Literature DB >> 2007137

Purification of human placental aromatase cytochrome P-450 with monoclonal antibody and its characterization.

N Yoshida1, Y Osawa.   

Abstract

A simple and efficient method is described for the purification of microsomal aromatase cytochrome P-450 from human placenta. The enzyme was solubilized with Emulgen 913 and sodium cholate and subjected to chromatography on a column of Sepharose 4B coupled with a specific monoclonal antibody, followed by hydroxyapatite column chromatography. The specific cytochrome P-450 content of purified aromatase was 13.1 (12-14.8) nmol/mg of protein. Aromatase assays were carried out with reconstituted systems of bovine liver P-450 reductase and dilauroyl-L-alpha-phosphatidylcholine with [1 beta-3H,4-14C]-androstenedione as substrate. The specific activity of purified aromatase was 65.0 (50.6-74.3) nmol.min-1.(mg of protein)-1 or a turnover rate of 5.0 (4.3-5.9) min-1. The total recovery of purified aromatase activity was 32.2%, and P-450 recovery was 17.6%. The Km of immunoaffinity-purified aromatase was 12, 210, 41, and 2830 nM for androstenedione, 16 alpha-hydroxyandrostenedione, testosterone, and 16 alpha-hydroxytestosterone, respectively. The very high Km value for 16 alpha-hydroxytestosterone aromatization gives a reasonable indication that estriol is not the directly aromatized product in the fetoplacental unit of human pregnancy. The aromatase P-450 was subjected to SDS-polyacrylamide gel electrophoresis in increasing quantities. Silver stain detection techniques indicated a single band having a molecular mass of 55 kDa with greater than 97% purity. The stability analysis showed a half-life of over 4 years on storage at -80 degrees C.

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Year:  1991        PMID: 2007137     DOI: 10.1021/bi00226a004

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  18 in total

1.  The effects of injected testosterone dose and age on the conversion of testosterone to estradiol and dihydrotestosterone in young and older men.

Authors:  Kishore M Lakshman; Beth Kaplan; Thomas G Travison; Shehzad Basaria; Philip E Knapp; Atam B Singh; Michael P LaValley; Norman A Mazer; Shalender Bhasin
Journal:  J Clin Endocrinol Metab       Date:  2010-06-09       Impact factor: 5.958

2.  Kinetic analysis of the three-step steroid aromatase reaction of human cytochrome P450 19A1.

Authors:  Christal D Sohl; F Peter Guengerich
Journal:  J Biol Chem       Date:  2010-04-12       Impact factor: 5.157

3.  Enzymic aromatization of 6-alkyl-substituted androgens, potent competitive and mechanism-based inhibitors of aromatase.

Authors:  M Numazawa; A Yoshimura; M Oshibe
Journal:  Biochem J       Date:  1998-01-01       Impact factor: 3.857

Review 4.  Aromatase, estrone sulfatase, and 17β-hydroxysteroid dehydrogenase: structure-function studies and inhibitor development.

Authors:  Yanyan Hong; Shiuan Chen
Journal:  Mol Cell Endocrinol       Date:  2010-10-01       Impact factor: 4.102

5.  Aromatase (Cyp19) expression is up-regulated by targeted disruption of Dax1.

Authors:  Z J Wang; B Jeffs; M Ito; J C Achermann; R N Yu; D B Hales; J L Jameson
Journal:  Proc Natl Acad Sci U S A       Date:  2001-06-26       Impact factor: 11.205

6.  Structural basis for androgen specificity and oestrogen synthesis in human aromatase.

Authors:  Debashis Ghosh; Jennifer Griswold; Mary Erman; Walter Pangborn
Journal:  Nature       Date:  2009-01-08       Impact factor: 49.962

7.  X-ray structure of human aromatase reveals an androgen-specific active site.

Authors:  Debashis Ghosh; Jennifer Griswold; Mary Erman; Walter Pangborn
Journal:  J Steroid Biochem Mol Biol       Date:  2009-10-04       Impact factor: 4.292

8.  Novel aromatase inhibitors by structure-guided design.

Authors:  Debashis Ghosh; Jessica Lo; Daniel Morton; Damien Valette; Jingle Xi; Jennifer Griswold; Susan Hubbell; Chinaza Egbuta; Wenhua Jiang; Jing An; Huw M L Davies
Journal:  J Med Chem       Date:  2012-09-24       Impact factor: 7.446

9.  Phosphorylation of human placental aromatase CYP19A1.

Authors:  Debashis Ghosh; Chinaza Egbuta; Jean E Kanyo; TuKiet T Lam
Journal:  Biochem J       Date:  2019-11-15       Impact factor: 3.857

10.  Testosterone complex and non-steroidal ligands of human aromatase.

Authors:  Debashis Ghosh; Chinaza Egbuta; Jessica Lo
Journal:  J Steroid Biochem Mol Biol       Date:  2018-02-21       Impact factor: 4.292

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