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首页> 外文期刊>Plant Biotechnology Journal >Expression of Acidothermus cellulolyticus E1 endo?¢???????2?¢????1,4?¢????glucanase catalytic domain in transplastomic tobacco
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Expression of Acidothermus cellulolyticus E1 endo?¢???????2?¢????1,4?¢????glucanase catalytic domain in transplastomic tobacco

机译:嗜酸解热酶E1内切酶在转质体烟草中的表达2′→2′1,4′′-葡聚糖酶催化结构域

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As part of an effort to develop transgenic plants as a system for the production of lignocellulose?¢????degrading enzymes, we evaluated the production of the endo?¢???????2?¢????1,4?¢????glucanase E1 catalytic domain (E1cd) of Acidothermus cellulolyticus in transplastomic tobacco. In an attempt to increase the translation efficiency of the E1cd cassette, various lengths of the N?¢????terminus of the psbA gene product were fused to the E1cd protein. The psbA gene of the plastid genome encodes the D1 polypeptide of photosystem II and is known to encode an efficiently translated mRNA. Experiments in an Escherichia coli expression system indicated that the fusion of short (10?¢????22 amino acid) segments of D1 to E1cd resulted in modest increases in E1cd abundance and were compatible with E1cd activity. Plastid expression cassettes encoding unmodified E1cd and a 10?¢????amino?¢????acid D1 fusion (10nE1cd) were used to generate transplastomic tobacco plants. Expression of the E1cd open reading frame in transplastomic tobacco resulted in very low levels of the enzyme. The transplastomic plants accumulated a high level of E1cd mRNA, however, indicating that post?¢????transcriptional processes were probably limiting the production of recombinant protein. The accumulation of 10nE1cd in transplastomic tobacco was approximately 200?¢????fold higher than that of unmodified E1cd, yielding 10nE1cd in excess of 12% of total soluble protein in the extracts of the lower leaves. Most importantly, the active recombinant enzyme was recovered very easily and efficiently from dried plant material and constituted as much as 0.3% of the dry weight of leaf tissue.
机译:作为开发转基因植物作为生产木质纤维素降解酶系统的努力的一部分,我们评估了内源酶2的产生。在转质体烟草中,解酸嗜酸乳杆菌的,4′-葡聚糖酶E1催化结构域(E1cd)。为了提高E1cd盒的翻译效率,将各种长度的psbA基因产物的Nα-β末端融合到E1cd蛋白上。质体基因组的psbA基因编码光系统II的D1多肽,并且已知编码有效翻译的mRNA。在大肠杆菌表达系统中的实验表明,D1的短(10〜22个氨基酸)片段与E1cd的融合导致E1cd丰度适度增加,并且与E1cd活性相容。编码未修饰的E1cd和10′′-氨基氨基′′-酸D1融合体(10nE1cd)的质体表达盒被用于产生转质体烟草植物。 E1cd开放阅读框在转质体烟草中的表达导致极低水平的酶。转质体植物积累了高水平的E1cd mRNA,这表明转录后的转录过程可能限制了重组蛋白的产生。转质体烟草中10nE1cd的积累比未修饰的E1cd高约200倍,在下部叶片提取物中产生的10nE1cd超过总可溶性蛋白的12%。最重要的是,从干燥的植物材料中非常容易有效地回收了活性重组酶,其占叶组织干重的0.3%。

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