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嗜热栖热菌细胞色素c(555)的超稳定性和晶体结构

Hyperstability and crystal structure of cytochrome c(555) from hyperthermophilic Aquifex aeolicus.

作者信息

Obuchi Marii, Kawahara Kazuki, Motooka Daisuke, Nakamura Shota, Yamanaka Masaru, Takeda Taku, Uchiyama Susumu, Kobayashi Yuji, Ohkubo Tadayasu, Sambongi Yoshihiro

机构信息

Hiroshima University, Japan.

出版信息

Acta Crystallogr D Biol Crystallogr. 2009 Aug;65(Pt 8):804-13. doi: 10.1107/S0907444909017314. Epub 2009 Jul 17.

DOI:10.1107/S0907444909017314
PMID:19622864
Abstract

In order to elucidate the relationship between the stability and the structure of the monohaem cytochrome c(555) (AA c(555)) from the hyperthermophilic bacterium Aquifex aeolicus, chemical denaturation and crystal structure determination were carried out. AA c(555) exhibited higher stability than the thermophilic Hydrogenobacter thermophilus cytochrome c(552) (HT c(552)), which is one of the most stable cytochromes c. The three-dimensional crystal structure of AA c(555), which was determined using the multiple anomalous dispersion technique at 1.15 A resolution, included a unique 14-residue extra helix, while the side-chain interactions of several amino-acid residues responsible for the stability of HT c(552) were conserved in AA c(555). The side chain of the Met61 residue in the extra helix was aligned towards the haem, forming a coordination bond between the Met S and haem Fe atoms. In other cytochromes c the corresponding regions always form Omega loops which also include the haem-liganding Met residue and are known to be involved in the initial step in cytochrome c denaturation. The formation of the extra helix in AA c(555) results in the highest helix content, 59.8%, among the monohaem cytochromes c. The extra helix should mainly contribute to the hyperstability of AA c(555) and is presumed to be a novel strategy of cytochromes c for adaptation to a hyperthermophilic environment.

摘要

为了阐明嗜热细菌嗜水气单胞菌的单血红素细胞色素c(555)(AA c(555))的稳定性与结构之间的关系,进行了化学变性和晶体结构测定。AA c(555)表现出比嗜热嗜热栖热菌细胞色素c(552)(HT c(552))更高的稳定性,HT c(552)是最稳定的细胞色素c之一。使用多波长反常散射技术在1.15 Å分辨率下测定的AA c(555)的三维晶体结构包括一个独特的14个残基的额外螺旋,而负责HT c(552)稳定性的几个氨基酸残基的侧链相互作用在AA c(555)中得以保留。额外螺旋中Met61残基的侧链朝向血红素排列,在Met S和血红素Fe原子之间形成配位键。在其他细胞色素c中,相应区域总是形成Ω环,其中也包括血红素配位的Met残基,并且已知参与细胞色素c变性的初始步骤。AA c(555)中额外螺旋的形成导致单血红素细胞色素c中螺旋含量最高,为59.8%。额外螺旋应主要有助于AA c(555)的超稳定性,并且被认为是细胞色素c适应嗜热环境的一种新策略。

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