Literature DB >> 20531483

[Characteristics of steroid metabolism in transgenic Nicotiana tabacum plants bearing the CYP11A1 cDNA of cytochrome P450(SCC) from the bovine adrenal cortex].

S G Spivak1, I N Berdichevets, R P Litvinovskaia, S V Drach, N A Kartel', G V Shpakovskiĭ.   

Abstract

In the mitochondria of animal steroidogenic tissues, cytochrome P450(SCC), encoded by the CYP11A1 gene, catalyzes the conversion of cholesterol into pregnenolone - the general precursor of all steroid hormones. In this work, we study the steroid metabolism in transgenic tobacco plants carrying the CYP11A1 cDNA cytochrome P450(SCC)from the bovine adrenal cortex. The transgenic plants under investigation markedly surpass the control wild-type plants by size and are characterized by a shortened period of vegetative growth (by rapid flowering); their leaves contain pregnenolone - the product of a reaction catalyzed by cytochrome P450(SCC). The level of progesterone in transgenic tobacco leaves is higher than in the control plants of the wild type. The seeds of the transgenic plants contain less (24R)-brassinosteroids than the wild-type tobacco plants. The results obtained indicate that the synthesis of an active P450(SCC) cytochrome in transgenic Nicotiana tabacum plants has a profound effect on steroid metabolism and is responsible for the specific phenotypic features of transgenic plants bearing CYP11A1 cDNA.

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Year:  2010        PMID: 20531483     DOI: 10.1134/s1068162010020123

Source DB:  PubMed          Journal:  Bioorg Khim        ISSN: 0132-3423


  2 in total

1.  A key enzyme of animal steroidogenesis can function in plants enhancing their immunity and accelerating the processes of growth and development.

Authors:  George V Shpakovski; Svetlana G Spivak; Irina N Berdichevets; Olga G Babak; Svetlana V Kubrak; Alexander V Kilchevsky; Andrey V Aralov; Ivan Yu Slovokhotov; Dmitry G Shpakovski; Ekaterina N Baranova; Marat R Khaliluev; Elena K Shematorova
Journal:  BMC Plant Biol       Date:  2017-11-14       Impact factor: 4.215

2.  The chemotype core collection of genus Nicotiana.

Authors:  Margit Drapal; Eugenia M A Enfissi; Paul D Fraser
Journal:  Plant J       Date:  2022-04-07       Impact factor: 7.091

  2 in total

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