Literature DB >> 16960392

CYP724B2 and CYP90B3 function in the early C-22 hydroxylation steps of brassinosteroid biosynthetic pathway in tomato.

Toshiyuki Ohnishi1, Bunta Watanabe, Kanzo Sakata, Masaharu Mizutani.   

Abstract

We characterized a new cytochrome P450 monooxygenase (P450), CYP724B2, from tomato (Lycopersicon esculentum). CYP724B2 showed 42% and 62% amino acid sequence identity with Arabidopsis DWARF4/CYP90B1 and rice DWARF11/CYP724B1 respectively. Functional assay of CYP724B2 heterologously expressed in insect cells revealed that CYP724B2 catalyzes C-22 hydroxylation of campesterol, indicating that CYP724B2 is a C-22 hydroxylase. We also isolated a tomato CYP90B homolog (CYP90B3) and found that CYP90B3 is a C-22 hydroxylase as well. CYP724B2 and CYP90B3 showed substrate specificities similar to each other toward the biosynthetic intermediate compounds from campesterol to campestanol. Campesterol was the best substrate, and (24R)-ergost-4-en-3-one was also metabolized to the C-22 hydroxylated product to some extent. On the other hand, the P450s catalyzed C-22 hydroxylation of (24R)-5alpha-ergostan-3-one and campestanol at a trace level, indicating that the compounds after C-5alpha reduction are poor substrates of CYP724B2 and CYP90B3. In addition, cholesterol (C27 sterol) and sitosterol (C29 sterol) were also converted to C-22 hydroxylated products by the P450s. Furthermore, CYP724B2 and CYP90B3 genes were ubiquitously expressed, and their transcript levels were down-regulated by the exogenous application of brassinolide. These findings strongly suggest that CYP724B2 and CYP90B3 function in the early C-22 hydroxylation steps of brassinosteroid biosynthetic pathway in tomato.

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Year:  2006        PMID: 16960392     DOI: 10.1271/bbb.60034

Source DB:  PubMed          Journal:  Biosci Biotechnol Biochem        ISSN: 0916-8451            Impact factor:   2.043


  17 in total

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3.  C-23 hydroxylation by Arabidopsis CYP90C1 and CYP90D1 reveals a novel shortcut in brassinosteroid biosynthesis.

Authors:  Toshiyuki Ohnishi; Anna-Maria Szatmari; Bunta Watanabe; Satomi Fujita; Simona Bancos; Csaba Koncz; Marcel Lafos; Kyomi Shibata; Takao Yokota; Kanzo Sakata; Miklos Szekeres; Masaharu Mizutani
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4.  Genome-wide transcriptome analysis and characterization of the cytochrome P450 flavonoid biosynthesis genes in pigeon pea (Cajanus cajan).

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6.  Brassinosteroids Modulate Meristem Fate and Differentiation of Unique Inflorescence Morphology in Setaria viridis.

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Authors:  Mei Tian; Xiang Zhang; Yan Zhu; Guoyong Xie; Minjian Qin
Journal:  Front Plant Sci       Date:  2018-08-14       Impact factor: 5.753

9.  Seasonal induction of alternative principal pathway for rose flower scent.

Authors:  Hiroshi Hirata; Toshiyuki Ohnishi; Kensuke Tomida; Haruka Ishida; Momoyo Kanda; Miwa Sakai; Jin Yoshimura; Hideyuki Suzuki; Takamasa Ishikawa; Hideo Dohra; Naoharu Watanabe
Journal:  Sci Rep       Date:  2016-02-01       Impact factor: 4.379

10.  A Comprehensive and Effective Mass Spectrometry-Based Screening Strategy for Discovery and Identification of New Brassinosteroids from Rice Tissues.

Authors:  Peiyong Xin; Jijun Yan; Bingbing Li; Shuang Fang; Jinshi Fan; Hailong Tian; Yong Shi; Weisheng Tian; Cunyu Yan; Jinfang Chu
Journal:  Front Plant Sci       Date:  2016-11-30       Impact factor: 5.753

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