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首页> 外文期刊>Microbiological Research >A serine hydroxymethyltransferase from marine bacterium Shewanella algae: Isolation, purification, characterization and l-serine production.
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A serine hydroxymethyltransferase from marine bacterium Shewanella algae: Isolation, purification, characterization and l-serine production.

机译:来自海洋细菌希瓦氏菌藻的丝氨酸羟甲基转移酶:分离,纯化,表征和左旋丝氨酸生产。

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摘要

Currently, l-serine is mainly produced by enzymatic conversion, in which serine hydroxymethyltransferase (SHMT) is the key enzyme, suggesting the importance of searching for a SHMT with high activity. Shewanella algae, a methanol-utilizing marine bacterium showing high SHMT activity, was selected based on screening bacterial strains and comparison of the activities of SHMTs. A glyA was isolated from the S. algae through thermal asymmetric interlaced PCR (TAIL-PCR) and it encoded a 417 amino acid polypeptide. The SaSHMT, encoded by the glyA, showed the optimal activity at 50degreeC and pH 7.0, and retained over 45% of its maximal activity after incubation at 40degreeC for 3h. The enzyme showed better stability under alkaline environment (pH 6.5-9.0) than Hyphomicrobium methylovorum GM2's SHMT (pH 6.0-7.5). The SaSHMT can produce 77.76mM of l-serine by enzymatic conversion, with the molecular conversion rate in catalyzing glycine to l-serine being 1.41-fold higher than that of Escherichia coli. Therefore, the SaSHMT has the potential for industrial applications due to its tolerance of alkaline environment and a relatively high enzymatic conversion rate
机译:目前,1-丝氨酸主要通过酶促转化产生,其中丝氨酸羟甲基转移酶(SHMT)是关键酶,这表明寻找具有高活性的SHMT的重要性。基于筛选细菌菌株并比较SHMT活性,选择了显示高SHMT活性的利用甲醇的希瓦氏菌藻。通过热不对称交错PCR(TAIL-PCR)从海藻链球菌中分离出glyA,其编码417个氨基酸的多肽。由glyA编码的SaSHMT在50°C和pH 7.0下显示最佳活性,在40°C孵育3h后保留其最大活性的45%以上。该酶在碱性环境(pH 6.5-9.0)下显示出比甲基缩醛次球菌GM2的SHMT(pH 6.0-7.5)更好的稳定性。通过酶促转化,SaSHMT可以产生77.76mM的l-丝氨酸,催化甘氨酸转化为l-丝氨酸的分子转化率比大肠杆菌高1.41倍。因此,SaSHMT具有耐碱性和相对较高的酶转化率,因此具有工业应用潜力。

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