Matsui Tatsunobu, Yamada Yukie, Mitsuya Hideki, Shigeri Yasushi, Yoshida Yasukazu, Saito Yoshiro, Matsui Hiroshi, Watanabe Kunihiko
Division of Applied Life Sciences, Graduate School of Life and Environmental Sciences, Kyoto Prefectural University, Shimogamo, Sakyo, Kyoto, 606-8522, Japan.
Appl Microbiol Biotechnol. 2009 Apr;82(5):941-50. doi: 10.1007/s00253-009-1880-4. Epub 2009 Feb 5.
The sustainable and practical degradation of intact chicken feathers by a newly isolated thermophilic bacterium Meiothermus ruber H328 was presented with extensive data. Aerobic cultivation with moderately thermophilic strain H328 at 55 degrees C for 6 days led to the apparently complete decay of the truly intact feathers and provided 1.89 mmol free amino acids and 7.32 mmol acid-hydrolyzed amino acids from 50 ml of culture containing 3% (w/v) intact chicken feathers. The amino acid components in the soluble fraction of the culture conspicuously agreed with those calculated from the intact feathers. This demonstrated that more than 55% of total keratin proteins were solubilized from the intact chicken feathers into the culture in the forms of free amino acid and/or soluble oligopeptide, and most of them are directly derived from the intact feathers by proteolytic digestion. Feather degradation by strain H328 surpasses that by any other microorganisms with regard to degradation efficiency, absence of requirement for pretreatment of the feathers, and product fidelity in the amino acid component. Furthermore, the culture containing the degradative products from the intact feathers was subjected to matrix-assisted laser desorption ionization mass spectrometry-time-of-flight analysis, and it was revealed that the molecular masses of the solubilized products, oligopeptides, were less than 1,000. This result allows us to investigate the bioactivities of oligopeptides derived from the degradation of chicken feathers by cultivation with strain H328 as well as the production of amino acids for feedstuffs.
新分离的嗜热细菌红嗜热栖热菌H328对完整鸡毛的可持续且实用的降解过程有大量数据呈现。在55摄氏度下用嗜热菌株H328进行需氧培养6天,导致真正完整的鸡毛明显完全腐烂,从50毫升含3%(w/v)完整鸡毛的培养物中产生了1.89毫摩尔游离氨基酸和7.32毫摩尔酸水解氨基酸。培养物可溶部分中的氨基酸成分与根据完整鸡毛计算得出的成分明显一致。这表明超过55%的总角蛋白以游离氨基酸和/或可溶性寡肽的形式从完整鸡毛溶解到培养物中,并且其中大部分是通过蛋白水解消化直接从完整鸡毛中产生的。就降解效率、无需对鸡毛进行预处理以及氨基酸成分的产物保真度而言,菌株H328对鸡毛的降解超过了任何其他微生物。此外,对含有完整鸡毛降解产物的培养物进行基质辅助激光解吸电离飞行时间质谱分析,结果表明溶解产物寡肽的分子量小于1000。这一结果使我们能够通过用菌株H328培养来研究鸡毛降解产生的寡肽的生物活性以及用于饲料的氨基酸生产。