Beauvais A, Drake R, Ng K, Diaquin M, Latgé J P
Unité de Mycologie, Institut Pasteur, Paris, France.
J Gen Microbiol. 1993 Dec;139(12):3071-8. doi: 10.1099/00221287-139-12-3071.
1,3-beta-Glucan synthase activity has been detected in a membrane fraction extracted from the mycelium of the filamentous fungus Aspergillus fumigatus. The enzyme was solubilized by CHAPS and stabilized by filtration on a Bio-gel P30 column. Highest activity was obtained in the early exponential phase of growth. Four factors--GTP, NaF, sucrose and EDTA--added during the extraction procedure, were essential for optimal 1,3-beta-glucan synthase activity. The soluble enzyme preparation was photolabelled with 5-azido-[32P]UDP-glucose and 5-125IASA-UDP-glucose which bind covalently to the enzyme after UV irradiation. These UDP-glucose substrate analogues were competitive inhibitors of the enzyme with a Ki of 1.42 mM and 0.3 mM for 5-azido-UDP-glucose and 5-ASA-UDP-glucose, respectively (Km for UDP-glucose = 1.9 mM). Potential UDP-glucose-binding polypeptides were identified with molecular masses of 31, 50 and 115 kDa.
已在从丝状真菌烟曲霉的菌丝体中提取的膜组分中检测到1,3-β-葡聚糖合酶活性。该酶通过CHAPS溶解,并通过在Bio-gel P30柱上过滤而稳定。在生长的指数早期阶段获得最高活性。在提取过程中添加的四个因素——GTP、NaF、蔗糖和EDTA——对于最佳的1,3-β-葡聚糖合酶活性至关重要。可溶性酶制剂用5-叠氮基-[32P]UDP-葡萄糖和5-125IASA-UDP-葡萄糖进行光标记,在紫外线照射后它们与酶共价结合。这些UDP-葡萄糖底物类似物是该酶的竞争性抑制剂,5-叠氮基-UDP-葡萄糖和5-ASA-UDP-葡萄糖的Ki分别为1.42 mM和0.3 mM(UDP-葡萄糖的Km = 1.9 mM)。鉴定出潜在的UDP-葡萄糖结合多肽,其分子量分别为31、50和115 kDa。