a(PR1a)和 RuBisCO 激活酶(RA)的天然转运肽将 Cel5A 表达靶向不同的亚细胞区室,即细胞质、质外体和叶绿体。具有叶绿体转运肽的 Cel5A 转基因烟草植物表现出最高的平均内切葡聚糖酶活性和蛋白积累,达到总可溶性蛋白的 4.5%。Cel5A-CBM6 被靶向叶绿体,积累到总可溶性蛋白的 5.2%。就植物组织直接转化为游离糖而言,Cel5A-CBM6 转基因植物比 Cel5A 转基因植物的效率高 33%。Cel5A 和 Cel5A-CBM6 在冻干叶片材料中的蛋白稳定性是生物转化过程中的另一个优势。

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