| Literature DB >> 27648635 |
Misa Masanari1, Sotaro Fujii1, Kazuki Kawahara2, Hiroya Oki2, Hirofumi Tsujino2, Takahiro Maruno3, Yuji Kobayashi3, Tadayasu Ohkubo2, Satoshi Wakai4, Yoshihiro Sambongi1.
Abstract
Monomeric cytochrome c5 from deep-sea piezophilic Shewanella violacea (SVcytc5) was stable against heat and denaturant compared with the homologous protein from shallow-sea piezo-sensitive Shewanella livingstonensis (SLcytc5). Here, the SVcytc5 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 SLcytc5, 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 SVcytc5 was isolated from a deep-sea piezophilic bacterium, the present comparative study indicates that adaptation of monomeric SVcytc5 to high pressure environments results in stabilization against heat.Entities:
Keywords: Shewanella violacea; crystal structure; cytochrome c5; pressure environment; stability
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Year: 2016 PMID: 27648635 DOI: 10.1080/09168451.2016.1232155
Source DB: PubMed Journal: Biosci Biotechnol Biochem ISSN: 0916-8451 Impact factor: 2.043