Capturing an initial intermediate during the P450nor enzymatic reaction using time-resolved XFEL crystallography and caged-substrate

Using photosensitive caged-compound for femtosecond crystallography at X-ray free electron lasers would allow the structure determination of reaction intermediates. Here the authors demonstrate the feasibility of this approach with a caged NO-compound and present the initial NO-bound intermediate st...

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Autores principales: Takehiko Tosha, Takashi Nomura, Takuma Nishida, Naoya Saeki, Kouta Okubayashi, Raika Yamagiwa, Michihiro Sugahara, Takanori Nakane, Keitaro Yamashita, Kunio Hirata, Go Ueno, Tetsunari Kimura, Tamao Hisano, Kazumasa Muramoto, Hitomi Sawai, Hanae Takeda, Eiichi Mizohata, Ayumi Yamashita, Yusuke Kanematsu, Yu Takano, Eriko Nango, Rie Tanaka, Osamu Nureki, Osami Shoji, Yuka Ikemoto, Hironori Murakami, Shigeki Owada, Kensuke Tono, Makina Yabashi, Masaki Yamamoto, Hideo Ago, So Iwata, Hiroshi Sugimoto, Yoshitsugu Shiro, Minoru Kubo
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/09d185f659f54420bd7260a89d764ebf
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spelling oai:doaj.org-article:09d185f659f54420bd7260a89d764ebf2021-12-02T14:42:17ZCapturing an initial intermediate during the P450nor enzymatic reaction using time-resolved XFEL crystallography and caged-substrate10.1038/s41467-017-01702-12041-1723https://doaj.org/article/09d185f659f54420bd7260a89d764ebf2017-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-01702-1https://doaj.org/toc/2041-1723Using photosensitive caged-compound for femtosecond crystallography at X-ray free electron lasers would allow the structure determination of reaction intermediates. Here the authors demonstrate the feasibility of this approach with a caged NO-compound and present the initial NO-bound intermediate structure of cytochrome P450 nitric oxide reductase.Takehiko ToshaTakashi NomuraTakuma NishidaNaoya SaekiKouta OkubayashiRaika YamagiwaMichihiro SugaharaTakanori NakaneKeitaro YamashitaKunio HirataGo UenoTetsunari KimuraTamao HisanoKazumasa MuramotoHitomi SawaiHanae TakedaEiichi MizohataAyumi YamashitaYusuke KanematsuYu TakanoEriko NangoRie TanakaOsamu NurekiOsami ShojiYuka IkemotoHironori MurakamiShigeki OwadaKensuke TonoMakina YabashiMasaki YamamotoHideo AgoSo IwataHiroshi SugimotoYoshitsugu ShiroMinoru KuboNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-9 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Takehiko Tosha
Takashi Nomura
Takuma Nishida
Naoya Saeki
Kouta Okubayashi
Raika Yamagiwa
Michihiro Sugahara
Takanori Nakane
Keitaro Yamashita
Kunio Hirata
Go Ueno
Tetsunari Kimura
Tamao Hisano
Kazumasa Muramoto
Hitomi Sawai
Hanae Takeda
Eiichi Mizohata
Ayumi Yamashita
Yusuke Kanematsu
Yu Takano
Eriko Nango
Rie Tanaka
Osamu Nureki
Osami Shoji
Yuka Ikemoto
Hironori Murakami
Shigeki Owada
Kensuke Tono
Makina Yabashi
Masaki Yamamoto
Hideo Ago
So Iwata
Hiroshi Sugimoto
Yoshitsugu Shiro
Minoru Kubo
Capturing an initial intermediate during the P450nor enzymatic reaction using time-resolved XFEL crystallography and caged-substrate
description Using photosensitive caged-compound for femtosecond crystallography at X-ray free electron lasers would allow the structure determination of reaction intermediates. Here the authors demonstrate the feasibility of this approach with a caged NO-compound and present the initial NO-bound intermediate structure of cytochrome P450 nitric oxide reductase.
format article
author Takehiko Tosha
Takashi Nomura
Takuma Nishida
Naoya Saeki
Kouta Okubayashi
Raika Yamagiwa
Michihiro Sugahara
Takanori Nakane
Keitaro Yamashita
Kunio Hirata
Go Ueno
Tetsunari Kimura
Tamao Hisano
Kazumasa Muramoto
Hitomi Sawai
Hanae Takeda
Eiichi Mizohata
Ayumi Yamashita
Yusuke Kanematsu
Yu Takano
Eriko Nango
Rie Tanaka
Osamu Nureki
Osami Shoji
Yuka Ikemoto
Hironori Murakami
Shigeki Owada
Kensuke Tono
Makina Yabashi
Masaki Yamamoto
Hideo Ago
So Iwata
Hiroshi Sugimoto
Yoshitsugu Shiro
Minoru Kubo
author_facet Takehiko Tosha
Takashi Nomura
Takuma Nishida
Naoya Saeki
Kouta Okubayashi
Raika Yamagiwa
Michihiro Sugahara
Takanori Nakane
Keitaro Yamashita
Kunio Hirata
Go Ueno
Tetsunari Kimura
Tamao Hisano
Kazumasa Muramoto
Hitomi Sawai
Hanae Takeda
Eiichi Mizohata
Ayumi Yamashita
Yusuke Kanematsu
Yu Takano
Eriko Nango
Rie Tanaka
Osamu Nureki
Osami Shoji
Yuka Ikemoto
Hironori Murakami
Shigeki Owada
Kensuke Tono
Makina Yabashi
Masaki Yamamoto
Hideo Ago
So Iwata
Hiroshi Sugimoto
Yoshitsugu Shiro
Minoru Kubo
author_sort Takehiko Tosha
title Capturing an initial intermediate during the P450nor enzymatic reaction using time-resolved XFEL crystallography and caged-substrate
title_short Capturing an initial intermediate during the P450nor enzymatic reaction using time-resolved XFEL crystallography and caged-substrate
title_full Capturing an initial intermediate during the P450nor enzymatic reaction using time-resolved XFEL crystallography and caged-substrate
title_fullStr Capturing an initial intermediate during the P450nor enzymatic reaction using time-resolved XFEL crystallography and caged-substrate
title_full_unstemmed Capturing an initial intermediate during the P450nor enzymatic reaction using time-resolved XFEL crystallography and caged-substrate
title_sort capturing an initial intermediate during the p450nor enzymatic reaction using time-resolved xfel crystallography and caged-substrate
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/09d185f659f54420bd7260a89d764ebf
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