Abbas C A, Groves S, Gander J E
Department of Microbiology and Cell Science, University of Florida, Gainesville 32611.
J Bacteriol. 1989 Oct;171(10):5630-7. doi: 10.1128/jb.171.10.5630-5637.1989.
A serine protease with a pH optimum from 7 to 9 and activity over the range of pH 3 to 10 was isolated and purified from culture filtrates of Penicillium charlesii 16 days after inoculation. The enzyme was purified by the following sequence of procedures: (i) gel permeation chromatography through Sephacryl S-200, (ii) DEAE-Sepharose anion-exchange chromatography, and (iii) fast protein liquid chromatography (FPLC) over Superose 12. Anion-exchange chromatography separated the protease activity into a major activity (protease PII, 82%) and two minor activities (proteases PI and PIII, 10 and 8%, respectively, of the total activity). Protease PII has a molecular mass of 44 kilodaltons. Purified preparations of this enzyme are susceptible to autodegradation. FPLC of heat-treated PII gave one major species (PIIa), whereas untreated enzyme resulted in three species (PIIb, PIIc, and PIId). PIIb and PIIc also catalyzed the hydrolysis of protein (hide powder azure). PIIb and PIIc were in the molecular mass range of 10 to 20 kilodaltons. Protease PII is completely inhibited by phenylmethylsulfonyl fluoride (PMSF). The protease has primary substrate specificity for phenylalanyl or arginyl amino acyl residues attached to amines. The enzyme has amidase, but no esterase activity toward similar synthetic substrates such as occurs with trypsinlike microbial serine proteases. The addition of PMSF (final concentration, 10(-4) M) to 1- and 2-day-old cultures of P. charlesii inhibited the production of extracellular peptidophosphogalactomannan (pPGM) by 41 and 34%, respectively, and inhibited the alkaline protease activity by 85%. These results suggest that the production and release of pPGM may be affected by alkaline protease.
接种16天后,从查氏青霉的培养滤液中分离并纯化出一种丝氨酸蛋白酶,其最适pH为7至9,在pH 3至10范围内均有活性。该酶通过以下步骤进行纯化:(i) 通过Sephacryl S - 200进行凝胶渗透色谱,(ii) DEAE - Sepharose阴离子交换色谱,以及(iii) 在Superose 12上进行快速蛋白质液相色谱(FPLC)。阴离子交换色谱将蛋白酶活性分离为一种主要活性(蛋白酶PII,82%)和两种次要活性(蛋白酶PI和PIII,分别占总活性的10%和8%)。蛋白酶PII的分子量为44千道尔顿。该酶的纯化制剂易发生自降解。热处理后的PII经FPLC得到一种主要成分(PIIa),而未处理的酶则产生三种成分(PIIb、PIIc和PIId)。PIIb和PIIc也催化蛋白质(皮粉天青)的水解。PIIb和PIIc的分子量在10至20千道尔顿范围内。蛋白酶PII被苯甲基磺酰氟(PMSF)完全抑制。该蛋白酶对与胺相连的苯丙氨酰或精氨酰氨基酸残基具有主要底物特异性。该酶具有酰胺酶活性,但对类似的合成底物没有酯酶活性,如胰蛋白酶样微生物丝氨酸蛋白酶。向1日龄和2日龄的查氏青霉培养物中添加PMSF(终浓度为10(-4) M),分别使细胞外肽基磷酸半乳甘露聚糖(pPGM)的产量降低41%和34%,并使碱性蛋白酶活性降低85%。这些结果表明,pPGM的产生和释放可能受碱性蛋白酶的影响。