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下游框融合介导的叶绿体转化烟草中高水平细菌纤维素酶的积累。

High-level bacterial cellulase accumulation in chloroplast-transformed tobacco mediated by downstream box fusions.

作者信息

Gray Benjamin N, Ahner Beth A, Hanson Maureen R

机构信息

Department of Biological and Environmental Engineering, Riley-Robb Hall, Cornell University, Ithaca, New York 14853, USA.

出版信息

Biotechnol Bioeng. 2009 Mar 1;102(4):1045-54. doi: 10.1002/bit.22156.

Abstract

The Thermobifida fusca cel6A gene encoding an endoglucanase was fused to three different downstream box (DB) regions to generate cel6A genes with 14 amino acid fusions. The DB-Cel6A fusions were inserted into the tobacco (Nicotiana tabacum cv. Samsun) chloroplast genome for protein expression. Accumulation of Cel6A protein in transformed tobacco leaves varied over approximately two orders of magnitude, dependent on the identity of the DB region fused to the cel6A open reading frame (ORF). Additionally, the DB region fused to the cel6A ORF affected the accumulation of Cel6A protein in aging leaves, with the most effective DB regions allowing for high level accumulation of Cel6A protein in young, mature, and old leaves, while Cel6A protein accumulation decreased with leaf age when less effective DB regions were fused to the cel6A ORF. In the most highly expressed DB-Cel6A construct, enzymatically active Cel6A protein accumulated at up to 10.7% of total soluble leaf protein (%TSP). The strategy used for high-level endoglucanase expression may be useful for expression of other cellulolytic enzymes in chloroplasts, ultimately leading to cost-effective heterologous enzyme production for cellulosic ethanol using transplastomic plants.

摘要

将编码一种内切葡聚糖酶的嗜热栖热放线菌cel6A基因与三个不同的下游框(DB)区域融合,以生成具有14个氨基酸融合的cel6A基因。将DB-Cel6A融合体插入烟草(烟草品种Samsun)叶绿体基因组中进行蛋白质表达。转化烟草叶片中Cel6A蛋白的积累量在大约两个数量级范围内变化,这取决于与cel6A开放阅读框(ORF)融合的DB区域的身份。此外,与cel6A ORF融合的DB区域影响衰老叶片中Cel6A蛋白的积累,最有效的DB区域能使Cel6A蛋白在幼叶、成熟叶和老叶中高水平积累,而当与cel6A ORF融合的DB区域效果较差时,Cel6A蛋白的积累量会随着叶片年龄的增长而减少。在表达量最高的DB-Cel6A构建体中,具有酶活性的Cel6A蛋白积累量高达总可溶性叶片蛋白的10.7%(%TSP)。用于高水平内切葡聚糖酶表达的策略可能对叶绿体中其他纤维素分解酶的表达有用,最终可能实现利用转叶绿体植物以具有成本效益的方式生产用于纤维素乙醇的异源酶。

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