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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Nitrile hydratase of Rhodococcus - Optimization of synthesis in cells and industrial applications for acrylamide production
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Nitrile hydratase of Rhodococcus - Optimization of synthesis in cells and industrial applications for acrylamide production

机译:红球菌的腈水合酶-细胞合成的优化和丙烯酰胺生产的工业应用

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摘要

Strain Rhodococcus rhodochrous M8 exhibiting high nitrile hydratase (NHase) activity is a promising catalyst for commercial production of acrylamide. With the aim to enhance the biocatalyst activity, regulation of NHase synthesis in this strain has been investigated. The synthesis of NHase and amidase, which also participated in nitriles metabolism in this strain, was induced by isobutyronitrile, acetamide, or urea. At the same time, the addition of glucose, fructose (rapidly metabolizable carbon sources), or ammonium ions to a medium decreased NHase and amidase synthesis. Using Northern blot analysis we demonstrated that these compounds control the expression of NHase at the transcriptional level. The observed effects of glucose and fructose are not related to the decrease in the intracellular concentration of inducer (acetamide), since these compounds cause neither repression nor inhibition of an inducible active system of acetamide uptake. The synthesis of NHase in R. rhodochrous M8 is proposed to be subjected to different regulatory circuits, i.e., induction, carbon, and nitrogen catabolite regulation, operating at the transcription level. We have optimized the growth conditions for R. rhodochrous M8 on the basis of the obtained data. Application of the improved biocatalyst for acrylamide production allows us to obtain the concentrated (38%) solution of acrylamide. [References: 13]
机译:展示高腈水合酶(NHase)活性的杜鹃红球菌M8菌株是商业生产丙烯酰胺的有希望的催化剂。为了增强生物催化剂活性,已经研究了该菌株中NHase合成的调节。异丁腈,乙酰胺或尿素诱导了NHase和酰胺酶的合成,后者也参与了该菌株的腈代谢。同时,向培养基中添加葡萄糖,果糖(可快速代谢的碳源)或铵离子会降低NHase和酰胺酶的合成。使用Northern印迹分析,我们证明了这些化合物在转录水平上控制着NHase的表达。观察到的葡萄糖和果糖的作用与诱导剂(乙酰胺)的细胞内浓度降低无关,因为这些化合物既不会抑制也不会抑制可诱导的乙酰胺摄取活性系统。提出了在R.rhodochorous M8中合成NHase要经受不同的调节回路,即在转录水平上的诱导,碳和氮分解代谢物调节。根据获得的数据,我们优化了R. rhodochrous M8的生长条件。将改进的生物催化剂用于丙烯酰胺生产的应用使我们可以获得丙烯酰胺的浓缩溶液(38%)。 [参考:13]

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