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Comparative study on stabilization mechanism of monomeric cytochrome c(5) from deep-sea piezophilic Shewanella violacea

机译:深海加叠碳含油植物中单体细胞色素C(5)稳定机制的比较研究

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摘要

Monomeric cytochrome c(5) from deep-sea piezophilic Shewanella violacea (SVcytc(5)) was stable against heat and denaturant compared with the homologous protein from shallow-sea piezo-sensitive Shewanella livingstonensis (SLcytc(5)). Here, the SVcytc(5) crystal structure revealed that the Lys-50 side chain on the flexible loop formed a hydrogen bond with heme whereas that of corresponding hydrophobic Leu-50 could not form such a bond in SLcytc(5), which appeared to be one of possible factors responsible for the difference in stability between the two proteins. This structural insight was confirmed by a reciprocal mutagenesis study on the thermal stability of these two proteins. As SVcytc(5) was isolated from a deep-sea piezophilic bacterium, the present comparative study indicates that adaptation of monomeric SVcytc(5) to high pressure environments results in stabilization against heat.
机译:与来自浅海压敏雪纳兰岛利文司司(Slcytc(5))的同源蛋白相比,来自深海轻叠肠道vircacea(Svcytc(5))的单体细胞色素C(5)稳定,对热和变性剂稳定。 这里,SVCytC(5)晶体结构显示柔性环上的Lys-50侧链与血红素形成氢键,而相应的疏水性Leu-50的氢键不能在SLCYTC(5)中形成这种粘合,这似乎是 成为负责两种蛋白质之间稳定性差异的可能因素之一。 通过对这两种蛋白质的热稳定性的互殖诱变研究证实了这种结构洞察力。 随着SVCYTC(5)与深海水化细菌分离,本比较研究表明,适应单体SVCYTC(5)对高压环境导致热量稳定。

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