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Development of a high-throughput assay for rapid screening of butanologenic strains

机译:开发用于快速筛选产丁醇菌株的高通量检测方法

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摘要

We report a Thermotoga hypogea (Th) alcohol dehydrogenase (ADH)-dependent spectrophotometric assay for quantifying the amount of butanol in growth media, an advance that will facilitate rapid high-throughput screening of hypo- and hyper-butanol-producing strains of solventogenic Clostridium species. While a colorimetric nitroblue tetrazolium chloride-based assay for quantitating butanol in acetone-butanol-ethanol (ABE) fermentation broth has been described previously, we determined that Saccharomyces cerevisiae (Sc) ADH used in this earlier study exhibits approximately 13-fold lower catalytic efficiency towards butanol than ethanol. Any Sc ADH-dependent assay for primary quantitation of butanol in an ethanol-butanol mixture is therefore subject to “ethanol interference”. To circumvent this limitation and better facilitate identification of hyper-butanol-producing Clostridia, we searched the literature for native ADHs that preferentially utilize butanol over ethanol and identified Th ADH as a candidate. Indeed, recombinant Th ADH exhibited a 6-fold higher catalytic efficiency with butanol than ethanol, as measured using the reduction of NADP+ to NADPH that accompanies alcohol oxidation. Moreover, the assay sensitivity was not affected by the presence of acetone, acetic acid or butyric acid (typical ABE fermentation products). We broadened the utility of our assay by adapting it to a high-throughput microtiter plate-based format, and piloted it successfully in an ongoing metabolic engineering initiative.
机译:我们报告了Thermotoga hypogea(Th)醇脱氢酶(ADH)依赖的分光光度法,用于定量生长培养基中丁醇的含量,这一进展将有助于快速高通量筛选产溶剂的梭状芽孢杆菌的低丁醇和高丁醇生产菌株。种类。尽管以前已经描述了基于比色硝基蓝四氯化氮的丙酮-丁醇-乙醇(ABE)发酵液中丁醇定量方法,但我们确定该较早研究中使用的酿酒酵母(Sc)ADH的催化效率低约13倍对丁醇比对乙醇。因此,任何依赖于Sc ADH的对乙醇-丁醇混合物中丁醇进行初步定量的测定均会受到“乙醇干扰”的影响。为了规避此限制并更好地促进生产高丁醇梭状芽胞杆菌的鉴定,我们在文献中搜索了天然ADHs,它们优先利用丁醇而不是乙醇,并确定了Th ADH作为候选物。的确,通过使用伴随乙醇氧化的NADP + 还原为NADPH的方法测得,重组Th ADH对丁醇的催化效率比乙醇高6倍。此外,测定灵敏度不受丙酮,乙酸或丁酸(典型的ABE发酵产物)的存在的影响。我们通过将其调整为基于高通量微量滴定板的形式来扩展了测定方法的用途,并在正在进行的代谢工程计划中成功进行了试验。

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