Abstract
Nicotianamine aminotransferase (NAAT), the key enzyme involved in the biosynthesis of mugineic acid family phytosiderophores (MAs), catalyzes the amino transfer of nicotianamine (NA). MAs are found only in graminaceous plants, although NA has been detected in every plant so far investigated. Therefore, this amino transfer reaction is the first step in the unique biosynthesis of MAs that has evolved in graminaceous plants. NAAT activity is dramatically induced by Fe deficiency and suppressed by Fe resupply. Based on the protein sequence of NAAT purified from Fe-deficient barley (Hordeum vulgare) roots, two distinct cDNA clones encoding NAAT, naat-A and naat-B, were identified. Their deduced amino acid sequences were homologous to several aminotransferases, and shared consensus sequences for the pyridoxal phosphate-binding site lysine residue and its surrounding residues. The expression of both naat-A and naat-B is increased in Fe-deficient barley roots, while naat-B has a low level of constitutive expression in Fe-sufficient barley roots. No detectable mRNA from either naat-A or naat-B was present in the leaves of either Fe-deficient or Fe-sufficient barley. One genomic clone with a tandem array of naat-B and naat-A in this order was identified. naat-B and naat-A each have six introns at the same locations. The isolation of NAAT genes will pave the way to understanding the mechanism of the response to Fe in graminaceous plants, and may lead to the development of cultivars tolerant to Fe deficiency that can grow in calcareous soils.
MeSH Terms
Amino Acid Sequence
Base Sequence
Cloning, Molecular
Genomic Library
Hordeum/enzymology,genetics
Iron/metabolism
Isoenzymes/chemistry,genetics,metabolism
Kinetics
Molecular Sequence Data
Plant Proteins
Recombinant Proteins/isolation & purification,metabolism
Sequence Alignment
Sequence Homology, Amino Acid
Transaminases/chemistry,genetics,metabolism
Chemicals
Isoenzymes
Plant Proteins
Recombinant Proteins
Iron
Transaminases
nicotianamine aminotransferase, Hordeum vulgare
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Takahashi M
Core Research for Evolutional Science and Technology, Japan Science and Technology Corporation, 332-0012 Saitama, Japan.
Yamaguchi H
Nakanishi H
Shioiri T
Nishizawa N K
Mori S
References (22)
22 references, click to expand
-
Induction of tyrosine aminotransferase synthesis in isolated liver cell suspensions. Absolute dependence of induction on glucocorticoids and glucagon or cyclic AMP.
J Biol Chem. 1977 Oct 10;252(19):6783-91
PMID: 19478
-
Formate dehydrogenase, an enzyme of anaerobic metabolism, is induced by iron deficiency in barley roots.
Plant Physiol. 1998 Feb;116(2):725-32
PMID: 9489019
-
Getting started with yeast.
Methods Enzymol. 1991;194:3-21
PMID: 2005794
-
mRNA levels for the fermentative alcohol dehydrogenase of Saccharomyces cerevisiae decrease upon growth on a nonfermentable carbon source.
J Biol Chem. 1983 Jan 25;258(2):1165-71
PMID: 6337132
-
Rapid isolation of high molecular weight plant DNA.
Nucleic Acids Res. 1980 Oct 10;8(19):4321-5
PMID: 7433111
-
Oligosaccharyltransferase activity is associated with a protein complex composed of ribophorins I and II and a 48 kd protein.
Cell. 1992 Apr 3;69(1):55-65
PMID: 1555242
-
Tricine-sodium dodecyl sulfate-polyacrylamide gel electrophoresis for the separation of proteins in the range from 1 to 100 kDa.
Anal Biochem. 1987 Nov 1;166(2):368-79
PMID: 2449095
-
Two Related Biosynthetic Pathways of Mugineic Acids in Gramineous Plants.
Plant Physiol. 1993 Jun;102(2):373-378
PMID: 12231828
-
Biosynthesis of Phytosiderophores : In Vitro Biosynthesis of 2'-Deoxymugineic Acid from l-Methionine and Nicotianamine.
Plant Physiol. 1990 Aug;93(4):1497-503
PMID: 16667646
-
Evidence for a specific uptake system for iron phytosiderophores in roots of grasses.
Plant Physiol. 1986 Jan;80(1):175-80
PMID: 16664577
-
Differential expression of conglycinin α' and β subunit genes in transgenic plants.
Plant Mol Biol. 1988 Mar;11(2):109-23
PMID: 24272254
-
Evolutionary relationships among aminotransferases. Tyrosine aminotransferase, histidinol-phosphate aminotransferase, and aspartate aminotransferase are homologous proteins.
Eur J Biochem. 1989 Dec 8;186(1-2):249-53
PMID: 2574669
-
Aspartate aminotransferase isozymes in Panicum miliaceum L., an NAD-malic enzyme-type C4 plant: comparison of enzymatic properties primary structures, and expression patterns.
Arch Biochem Biophys. 1995 Apr 20;318(2):295-306
PMID: 7733657
-
Anaerobic induction of alanine aminotransferase in barley root tissue.
Plant Physiol. 1989 Aug;90(4):1305-9
PMID: 16666927
-
Cloning of nicotianamine synthase genes, novel genes involved in the biosynthesis of phytosiderophores.
Plant Physiol. 1999 Feb;119(2):471-80
PMID: 9952442
-
[On the binding of coenzyme to glutamic-pyruvic transaminase of pig heart].
Eur J Biochem. 1968 Jun;5(1):18-23
PMID: 5660682
-
An analysis of 5'-noncoding sequences from 699 vertebrate messenger RNAs.
Nucleic Acids Res. 1987 Oct 26;15(20):8125-48
PMID: 3313277
-
High resolution two-dimensional electrophoresis of proteins.
J Biol Chem. 1975 May 25;250(10):4007-21
PMID: 236308
-
Molecular characterization of a copper transport protein in S. cerevisiae: an unexpected role for copper in iron transport.
Cell. 1994 Jan 28;76(2):393-402
PMID: 8293472
-
A family of yeast expression vectors containing the phage f1 intergenic region.
Gene. 1987;52(2-3):225-33
PMID: 3038686
-
New yeast-Escherichia coli shuttle vectors constructed with in vitro mutagenized yeast genes lacking six-base pair restriction sites.
Gene. 1988 Dec 30;74(2):527-34
PMID: 3073106
-
High efficiency transformation of intact yeast cells using single stranded nucleic acids as a carrier.
Curr Genet. 1989 Dec;16(5-6):339-46
PMID: 2692852