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首页> 外文期刊>ChemCatChem >Synthesis of N-omega-Phospho-(L)-arginine by Biocatalytic Phosphorylation of (L)-Arginine
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Synthesis of N-omega-Phospho-(L)-arginine by Biocatalytic Phosphorylation of (L)-Arginine

机译:通过(L)-Arpuline的生物催化磷酸化合成N-Omega-磷酸 - (L)的碱基

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摘要

The N omega-phospho-(L)-arginine energy-buffering system is mainly present in invertebrates for regulating energy requirements when it is highly needed, such as in the flight muscles of an insect or when energy supply fluctuates, as in the medically important protozoa Trypanosoma brucei, Trypanosoma cruzi, and Leishmania major. The lack of availability of this important metabolite was due to a tedious chemical procedure, by which N-omega-phospho-(L)-arginine was prepared in over 5 reaction steps in a low yield. Therefore, we aimed at improving the synthetic methodology for the preparation of this important metabolite. As site-and enantioselective kinases have been very useful catalysts for biocatalytic phosphorylations in straightforward syn-theses of phosphorylated metabolites, a stable and selective arginine kinase has been selected for the selective phosphorylation of l-arginine. The Arg gene has been cloned and expressed in E. coli and a highly active arginine kinase has been prepared. A simple synthesis of N-omega-phospho-(L)-arginine has been developed by arginine kinase catalyzed phosphorylation of l-arginine combined with the recycling of the phosphorylating agent ATP by using the phosphoenolpyruvate/pyruvate kinase system. After standard work-up, the desired product N-omega-phospho-(L)-arginine was obtained in gram quantities and in one step.
机译:nomega-phospho-(l)-arginine能量缓冲系统主要存在于无脊椎动物中,用于调节昆虫的飞行肌肉或能量供应波动时,以调节能量需求的无脊椎动物以调节能量要求,如在医学上的重要内容中Protozoa Trypanosoma Brucei,Trypanosoma Cruzi和Leishmania专业。缺乏这种重要的代谢物的可用性是由于繁琐的化学方法,通过其中以低产率超过5个反应步骤制备n-Omega-磷酸 - (L)-Arginine。因此,我们旨在改善制备这一重要代谢物的合成方法。随着位点和对映选择性激酶具有非常有用的用于磷酸化代谢物中的生物催化磷酸化的催化剂,已经选择了稳定和选择性的精氨酸激酶用于L-精氨酸的选择性磷酸化。 Arg基因已克隆并在大肠杆菌中表达,并制备了高活性的精氨酸激酶。通过使用磷酸丙酮酸/丙酮酸激酶系统,通过使用磷酸丙酮酸/丙酮酸激酶体系的精氨酸激酶催化磷酸化,通过精氨酸激酶催化的磷酸化结合磷酸化剂ATP的再循环,简单地合成了N-Omega-磷酸-(L)-Arguine。在标准后处理之后,以克数,在一步中获得所需产物N-OMEGA-磷酸 - (L)-Arginine。

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