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Characterization of a novel N-acetylneuraminic acid lyase favoring N-acetylneuraminic acid synthesis

机译:新型 N -乙酰神经氨酸裂解酶的表征,有助于 N -乙酰神经氨酸合成

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N -Acetylneuraminic acid lyase (NAL, E.C. number 4.1.3.3) is a Class I aldolase that catalyzes the reversible aldol cleavage of N -acetylneuraminic acid (Neu5Ac) from pyruvate and N -acetyl-D-mannosamine (ManNAc). Due to the equilibrium favoring Neu5Ac cleavage, the enzyme catalyzes the rate-limiting step of two biocatalytic reactions producing Neu5Ac in industry. We report the biochemical characterization of a novel NAL from a “GRAS” (General recognized as safe) strain C. glutamicum ATCC 13032 (CgNal). Compared to all previously reported NALs, CgNal exhibited the lowest k cat/Km value for Neu5Ac and highest k cat/Km values for ManNAc and pyruvate, which makes CgNal favor Neu5Ac synthesis the most. The recombinant CgNal reached the highest expression level (480?mg/L culture), and the highest reported yield of Neu5Ac was achieved (194?g/L, 0.63?M). All these unique properties make CgNal a promising biocatalyst for industrial Neu5Ac biosynthesis. Additionally, although showing the best Neu5Ac synthesis activity among the NAL family, CgNal is more related to dihydrodipicolinate synthase (DHDPS) by phylogenetic analysis. The activities of CgNal towards both NAL's and DHDPS' substrates are fairly high, which indicates CgNal a bi-functional enzyme. The sequence analysis suggests that CgNal might have adopted a unique set of residues for substrates recognition.
机译:N-乙酰神经氨酸裂解酶(NAL,E.C.编号4.1.3.3)是I类醛缩酶,可催化N-乙酰神经氨酸(Neu5Ac)从丙酮酸和N-乙酰基-D-甘露糖胺(ManNAc)的可逆羟醛裂解。由于有利于Neu5Ac裂解的平衡,该酶催化了两个在工业上生产Neu5Ac的生物催化反应的限速步骤。我们报告了从“ GRAS”(公认安全)菌株谷氨酸棒杆菌ATCC 13032(CgNal)的新型NAL的生化特性。与以前报告的所有NAL相比,CgNal的Neu5Ac最低k cat / K m 值,最高k cat / K m 值的ManNAc和丙酮酸,这使得CgNal最喜欢Neu5Ac的合成。重组CgNal达到最高表达水平(480?mg / L培养物),并获得了最高报道的Neu5Ac产量(194?g / L,0.63?M)。所有这些独特的特性使CgNal成为工业Neu5Ac生物合成的有前途的生物催化剂。此外,尽管在NAL家族中显示出最佳的Neu5Ac合成活性,但通过系统发育分析,CgNal与二氢二吡啶甲酸合酶(DHDPS)更为相关。 CgNal对NAL和DHDPS底物的活性都很高,这表明CgNal是一种双功能酶。序列分析表明,CgNal可能采用了一组独特的残基来识别底物。

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