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首页> 外文期刊>FEBS Letters >Evidence that the glucoamylases and α‐amylase secreted by Aspergillus niger are proteolytically processed products of a precursor enzyme
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Evidence that the glucoamylases and α‐amylase secreted by Aspergillus niger are proteolytically processed products of a precursor enzyme

机译:黑曲霉分泌的葡糖淀粉酶和α-淀粉酶是前体酶经蛋白水解加工的产物的证据

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>A 125-kDa starch hydrolysing enzyme of Aspergillus niger characterised by its ability to dextrinise and saccharify starch [Suresh et al. (1999) Appl. Microbiol. Biotechnol. 51, 673–675] was also found to possess activity towards raw starch. Segregation of these activities in the 71-kDa glucoamylase and a 53-kDa α-amylase-like enzyme supported by antibody cross-reactivity studies and the isolation of mutants based on assay screens for the secretion of particular enzyme forms revealed the 125-kDa starch hydrolysing enzyme as their precursor. N-terminal sequence analysis further revealed that the 71-kDa glucoamylase was the N-terminal product of the precursor enzyme. Immunological cross reactivity of the 53-kDa amylase with antibodies raised against the precursor enzyme but not with the 71- and 61-kDa glucoamylase antibodies suggested that this enzyme activity is represented by the C-terminal fragment of the precursor. The N-terminal sequence of the 53-kDa protein showed similarity to the reported Taka amylase of Aspergillus oryzae. Antibody cross-reactivity to a 10-kDa non-enzymic peptide and a 61-kDa glucoamylase described these proteins as products of the 71-kDa glucoamylase. Identification of only the precursor starch hydrolysing enzyme in the protein extracts of fungal protoplasts suggested proteolytic processing in the cellular periplasmic space as the cause for the secretion of multiple forms of amylases by A. niger.
机译:>黑曲霉的125 kDa淀粉水解酶,其特征在于其能够将淀粉糊精和糖化的能力[Suresh et al.。 (1999)应用。微生物。生物技术。 51,673–675]也被发现对生淀粉具有活性。在抗体交叉反应性研究的支持下,这些活性在71-kDa葡糖淀粉酶和53-kDaα-淀粉酶样酶中的分离以及基于特定酶形式分泌的测定筛选的突变体分离揭示了125-kDa淀粉水解酶为其前体。 N-末端序列分析进一步表明71-kDa葡糖淀粉酶是前体酶的N-末端产物。 53 kDa淀粉酶与针对前体酶的抗体的免疫学交叉反应性,而不与71 kDa和61 kDa葡糖淀粉酶抗体的免疫学交叉反应性表明,该酶活性由前体的C端片段代表。 53-kDa蛋白的N-末端序列与米曲霉的塔卡淀粉酶报道相似。与10 kDa非酶肽和61 kDa葡糖淀粉酶的抗体交叉反应性将这些蛋白质描述为71 kDa葡糖淀粉酶的产物。真菌原生质体蛋白提取物中仅前体淀粉水解酶的鉴定表明,细胞周质空间中的蛋白水解过程是 A分泌多种形式淀粉酶的原因。尼日尔

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