College of Light Industry and Food Engineering, Nanjing Forestry University, Nanjing, 210037, Jiangsu, China.
Appl Biochem Biotechnol. 2023 Oct;195(10):5802-5822. doi: 10.1007/s12010-023-04360-w. Epub 2023 Jan 28.
L-aspartate-α-decarboxylase (ADC) can recognize L-aspartic acid specifically and catalyze the decarboxylation of L-aspartic acid to β-alanine. In this study, a novel L-aspartate-α-decarboxylase (BaADC) with high specific activity from Bacillus aryabhattai Gel-09 was heterologously expressed and characterized. It exhibited optimal enzyme activity at pH 5.5 and 75 °C, and its specific activity was 33.9 U/mg. To improve the substrate tolerance of BaADC, site-directed mutation was used to construct variants. The optimal variant BaADC_I88M exhibited higher pH stability and thermostability, with 1.2-fold increase in catalytic efficiency. Moreover, through the fed-batch method, the conversion of L-aspartic acid to β-alanine catalyzed by BaADC_I88M reached 98.6% (128.67 g/L) at 12 h, which was 1.42-fold that of the wild-type enzyme. The mechanism of improved substrate tolerance was interpreted by molecular dynamics simulation and structural analysis, which revealed that the local conformational change in the active pocket could promote correct protonation. These results suggested that BaADC and its variant are potential candidates for use in the industrial production of β-alanine.
L-天冬氨酸-α-脱羧酶(ADC)能够特异性识别 L-天冬氨酸,并催化 L-天冬氨酸脱羧生成β-丙氨酸。本研究从地衣芽孢杆菌 Gel-09 中异源表达并表征了一种新型具有高比活性的 L-天冬氨酸-α-脱羧酶(BaADC)。该酶在 pH5.5 和 75°C 下表现出最佳酶活,比活为 33.9 U/mg。为了提高 BaADC 的底物耐受性,采用定点突变构建了变体。最优变体 BaADC_I88M 表现出更高的 pH 稳定性和热稳定性,催化效率提高了 1.2 倍。此外,通过补料分批法,BaADC_I88M 催化 L-天冬氨酸转化为 β-丙氨酸的转化率在 12 h 时达到 98.6%(128.67 g/L),是野生型酶的 1.42 倍。通过分子动力学模拟和结构分析解释了提高底物耐受性的机制,表明活性口袋中局部构象的变化可以促进正确的质子化。这些结果表明,BaADC 及其变体可能是工业生产β-丙氨酸的潜在候选酶。