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Development of a Continuous Bioconversion System Using a Thermophilic Whole-Cell Biocatalyst

机译:使用嗜热全细胞生物催化剂的连续生物转化系统的开发

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摘要

The heat treatment of recombinant mesophilic cells having heterologous thermophilic enzymes results in the denaturation of indigenous mesophilic enzymes and the elimination of undesired side reactions; therefore, highly selective whole-cell catalysts comparable to purified enzymes can be readily prepared. However, the thermolysis of host cells leads to the heat-induced leakage of thermophilic enzymes, which are produced as soluble proteins, limiting the exploitation of their excellent stability in repeated and continuous reactions. In this study, Escherichia coli cells having the thermophilic fumarase from Thermus thermophilus ( Tt FTA) were treated with glutaraldehyde to prevent the heat-induced leakage of the enzyme, and the resulting cells were used as a whole-cell catalyst in repeated and continuous reactions. Interestingly, although electron microscopic observations revealed that the cellular structure of glutaraldehyde-treated E. coli was not apparently changed by the heat treatment, the membrane permeability of the heated cells to relatively small molecules (up to at least 3 kDa) was significantly improved. By applying the glutaraldehyde-treated E. coli having Tt FTA to a continuous reactor equipped with a cell-separation membrane filter, the enzymatic hydration of fumarate to malate could be operated for more than 600 min with a molar conversion yield of 60% or higher.
机译:具有异源嗜热酶的重组嗜温细胞的热处理导致天然嗜温酶的变性并消除了不希望的副反应。因此,可以容易地制备与纯化的酶相当的高选择性全细胞催化剂。然而,宿主细胞的热解导致热诱导的嗜热酶的渗漏,嗜热酶以可溶性蛋白质的形式产生,限制了其在重复和连续反应中的出色稳定性。在这项研究中,用戊二醛处理具有嗜热栖热菌(Thermus thermophilus)嗜热富马酸酶的大肠杆菌细胞(Tt FTA),以防止热诱导的酶渗漏,并将所得细胞用作全细胞催化剂,进行重复和连续反应。有趣的是,尽管电子显微镜观察表明,经热处理没有明显改变戊二醛处理过的大肠杆菌的细胞结构,但加热的细胞对较小分子(至多3kDa)的膜渗透性显着提高。通过将具有Tt FTA的戊二醛处理过的大肠杆菌应用于装有细胞分离膜过滤器的连续反应器中,富马酸酯的酶化水合为苹果酸可以进行600分钟以上,摩尔转化率为60%或更高。 。

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