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KMID : 1094720210260060976
Biotechnology and Bioprocess Engineering
2021 Volume.26 No. 6 p.976 ~ p.984
D-Allulose Production from D-fructose by Putative Dolichol Phosphate Mannose Synthase from Bacillus sp. with Potential D-allulose 3-epimrase Activity
Seo Min-Ju

Kwon Eun-Ryeong
Kim Sang-Jin
Choi Min-Su
Kim Yeong-Su
Park Chang-Su
Abstract
We found a putative dolichol phosphate mannose synthases (DPMS) from Bacillus sp., which exhibited the highest specific activity toward D-allulose, one of a functional rare sugars and also known as D-psicose, and identified it as D-allulose 3-epimerase (Basp_DAEase). The gene of Basp_DAEase from Bacillus sp. was cloned to the expression vector (pET-28a(+)) and then expressed as a recombinant enzyme in the Escherichia coli BL21(DE3). The recombinant enzyme was purified homogeneously on the SDS-PAGE with 34 kDa by 6XHis-tagging affinity chromatography and it was found to exist in dimer form as its activity form by Sephacryl S 200 HR 16/60 gelfiltration chromatography. The reaction conditions for a recombinant Basp_DAEase were optimized to produce D-allulose from D-fructose. The epimerization activity of Basp_DAEase toward D-fructose was maximum at pH 7.5 and 40¡ÆC with 1 mM Co2+. The half-lives of Basp_DAEase at 35¡ÆC, 40¡ÆC, 45¡ÆC, 50¡ÆC, and 55¡ÆC were 45.8, 4.18, 1.24, 0.46, and 0.17 h, respectively. At pH 7.5, 40¡ÆC, and 1mM Co2+, 215 g/L of D-allulose was produced from 700 g/L of D-fructose by 20 U/mL of Basp_DAEase after 50 min of enzyme reaction with a conversion yield of 31% and productivity of 258 g/L/h. This is the highest productivity of D-allulose from D-fructose reported to date. From this result, it is strongly suggested that Basp_DAEase has high potential application value in the industrial D-allulose production from D-fructose.
KEYWORD
Bacillus sp., dolichol phosphate mannose synthase, D-allulose, D-psicose, D-fructose, enzymatic production
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