Graduate School of Pharmaceutical Sciences, Kitasato University, 5-9-1 Shirokane, Minato-ku, Tokyo, Japan.
Biosci Biotechnol Biochem. 2022 Oct 20;86(11):1536-1542. doi: 10.1093/bbb/zbac151.
Various d-amino acids play important physiological roles in mammals, but the pathways of their production remain unknown except for d-serine, which is generated by serine racemase. Previously, we found that Escherichia coli cystathionine β-lyase possesses amino acid racemase activity in addition to β-lyase activity. In the present work, we evaluated the enzymatic activities of human cystathionine γ-lyase, which shares a relatively high amino acid sequence identity with cystathionine β-lyase. The enzyme did not show racemase activity toward various amino acids including alanine and lyase and dehydratase activities were highest toward l-cystathionine and l-homoserine, respectively. The enzyme also showed weak activity toward l-cysteine and l-serine but no activity toward d-amino acids. Intriguingly, the pH and temperature profiles of lyase activity were distinct from those of dehydratase activity. Catalytic efficiency was higher for lyase activity than for dehydratase activity.
各种 D-氨基酸在哺乳动物中发挥着重要的生理作用,但除了 D-丝氨酸(由丝氨酸消旋酶产生)之外,其产生途径仍不清楚。先前,我们发现大肠杆菌胱硫醚β-裂合酶除了β-裂合酶活性外还具有氨基酸消旋酶活性。在本工作中,我们评估了与胱硫醚β-裂合酶具有相对较高氨基酸序列同一性的人胱硫醚γ-裂合酶的酶活性。该酶对包括丙氨酸在内的各种氨基酸均没有表现出消旋酶活性,而对 l-胱硫氨酸和 l-高丝氨酸的裂合酶和脱水酶活性最高,分别。该酶对 l-半胱氨酸和 l-丝氨酸也表现出较弱的活性,但对 D-氨基酸没有活性。有趣的是,裂合酶活性的 pH 和温度曲线与脱水酶活性明显不同。与脱水酶活性相比,裂合酶活性的催化效率更高。