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首页> 外文期刊>Biotechnology and bioprocess engineering >Repression of Alkaline Protease in Salt-tolerant Alkaliphilic Streptomyces clavuligerus Strain Mit-1 under the Influence of Amino Acids in Minimal Medium
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Repression of Alkaline Protease in Salt-tolerant Alkaliphilic Streptomyces clavuligerus Strain Mit-1 under the Influence of Amino Acids in Minimal Medium

机译:氨基酸在最小培养基中对耐盐碱性嗜碱链霉菌clavuligerus菌株Mit-1碱性蛋白酶的抑制

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摘要

A salt-tolerant alkaliphilic actinomycete (strain Mit-1) was isolated from Mithapur (Western Coast, Gujarat, India) and identified as Streptomyces clavuligerus. Based on 16S rRNA gene sequence (EU146061) homology, it was found to be related to Streptomyces sp. (AY641538.1). The strain secreted alkaline protease optimally at 5% NaCl and pH 9 during the early stationary phase and could utilize the amino acids methionine, alanine, leucine, phenylalanine, tyrosine, tryptophan, arginine, asparagine, histidine, and glutamic acid as the sole source of nitrogen. Above their threshold levels, these amino acids caused repression of alkaline protease production. Protease production with methionine (120 U/mL), histidine (140 U/ mL), and aspartic acid (118 U/mL) was comparable to that with complex medium (130 U/mL). However, the production increased with an increasing number of different amino acids in the growth medium. Repression of protease production as influenced by the amino acids generated valuable information on enzyme synthesis in actinomy-cetes, as such data is scarce. Optimization of the conditions for enzyme production by actinomycetes in general, and in haloalkaliphilic actinomycetes in particular, appears to be an attractive proposition for biocatalysis.
机译:从Mithapur(印度西海岸,印度古吉拉特邦)分离出耐盐碱放线放线菌(Mit-1株),鉴定为链霉菌。基于16S rRNA基因序列(EU146061)的同源性,发现它与链霉菌属(Streptomyces sp。)有关。 (AY641538.1)。该菌株在早期固定期最理想地在5%NaCl和pH 9下分泌碱性蛋白酶,并且可以利用蛋氨酸,丙氨酸,亮氨酸,苯丙氨酸,酪氨酸,色氨酸,精氨酸,天冬酰胺,组氨酸和谷氨酸等氨基酸作为唯一来源。氮。这些氨基酸超过其阈值水平,会抑制碱性蛋白酶的产生。蛋氨酸(120 U / mL),组氨酸(140 U / mL)和天冬氨酸(118 U / mL)产生的蛋白酶与复杂培养基(130 U / mL)产生的蛋白酶相当。然而,产量随着生长培养基中不同氨基酸数量的增加而增加。由于氨基酸的影响,蛋白酶产生的抑制在放线菌中产生了关于酶合成的有价值的信息,因为这种数据很少。通常,优化放线菌,特别是卤代嗜碱放线菌的酶生产条件,似乎是生物催化的诱人命题。

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