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芽孢杆菌属CL18的蛋白水解系统能够广泛降解羽毛并水解多种蛋白质底物。

Proteolytic system of Bacillus sp. CL18 is capable of extensive feather degradation and hydrolysis of diverse protein substrates.

作者信息

Rieger T J, de Oliveira C T, Pereira J Q, Brandelli A, Daroit D J

机构信息

a Laboratório de Microbiologia , Universidade Federal da Fronteira Sul (UFFS) , Cerro Largo , Brazil.

b Laboratório de Bioquímica e Microbiologia Aplicada, Departamento de Ciência de Alimentos , Universidade Federal do Rio Grande do Sul , Porto Alegre , Brazil.

出版信息

Br Poult Sci. 2017 Jun;58(3):329-335. doi: 10.1080/00071668.2017.1293229. Epub 2017 Mar 17.

Abstract
  1. Feathers are recalcitrant protein-rich wastes produced in huge amounts by poultry processing for meat production. Hence, feather bioconversion and protease production by Bacillus sp. CL18 were investigated. 2. Bacillus sp. CL18 demonstrated a remarkable feather-degrading potential. Through cultivations on feather broth (10 g l feathers), 94.5% ± 3% of whole feathers were degraded after 4 d. Increases in soluble protein contents were observed and protease production was maximal also at d 4. This strain produced diverse proteolytic enzymes during growth. 3. Crude protease displayed optimal activity at 55°C (50-62°C), pH 8.0 (7.0-9.0) and a low thermal stability. Proteolytic activity increased in the presence of Ca, Mg, Triton X-100, Tween 20 and dimethyl sulphoxide. Inhibition profile indicated that crude protease contains, mainly, serine proteases. Enzyme preparation hydrolysed mainly casein and soy protein isolate. 4. The keratinolytic capacity of Bacillus sp. CL18 at moderate temperatures (30°C) might be appropriate for feather conversion, resulting in protein hydrolysates and proteolytic enzymes. Proteases are postulated to be added-value products that can be obtained from such a bioprocess.
摘要
  1. 羽毛是肉类生产的家禽加工过程中产生的大量难以处理的富含蛋白质的废弃物。因此,对芽孢杆菌CL18的羽毛生物转化和蛋白酶生产进行了研究。2. 芽孢杆菌CL18表现出显著的羽毛降解潜力。在羽毛肉汤(10 g/l羽毛)上培养4天后,94.5%±3%的整根羽毛被降解。观察到可溶性蛋白质含量增加,蛋白酶产量在第4天也达到最高。该菌株在生长过程中产生多种蛋白水解酶。3. 粗蛋白酶在55°C(50 - 62°C)、pH 8.0(7.0 - 9.0)时表现出最佳活性,且热稳定性较低。在Ca、Mg、Triton X - 100、吐温20和二甲基亚砜存在下,蛋白水解活性增加。抑制谱表明粗蛋白酶主要含有丝氨酸蛋白酶。酶制剂主要水解酪蛋白和大豆分离蛋白。4. 芽孢杆菌CL18在中等温度(30°C)下的角蛋白分解能力可能适合羽毛转化,从而产生蛋白质水解物和蛋白水解酶。蛋白酶被认为是可以从这种生物过程中获得的增值产品。

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