Department of Life Sciences, Graduate School of Incheon National University, Incheon, 22012, Republic of Korea.
School of Life Sciences, B.S. Abdur Rahman Crescent Institute of Science and Technology, Chennai, 600048, India.
Arch Microbiol. 2023 Feb 9;205(3):86. doi: 10.1007/s00203-022-03390-y.
Bacillus cereus is a rod-shaped, gram-positive, motile, and β-hemolytic soil bacterium. B. cereus is an opportunistic pathogen, often responsible for human foodborne illness that is caused by ingestion of starchy foods with symptoms of diarrhea and vomiting. Among the numerous amylolytic enzymes in the genome of the pathogen, the one annotated as a putative neopullulanase (NPase) was cloned and its biochemical properties were characterized in this study. The corresponding gene encoded an enzyme of 586 amino acids with a predicted molecular mass of 68.25 kDa. The putative NPase shared 43.7-59.2% of identity with NPases, cyclomaltodextrinases (CDases), and maltogenic amylases from various bacteria, but shared very low similarity with other amylolytic enzymes of B. cereus. The optimal pH and temperature of the enzyme was 6.5 and 37 ℃, respectively. The enzyme activity was decreased by the cations tested in this study and completely inhibited by Co and Cu. The purified enzyme showed substrate preference in the order of α-CD > β-CD > starch > maltodextrin > γ-CD and hydrolyzed them mainly to maltose. However, it did not hydrolyze maltose, pullulan, and glycogen. The enzyme was designated herein as a CDase of B. cereus (BcCDase). Furthermore, the enzyme could transfer the sugars released from CDs and maltotriose to acceptor molecules. BcCDase was likely to be involved in the maltodextrin metabolism in B. cereus.
蜡状芽孢杆菌是一种杆状、革兰氏阳性、能动且β-溶血的土壤细菌。蜡状芽孢杆菌是一种机会致病菌,通常会导致人类食源性疾病,这是由于摄入含淀粉的食物引起的,症状为腹泻和呕吐。在病原体的众多淀粉酶中,本研究克隆并表征了注释为假定普鲁兰酶(NPase)的基因。该基因编码一个由 586 个氨基酸组成的酶,预测分子量为 68.25 kDa。假定的 NPase 与来自不同细菌的 NPases、环麦芽寡糖酶(CDases)和麦芽糖淀粉酶的同源性为 43.7-59.2%,但与蜡状芽孢杆菌的其他淀粉酶的相似度非常低。该酶的最适 pH 和温度分别为 6.5 和 37℃。该酶的活性受本研究中测试的阳离子降低,完全被 Co 和 Cu 抑制。纯化后的酶对底物的偏好顺序为α-CD>β-CD>淀粉>麦芽糊精>γ-CD,并主要将它们水解为麦芽糖。然而,它不能水解麦芽糖、普鲁兰和糖原。该酶被命名为蜡状芽孢杆菌的 CDase(BcCDase)。此外,该酶可以将从 CDs 和麦芽三糖释放的糖转移到受体分子上。BcCDase 可能参与蜡状芽孢杆菌中麦芽糊精的代谢。