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Effect of amino acids on the repression of alkaline protease synthesis in haloalkaliphilic Nocardiopsis dassonvillei

机译:氨基酸对嗜盐嗜碱性诺卡氏菌拟南芥碱性蛋白酶合成的抑制作用

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摘要

A newly isolated salt-tolerant alkaliphilic actinomycete, Nocardiopsis dassonvillei strain OK-18 grows on mineral salts medium with glucose as carbon source. It also grows and produces protease with amino acids as sole carbon source. The synthesis of extracellular alkaline protease parallel to growth was repressible by substrate concentrations. The absolute production of the protease was delinked with growth under nutritional stress, as protease production was high, despite poor growth. When amino acids served as the sole source of carbon and nitrogen, the enzyme production was significantly controlled by the number of amino acids. Maximal protease production was achieved with proline, asparagine, tyrosine, alanine, methionine and valine as sole source of carbon and nitrogen in minimal medium. With the increasing number of different amino acids in the presence and absence of glucose, the protease production was synergistically lower as compared to complex medium.
机译:一种新分离的耐盐碱放线放线菌,Nocardiopsis dassonvillei菌株OK-18在以葡萄糖为碳源的矿物盐培养基上生长。它还生长并产生以氨基酸为唯一碳源的蛋白酶。底物浓度可抑制与生长平行的细胞外碱性蛋白酶的合成。蛋白酶的绝对产量与在营养胁迫下的生长脱钩,尽管尽管生长较差,但蛋白酶的产量却很高。当氨基酸用作碳和氮的唯一来源时,酶的产生受到氨基酸数量的显着控制。在最低培养基中,脯氨酸,天冬酰胺,酪氨酸,丙氨酸,蛋氨酸和缬氨酸是唯一的碳和氮源,可实现最大的蛋白酶生产。与存在和不存在葡萄糖的情况下,随着不同氨基酸数量的增加,与复杂培养基相比,蛋白酶的生产协同降低。

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