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首页> 外文期刊>Marine biotechnology >Novel Use for the Osmolyte Trimethylamine N-oxide: Retaining the Psychrophilic Characters of Cold-Adapted Protease Deseasin MCP-01 and Simultaneously Improving its Thermostability
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Novel Use for the Osmolyte Trimethylamine N-oxide: Retaining the Psychrophilic Characters of Cold-Adapted Protease Deseasin MCP-01 and Simultaneously Improving its Thermostability

机译:Osmolyte三甲胺N-氧化物的新用途:保持冷适应蛋白酶Deseasin MCP-01的嗜冷特性并同时提高其热稳定性

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The low thermostability of cold-adapted enzymes is a main barrier for their application. A simple and reliable method to improve both the stability and the activity of cold-adapted enzymes is still rare. As a protein stabilizer, the effect of trimethylamine N-oxide (TMAO) on a cold-adapted enzyme or protein has not been reported. In this study, effects of TMAO on the structure, activity, and stability of a cold-adapted protease, deseasin MCP-01, were studied. Deseasin MCP-01 is a new type of subtilase from deep-sea psychrotolerant bacterium Pseudoalteromonas sp. SM9913. Fluorescence and CD spectra showed that TMAO did not perturb the structure of MCP-01 and therefore kept the conformational flexibility of MCP-01. One molar TMAO improved the activity of MCP-01 by 174% and its catalytic efficiency (k cat /K mZ by 290% at 0pC. In the presence of 1 M TMAO, the thermostability (t /) of MCP-01 increased by two- to fivefold at 60o40pC. Structural analysis with CD showed that 1 M TMAO could keep the structural thermostability of MCP-01 close to that of its mesophilic counterpart subtilisin Carlsberg when incubated at 40pC for 1 h. Moreover, 1 M TMAO increased the melting temperature (T m) of MCP-01 by 10.5pC. These results suggest that TMAO can be used as a perfect stabilizing agent to retain the psychrophilic characters of a cold-adapted enzyme and simultaneously improve its thermostability.
机译:适应冷的酶的低热稳定性是其应用的主要障碍。一种既简单又可靠的同时提高冷适应酶的稳定性和活性的方法仍然很少。作为蛋白质稳定剂,尚未报道三甲胺N-氧化物(TMAO)对冷适应的酶或蛋白质的作用。在这项研究中,研究了TMAO对冷适应的蛋白酶Deseasin MCP-01的结构,活性和稳定性的影响。 Deseasin MCP-01是一种来自深海抗精神病菌Pseudoalteromonas sp。的新型枯草蛋白酶。 SM9913。荧光和CD光谱表明,TMAO不干扰MCP-01的结构,因此保持了MCP-01的构象柔性。一摩尔TMAO在0pC时将MCP-01的活性提高了174%,并将其催化效率(k cat / K mZ提高了290%)。在存在1 M TMAO的情况下,MCP-01的热稳定性(t /)增加了2 -在60o40pC时增加到5倍。用CD进行的结构分析表明,当在40pC孵育1 h时,1 M TMAO可使MCP-01的结构热稳定性接近其嗜温的枯草杆菌蛋白酶Carlsberg。此外,1 M TMAO可以提高熔融温度MCP-01的(T m)为10.5pC。这些结果表明TMAO可以用作保留冷适应酶的嗜冷特性并同时提高其热稳定性的理想稳定剂。

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