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利用具有sec途径驱动有机磷水解酶周质分泌功能的重组大肠杆菌增强有毒有机磷化合物的生物降解。

Enhanced biodegradation of toxic organophosphate compounds using recombinant Escherichia coli with sec pathway-driven periplasmic secretion of organophosphorus hydrolase.

作者信息

Kang Dong Gyun, Choi Suk Soon, Cha Hyung Joon

机构信息

Department of Chemical Engineering & Division of Molecular and Life Sciences, Pohang University of Science and Technology, Pohang 790-784, Korea.

出版信息

Biotechnol Prog. 2006 Mar-Apr;22(2):406-10. doi: 10.1021/bp050356k.

Abstract

Although Escherichia coli can be genetically engineered to degrade environmental toxic organophosphate compounds (OPs) to nontoxic materials, a critical problem in such whole cell systems is limited substrate diffusion. The present work examined whether periplasmic expression of organophosphorus hydrolase (OPH) resulted in better whole cell enzymatic activity compared to standard cytosolic expression. Recombinant OPH periplasmic expression was achieved using the general secretory (sec) pathway with the pelB signal sequence. We found that while total OPH activity in periplasmic-expressing cell lysates was lower compared to that in cytosolic-expressing cell lysates whole cell OPH activity was 1.8-fold greater at 12 h post-induction in the periplasmic-expressing cells as a result of OPH translocation into the periplasmic space ( approximately 67% of whole cell OPH activity was found in the periplasmic fraction). These data suggest that E. coli engineered to periplasmically secrete OPH via the sec pathway may provide an improved whole cell biodegradation system for destruction of environmental toxic OPs.

摘要

虽然大肠杆菌可通过基因工程改造来将环境有毒有机磷化合物(OPs)降解为无毒物质,但此类全细胞系统中的一个关键问题是底物扩散受限。本研究考察了与标准胞质表达相比,有机磷水解酶(OPH)的周质表达是否能带来更好的全细胞酶活性。利用带有pelB信号序列的一般分泌(sec)途径实现了重组OPH的周质表达。我们发现,虽然周质表达细胞裂解物中的总OPH活性低于胞质表达细胞裂解物中的总OPH活性,但由于OPH易位至周质空间(周质部分中发现约67%的全细胞OPH活性),周质表达细胞在诱导后12小时的全细胞OPH活性高出1.8倍。这些数据表明,经基因工程改造通过sec途径周质分泌OPH的大肠杆菌可能为破坏环境有毒OPs提供一个改进的全细胞生物降解系统。

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