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Spatially restricted substrate-binding site of cortisol-synthesizing CYP11B1 limits multiple hydroxylations and hinders aldosterone synthesis.
Mukai, Kuniaki; Sugimoto, Hiroshi; Kamiya, Katsumasa; Suzuki, Reiko; Matsuura, Tomomi; Hishiki, Takako; Shimada, Hideo; Shiro, Yoshitsugu; Suematsu, Makoto; Kagawa, Norio.
Afiliação
  • Mukai K; Department of Biochemistry, Keio University School of Medicine, Shinjuku, Tokyo 160-8582, Japan.
  • Sugimoto H; Medical Education Center, Keio University School of Medicine, Shinjuku, Tokyo 160-8582, Japan.
  • Kamiya K; Synchrotron Radiation Life Science Instrumentation Team, RIKEN SPring-8 Center, Sayo, Hyogo 679-5148, Japan.
  • Suzuki R; Center for Basic Education and Integrated Learning, Kanagawa Institute of Technology, Atsugi, Kanagawa 243-0292, Japan.
  • Matsuura T; Department of Biochemistry, Keio University School of Medicine, Shinjuku, Tokyo 160-8582, Japan.
  • Hishiki T; Department of Biochemistry, Keio University School of Medicine, Shinjuku, Tokyo 160-8582, Japan.
  • Shimada H; Clinical and Translational Research Center, Keio University School of Medicine, Shinjuku, Tokyo 160-8582, Japan.
  • Shiro Y; Department of Biochemistry, Keio University School of Medicine, Shinjuku, Tokyo 160-8582, Japan.
  • Suematsu M; Clinical and Translational Research Center, Keio University School of Medicine, Shinjuku, Tokyo 160-8582, Japan.
  • Kagawa N; Department of Biochemistry, Keio University School of Medicine, Shinjuku, Tokyo 160-8582, Japan.
Curr Res Struct Biol ; 3: 192-205, 2021.
Article em En | MEDLINE | ID: mdl-34485929
ABSTRACT
Human cytochromes P45011ß (CYP11B1) and P450aldo (CYP11B2) are monooxygenases that synthesize cortisol through steroid 11ß-hydroxylation and aldosterone through a three-step process comprising 11ß-hydroxylation and two 18-hydroxylations, respectively. CYP11B1 also catalyzes 18-monohydroxylation and 11ß,18-dihydroxylation. To study the molecular basis of such catalytic divergence of the two enzymes, we examined a CYP11B1 mutant (Mt-CYP11B1) with amino acid replacements on the distal surface by determining the catalytic activities and crystal structure in the metyrapone-bound form at 1.4-Å resolution. Mt-CY11B1 retained both 11ß-hydroxylase and 18-hydroxylase activities of the wild type (Wt-CYP11B1) but lacked 11ß,18-dihydroxylase activity. Comparisons of the crystal structure of Mt-CYP11B1 to those of Wt-CYP11B1 and CYP11B2 that were already reported show that the mutation reduced the innermost space putatively surrounding the C3 side of substrate 11-deoxycorticosterone (DOC) bound to Wt-CYP11B1, while the corresponding space in CYP11B2 is enlarged markedly and accessible to bulk water through a channel. Molecular dynamics simulations of their DOC-bound forms supported the above findings and revealed that the enlarged space of CYP11B2 had a hydrogen bonding network involving water molecules that position DOC. Thus, upon positioning 11ß-hydroxysteroid for 18-hydroxylation in their substrate-binding sites, steric hindrance could occur more strongly in Mt-CYP11B1 than in Wt-CYP11B1 but less in CYP11B2. Our investigation employing Mt-CYP11B1 sheds light on the divergence in structure and function between CYP11B1 and CYP11B2 and suggests that CYP11B1 with spatially-restricted substrate-binding site serves as 11ß-hydroxylase, while CYP11B2 with spatially-extended substrate-binding site successively processes additional 18-hydroxylations to produce aldosterone.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Curr Res Struct Biol Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Japão

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Curr Res Struct Biol Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Japão