Lai Kin Kwan, Lorca Graciela L, Gonzalez Claudio F
Genetics Institute, Department of Microbiology and Cell Science, University of Florida, Gainesville, 32610-3610, USA.
Appl Environ Microbiol. 2009 Aug;75(15):5018-24. doi: 10.1128/AEM.02837-08. Epub 2009 Jun 5.
Cinnamic acids (i.e., ferulic and caffeic acids) that are esterified to the vegetable cell walls should be enzymatically released to be absorbed in a mammal's intestines. A low dosage of ferulic acid in rodent diets stimulates insulin production and alleviates symptoms caused by diabetes (M. Sri Balasubashini, R. Rukkumani, and V. P. Menon, Acta Diabetol. 40:118-122, 2003). Several lactic acid bacteria are able to display ferulic acid esterase (FAE) activity, suggesting that their probiotic activity could be, in part, mediated by the slow release of ferulic acid. In the present work, we describe the isolation of one strain identified as being Lactobacillus johnsonii that displayed strong FAE activity in stool samples from diabetes-resistant biobreeding rats. These animals are genetically susceptible to becoming diabetic but do not develop the disease. By using genomic analysis coupled to protein purification and catalytic screening, we were able to purify two proteins with FAE activity. The enzymes displayed 42% sequence identity and a broad range of substrate preferences. High affinities and catalytic efficiencies toward aromatic compounds such as ethyl ferulate (K(m) = 20 to 60 microM) and chlorogenic acid (K(m) = 10 to 50 microM) were observed. The strain isolated herein as well as the enzymes studied could be potentially useful for the formulation of probiotics to ameliorate diabetes symptoms.
与植物细胞壁酯化的肉桂酸(即阿魏酸和咖啡酸)需经酶解后才能在哺乳动物肠道中被吸收。啮齿动物日粮中低剂量的阿魏酸可刺激胰岛素分泌,缓解糖尿病症状(M. 斯里·巴拉苏巴希尼、R. 鲁库马尼和V. P. 梅农,《糖尿病学报》40:118 - 122, 2003年)。几种乳酸菌能够表现出阿魏酸酯酶(FAE)活性,这表明它们的益生菌活性可能部分是由阿魏酸的缓慢释放介导的。在本研究中,我们描述了从抗糖尿病生物繁殖大鼠粪便样本中分离出的一株被鉴定为约氏乳杆菌的菌株,该菌株表现出很强的FAE活性。这些动物在遗传上易患糖尿病,但并未发病。通过基因组分析结合蛋白质纯化和催化筛选,我们能够纯化出两种具有FAE活性的蛋白质。这两种酶的序列同一性为42%,底物偏好范围广泛。观察到它们对阿魏酸乙酯(K(m)=20至60微摩尔)和绿原酸(K(m)=10至50微摩尔)等芳香族化合物具有高亲和力和催化效率。本文分离出的菌株以及所研究的酶可能对制备改善糖尿病症状的益生菌有潜在用途。