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1.
FEBS Lett ; 499(1-2): 15-20, 2001 Jun 15.
Artigo em Inglês | MEDLINE | ID: mdl-11418103

RESUMO

The deduced polypeptide sequence of open reading frame slr1736 reveals homology to chlorophyll synthase and 1,4-dihydroxy-2-naphthoic acid phytyltransferase in Synechocystis sp. strain PCC 6803. In tocopherol and plastoquinone biosynthesis, a condensation reaction mechanistically similar to that of these two enzymes is performed. To analyze the function of this novel prenyltransferase, a deletion mutant of slr1736 was generated by homologous recombination. The mutant showed a markedly decreased tocopherol content, while plastoquinone levels remained unchanged. Since the aromatic precursor homogentisic acid accumulated in the mutant, the function of the enzyme was proven to be a novel tocopherol phytyltransferase.


Assuntos
Alquil e Aril Transferases/metabolismo , Cianobactérias/enzimologia , Vitamina E/biossíntese , Alquil e Aril Transferases/química , Alquil e Aril Transferases/genética , Sequência de Aminoácidos , Cromatografia Líquida de Alta Pressão , Clonagem Molecular , Cianobactérias/genética , Deleção de Genes , Ácido Homogentísico/metabolismo , Dados de Sequência Molecular , Fases de Leitura Aberta/genética , Pigmentos Biológicos/metabolismo , Plastoquinona/metabolismo , Alinhamento de Sequência , Vitamina E/metabolismo
2.
FEBS Lett ; 485(2-3): 168-72, 2000 Nov 24.
Artigo em Inglês | MEDLINE | ID: mdl-11094161

RESUMO

The polymerase chain reaction analysis of potato plants, transformed with capsanthin capsorubin synthase ccs, revealed the presence of a highly related gene. The cloned cDNA showed at the protein level 89.6% identity to CCS. This suggested that the novel enzyme catalyzes a mechanistically similar reaction. Such a reaction is represented by neoxanthin synthase (NXS), forming the xanthophyll neoxanthin, a direct substrate for abscisic acid formation. The function of the novel enzyme could be proven by transient expression in plant protoplasts and high performance liquid chromatography analysis. The cloned NXS was imported in vitro into plastids, the compartment of carotenoid biosynthesis.


Assuntos
Oxirredutases/genética , Solanum tuberosum/enzimologia , Xantofilas , Ácido Abscísico/metabolismo , Sequência de Aminoácidos , Animais , Arabidopsis/metabolismo , Baculoviridae/genética , Carotenoides/metabolismo , Catálise , Cromatografia Líquida de Alta Pressão , Clonagem Molecular , Expressão Gênica , Insetos/metabolismo , Dados de Sequência Molecular , Oxirredutases/química , Folhas de Planta/química , Plantas Tóxicas , Reação em Cadeia da Polimerase , Proteínas Recombinantes , Alinhamento de Sequência , Nicotiana/metabolismo
3.
Eur J Biochem ; 247(3): 942-50, 1997 Aug 01.
Artigo em Inglês | MEDLINE | ID: mdl-9288918

RESUMO

The precursor proteins of the carotenogenic enzymes geranylgeranyl diphosphate synthase, phytoene synthase, phytoene desaturase and lycopene cyclase were imported into isolated pea chloroplasts. Geranylgeranyl diphosphate synthase remained soluble in the stroma in a free form and phytoene synthase associated to thylakoid membranes upon import, both as expected. Surprisingly, phytoene desaturase and lycopene cyclase, which strongly depend on membrane association for enzymatic activity, also remained soluble in the chloroplast stroma. The soluble forms of these enzymes were, however, still competent for membrane-association, e.g. with protein-free liposomal membranes. Indeed the soluble forms of phytoene synthase, phytoene desaturase and lycopene cyclase occurred as ATP- and cold-sensitive high-molecular-mass complexes. Gel-filtration experiments and blue native-PAGE plus autoradiography and western blot analysis indicated a participation of the chloroplast 60-kDa chaperonin (Cpn60) in the soluble high-molecular-mass complexes of imported carotenogenic enzymes. Finally, it was inferred that a membrane-bound regulatory factor plays a decisive role in membrane-binding.


