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


ABSTRACT: Time-resolved serial femtosecond crystallography using an X-ray free electron laser (XFEL) in conjunction with a photosensitive caged-compound offers a crystallographic method to track enzymatic reactions. Here we demonstrate the application of this method using fungal NO reductase, a heme-containing enzyme, at room temperature. Twenty milliseconds after caged-NO photolysis, we identify a NO-bound form of the enzyme, which is an initial intermediate with a slightly bent Fe-N-O coordination geometry at a resolution of 2.1?Å. The NO geometry is compatible with those analyzed by XFEL-based cryo-crystallography and QM/MM calculations, indicating that we obtain an intact Fe3+-NO coordination structure that is free of X-ray radiation damage. The slightly bent NO geometry is appropriate to prevent immediate NO dissociation and thus accept H- from NADH. The combination of using XFEL and a caged-compound is a powerful tool for determining functional enzyme structures during catalytic reactions at the atomic level.

SUBMITTER: Tosha T 

PROVIDER: S-EPMC5691058 | biostudies-literature | 2017 Nov

REPOSITORIES: biostudies-literature

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

Tosha Takehiko T   Nomura Takashi T   Nishida Takuma T   Saeki Naoya N   Okubayashi Kouta K   Yamagiwa Raika R   Sugahara Michihiro M   Nakane Takanori T   Yamashita Keitaro K   Hirata Kunio K   Ueno Go G   Kimura Tetsunari T   Hisano Tamao T   Muramoto Kazumasa K   Sawai Hitomi H   Takeda Hanae H   Mizohata Eiichi E   Yamashita Ayumi A   Kanematsu Yusuke Y   Takano Yu Y   Nango Eriko E   Tanaka Rie R   Nureki Osamu O   Shoji Osami O   Ikemoto Yuka Y   Murakami Hironori H   Owada Shigeki S   Tono Kensuke K   Yabashi Makina M   Yamamoto Masaki M   Ago Hideo H   Iwata So S   Sugimoto Hiroshi H   Shiro Yoshitsugu Y   Kubo Minoru M  

Nature communications 20171117 1


Time-resolved serial femtosecond crystallography using an X-ray free electron laser (XFEL) in conjunction with a photosensitive caged-compound offers a crystallographic method to track enzymatic reactions. Here we demonstrate the application of this method using fungal NO reductase, a heme-containing enzyme, at room temperature. Twenty milliseconds after caged-NO photolysis, we identify a NO-bound form of the enzyme, which is an initial intermediate with a slightly bent Fe-N-O coordination geome  ...[more]

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