Cytochrome c$^\prime$-$\beta$ is a heme protein that belongs to the cytochrome P460 family and consists of homodimeric subunits with a predominantly antiparallel $\beta$-sheet fold. Here, the crystal structure of cytochrome c$^\prime$-$\beta$ from the thermophilic Thermus thermophilus (TTCP-$\beta$) is reported at 1.74\AA resolution. TTCP-$\beta$ has a typical antiparallel $\beta$-sheet fold similar to that of cytochrome c$^\prime$-$\beta$ from the moderately thermophilic Methylococcus capsulatus (MCCP-$\beta$). The phenylalanine cap structure around the distal side of the heme is also similar in TTCP-$\beta$ and MCCP-$\beta$, indicating that both proteins similarly bind nitric oxide and carbon monoxide, as observed spectroscopically. Notably, TTCP-$\beta$ exhibits a denaturation temperature of 117$^\circ$C, which is higher than that of MCCP-$\beta$. Mutational analysis reveals that the increased homodimeric interface area of TTCP-$\beta$ contributes to its high thermal stability. Furthermore, 14 proline residues, which are mostly located in the TTCP-$\beta$ loop regions, possibly contribute to the rigid loop structure compared with MCCP-$\beta$, which has only six proline residues. These findings, together with those from phylogenetic analysis, suggest that the structures of Thermus cytochromes c$^\prime$-$\beta$, including TTCP-$\beta$, are optimized for function under the high-temperature conditions in which the source organisms live.
%0 Journal Article
%1 Yoshimi:rr5220
%A Yoshimi, Taisuke
%A Fujii, Sotaro
%A Oki, Hiroya
%A Igawa, Takeshi
%A Adams, Hannah R.
%A Ueda, Kengo
%A Kawahara, Kazuki
%A Ohkubo, Tadayasu
%A Hough, Michael A.
%A Sambongi, Yoshihiro
%D 2022
%J Acta Crystallographica Section F
%K myown
%N 6
%P 217--225
%R 10.1107/S2053230X22005088
%T Crystal structure of thermally stable homodimeric cytochrome c$^\prime$-$\beta$ from Thermus thermophilus
%U https://doi.org/10.1107/S2053230X22005088
%V 78
%X Cytochrome c$^\prime$-$\beta$ is a heme protein that belongs to the cytochrome P460 family and consists of homodimeric subunits with a predominantly antiparallel $\beta$-sheet fold. Here, the crystal structure of cytochrome c$^\prime$-$\beta$ from the thermophilic Thermus thermophilus (TTCP-$\beta$) is reported at 1.74\AA resolution. TTCP-$\beta$ has a typical antiparallel $\beta$-sheet fold similar to that of cytochrome c$^\prime$-$\beta$ from the moderately thermophilic Methylococcus capsulatus (MCCP-$\beta$). The phenylalanine cap structure around the distal side of the heme is also similar in TTCP-$\beta$ and MCCP-$\beta$, indicating that both proteins similarly bind nitric oxide and carbon monoxide, as observed spectroscopically. Notably, TTCP-$\beta$ exhibits a denaturation temperature of 117$^\circ$C, which is higher than that of MCCP-$\beta$. Mutational analysis reveals that the increased homodimeric interface area of TTCP-$\beta$ contributes to its high thermal stability. Furthermore, 14 proline residues, which are mostly located in the TTCP-$\beta$ loop regions, possibly contribute to the rigid loop structure compared with MCCP-$\beta$, which has only six proline residues. These findings, together with those from phylogenetic analysis, suggest that the structures of Thermus cytochromes c$^\prime$-$\beta$, including TTCP-$\beta$, are optimized for function under the high-temperature conditions in which the source organisms live.
@article{Yoshimi:rr5220,
abstract = {Cytochrome {\it c}{$^\prime$}-{$\beta$} is a heme protein that belongs to the cytochrome P460 family and consists of homodimeric subunits with a predominantly antiparallel {$\beta$}-sheet fold. Here, the crystal structure of cytochrome {\it c}{$^\prime$}-{$\beta$} from the thermophilic {\it Thermus thermophilus} (TTCP-{$\beta$}) is reported at 1.74{\AA} resolution. TTCP-{$\beta$} has a typical antiparallel {$\beta$}-sheet fold similar to that of cytochrome {\it c}{$^\prime$}-{$\beta$} from the moderately thermophilic {\it Methylococcus capsulatus} (MCCP-{$\beta$}). The phenylalanine cap structure around the distal side of the heme is also similar in TTCP-{$\beta$} and MCCP-{$\beta$}, indicating that both proteins similarly bind nitric oxide and carbon monoxide, as observed spectroscopically. Notably, TTCP-{$\beta$} exhibits a denaturation temperature of 117{$^\circ$}C, which is higher than that of MCCP-{$\beta$}. Mutational analysis reveals that the increased homodimeric interface area of TTCP-{$\beta$} contributes to its high thermal stability. Furthermore, 14 proline residues, which are mostly located in the TTCP-{$\beta$} loop regions, possibly contribute to the rigid loop structure compared with MCCP-{$\beta$}, which has only six proline residues. These findings, together with those from phylogenetic analysis, suggest that the structures of {\it Thermus} cytochromes {\it c}{$^\prime$}-{$\beta$}, including TTCP-{$\beta$}, are optimized for function under the high-temperature conditions in which the source organisms live.},
added-at = {2023-06-06T16:04:56.000+0200},
author = {Yoshimi, Taisuke and Fujii, Sotaro and Oki, Hiroya and Igawa, Takeshi and Adams, Hannah R. and Ueda, Kengo and Kawahara, Kazuki and Ohkubo, Tadayasu and Hough, Michael A. and Sambongi, Yoshihiro},
biburl = {https://www.bibsonomy.org/bibtex/2b2dc49292c9bb173a74eaa39d26cef6c/tigawa},
doi = {10.1107/S2053230X22005088},
interhash = {cdc664844e0a2340eed0cbc48fe2320e},
intrahash = {b2dc49292c9bb173a74eaa39d26cef6c},
journal = {Acta Crystallographica Section F},
keywords = {myown},
month = jun,
number = 6,
pages = {217--225},
timestamp = {2023-06-06T16:04:56.000+0200},
title = {{Crystal structure of thermally stable homodimeric cytochrome {\it c}{$^\prime$}-{$\beta$} from {\it Thermus thermophilus}}},
url = {https://doi.org/10.1107/S2053230X22005088},
volume = 78,
year = 2022
}