Assuntos
Alquil e Aril Transferases , Carotenoides/biossíntese , Cloroplastos/metabolismo , Liases Intramoleculares , Isomerases/metabolismo , Oxirredutases/metabolismo , Transferases/metabolismo , Trifosfato de Adenosina/metabolismo , Transporte Biológico , Chaperonina 60/metabolismo , Cloroplastos/enzimologia , Clonagem Molecular , Temperatura Baixa , Farnesiltranstransferase , Geranil-Geranildifosfato Geranil-Geraniltransferase , Lipossomos , Dados de Sequência Molecular , Peso Molecular , Pisum sativum/metabolismo
4.
Plant J ; 11(5): 1071-8, 1997 May.
Artigo em Inglês | MEDLINE | ID: mdl-9193076

RESUMO

Rice (Oryza sativa L.), the major food staple for more than two billion people, contains neither beta-carotene (provitamin A) nor C40 carotenoid precursors thereof in its endosperm. To improve the nutritional value of rice, genetic engineering was chosen as a means to introduce the ability to make beta-carotene into rice endosperm tissue. Investigation of the biochemical properties of immature rice endosperm using [14C]-labelled substrates revealed the presence of geranyl geranyl diphosphate, the C20 general isoprenoid precursor necessary for C40 carotenoid biosynthesis. Phytoene synthase, which condenses two molecules of geranyl geranyl diphosphate, is the first of four specific enzymes necessary for beta-carotene biosynthesis in plants. Therefore, the Japonica rice model variety Taipei 309 was transformed by microprojectile bombardment with a cDNA coding for phytoene synthase from daffodil (Narcissus pseudonarcissus) under the control of either a constitutive or an endosperm-specific promoter. In transgenic rice plants, the daffodil enzyme is active, as measured by the in vivo accumulation of phytoene in rice endosperm. Thus, it is demonstrated for the first time that it is in principle possible to engineer a critical step in provitamin A biosynthesis in a non-photosynthetic, carotenoid-lacking plant tissue. These results have important implications for long-term prospects of overcoming worldwide vitamin A deficiency.


Assuntos
Alquil e Aril Transferases , Carotenoides/biossíntese , Oryza/enzimologia , Sementes/enzimologia , Transferases/biossíntese , Western Blotting , Cruzamentos Genéticos , Genes de Plantas , Engenharia Genética/métodos , Geranil-Geranildifosfato Geranil-Geraniltransferase , Oryza/genética , Pigmentos Biológicos , Plantas Geneticamente Modificadas , Reação em Cadeia da Polimerase , Sementes/genética , Transferases/genética , Transformação Genética , Vitamina A/biossíntese , beta Caroteno/biossíntese
5.
Plant J ; 10(5): 781-92, 1996 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-8953242

RESUMO

A cDNA coding for the carotenoid biosynthetic enzyme phytoene synthase was cloned from a Narcissus pseudonarcissus flower cDNA library, and the corresponding protein was overexpressed in insect cells using the baculovirus lipofection system. The full-length overexpressed enzyme exhibited very reduced catalytic activity compared with an overexpressed N-truncated form, with its transit sequence removed by site-directed mutagenesis. The shortened form readily bound quantitatively to lipid bilayers. Although it was active with liposomes prepared from plastid lipids, with phospholipid liposomes it was not, even though association took place. In this latter case, free galactose was capable of substituting for galactolipids, resulting in enzymatic activity. It is concluded that galactolipids are involved in catalytic activity, but do not serve as a membrane anchor. Antibodies raised against the recombinant enzyme made it possible to distinguish between a membrane-bound and a soluble, protein-complexed inactive form of phytoene synthase, present in the chromoplast stroma. These findings and data on phytoene synthase mRNA and protein expression presented here are discussed in terms of a possible regulatory role in color formation during chromoplast (flower) development.


Assuntos
Alquil e Aril Transferases , Glicolipídeos/metabolismo , Plantas/enzimologia , Transferases/metabolismo , Animais , Western Blotting , Galactolipídeos , Galactose/metabolismo , Geranil-Geranildifosfato Geranil-Geraniltransferase , Manganês/metabolismo , Dados de Sequência Molecular , Peso Molecular , Plastídeos , Conformação Proteica , Spodoptera
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