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Enzymes of lysine metabolism from Coix lacryma-jobi seeds.

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Enzymes of lysine metabolism from Coix lacryma-jobi seeds. / Lugli, Juverlande; Campbell, Adriano; Gaziola, Salete A. et al.
In: Plant Physiology and Biochemistry, Vol. 40, No. 1, 01.2002, p. 25-32.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Lugli, J, Campbell, A, Gaziola, SA, Smith, RJ, Lea, PJ & Azevedo, RA 2002, 'Enzymes of lysine metabolism from Coix lacryma-jobi seeds.', Plant Physiology and Biochemistry, vol. 40, no. 1, pp. 25-32. https://doi.org/10.1016/S0981-9428(01)01343-2

APA

Lugli, J., Campbell, A., Gaziola, S. A., Smith, R. J., Lea, P. J., & Azevedo, R. A. (2002). Enzymes of lysine metabolism from Coix lacryma-jobi seeds. Plant Physiology and Biochemistry, 40(1), 25-32. https://doi.org/10.1016/S0981-9428(01)01343-2

Vancouver

Lugli J, Campbell A, Gaziola SA, Smith RJ, Lea PJ, Azevedo RA. Enzymes of lysine metabolism from Coix lacryma-jobi seeds. Plant Physiology and Biochemistry. 2002 Jan;40(1):25-32. doi: 10.1016/S0981-9428(01)01343-2

Author

Lugli, Juverlande ; Campbell, Adriano ; Gaziola, Salete A. et al. / Enzymes of lysine metabolism from Coix lacryma-jobi seeds. In: Plant Physiology and Biochemistry. 2002 ; Vol. 40, No. 1. pp. 25-32.

Bibtex

@article{93c136d99fef4ecf87a65f37911b6932,
title = "Enzymes of lysine metabolism from Coix lacryma-jobi seeds.",
abstract = "Lysine, threonine, methionine and isoleucine are synthesized through the aspartate metabolic pathway. The concentrations of soluble lysine and threonine in cereal seeds are very low. Coix lacryma-jobi (coix) is a maize-related grass and the enzymological aspects of the aspartate metabolic pathway are completely unknown. In order to obtain information on lysine metabolism in this plant species, two enzymes involved in the biosynthesis of these amino acids (aspartate kinase AK, EC 2.7.2.4 and homoserine dehydrogenase HSDH, EC 1.1.1.3) and two enzymes involved in lysine degradation (lysine 2-oxoglutarate reductase LOR, EC 1.5.1.8 and saccharopine dehydrogenase SDH, EC 1.5.1.9) were isolated and partially characterized in coix seeds. AK activity was inhibited by threonine and lysine separately, suggesting the presence of two isoenzymes, one sensitive to lysine and the other sensitive to threonine, with the latter corresponding to approximately 60% of the total AK activity. In contrast to previous results from other plant species, the threonine-sensitive AK eluted from an ion exchange chromatography column at higher KCl concentration than the lysine-sensitive form. The HSDH activity extracted from the seeds was partially inhibited by threonine, indicating the presence of threonine-sensitive and threonine-resistant isoenzymes. LOR and SDH activities were detected only in the endosperm tissue and co-purified on an anion exchange chromatography column, suggesting that the two activities may be linked on a single bifunctional polypeptide, as observed for other plant species. One single SDH activity band was observed on non-denaturing PAGE gels. The Km for saccharopine of SDH was determined as 0.143 mM and the Km for NAD as 0.531 mM. Although SDH activity was shown to be stable, LOR, AK and HSDH were extremely unstable, under all buffer systems tested.",
keywords = "Aspartate kinase, Coix lacryma-jobi, Lysine, Lysine 2-oxoglutarate reductase, Saccharopine dehydrogenase, Threonine",
author = "Juverlande Lugli and Adriano Campbell and Gaziola, {Salete A.} and Smith, {Richard J.} and Lea, {Peter J.} and Azevedo, {Ricardo Antunes}",
year = "2002",
month = jan,
doi = "10.1016/S0981-9428(01)01343-2",
language = "English",
volume = "40",
pages = "25--32",
journal = "Plant Physiology and Biochemistry",
issn = "0981-9428",
publisher = "Elsevier Masson SAS",
number = "1",

}

RIS

TY - JOUR

T1 - Enzymes of lysine metabolism from Coix lacryma-jobi seeds.

AU - Lugli, Juverlande

AU - Campbell, Adriano

AU - Gaziola, Salete A.

AU - Smith, Richard J.

AU - Lea, Peter J.

AU - Azevedo, Ricardo Antunes

PY - 2002/1

Y1 - 2002/1

N2 - Lysine, threonine, methionine and isoleucine are synthesized through the aspartate metabolic pathway. The concentrations of soluble lysine and threonine in cereal seeds are very low. Coix lacryma-jobi (coix) is a maize-related grass and the enzymological aspects of the aspartate metabolic pathway are completely unknown. In order to obtain information on lysine metabolism in this plant species, two enzymes involved in the biosynthesis of these amino acids (aspartate kinase AK, EC 2.7.2.4 and homoserine dehydrogenase HSDH, EC 1.1.1.3) and two enzymes involved in lysine degradation (lysine 2-oxoglutarate reductase LOR, EC 1.5.1.8 and saccharopine dehydrogenase SDH, EC 1.5.1.9) were isolated and partially characterized in coix seeds. AK activity was inhibited by threonine and lysine separately, suggesting the presence of two isoenzymes, one sensitive to lysine and the other sensitive to threonine, with the latter corresponding to approximately 60% of the total AK activity. In contrast to previous results from other plant species, the threonine-sensitive AK eluted from an ion exchange chromatography column at higher KCl concentration than the lysine-sensitive form. The HSDH activity extracted from the seeds was partially inhibited by threonine, indicating the presence of threonine-sensitive and threonine-resistant isoenzymes. LOR and SDH activities were detected only in the endosperm tissue and co-purified on an anion exchange chromatography column, suggesting that the two activities may be linked on a single bifunctional polypeptide, as observed for other plant species. One single SDH activity band was observed on non-denaturing PAGE gels. The Km for saccharopine of SDH was determined as 0.143 mM and the Km for NAD as 0.531 mM. Although SDH activity was shown to be stable, LOR, AK and HSDH were extremely unstable, under all buffer systems tested.

AB - Lysine, threonine, methionine and isoleucine are synthesized through the aspartate metabolic pathway. The concentrations of soluble lysine and threonine in cereal seeds are very low. Coix lacryma-jobi (coix) is a maize-related grass and the enzymological aspects of the aspartate metabolic pathway are completely unknown. In order to obtain information on lysine metabolism in this plant species, two enzymes involved in the biosynthesis of these amino acids (aspartate kinase AK, EC 2.7.2.4 and homoserine dehydrogenase HSDH, EC 1.1.1.3) and two enzymes involved in lysine degradation (lysine 2-oxoglutarate reductase LOR, EC 1.5.1.8 and saccharopine dehydrogenase SDH, EC 1.5.1.9) were isolated and partially characterized in coix seeds. AK activity was inhibited by threonine and lysine separately, suggesting the presence of two isoenzymes, one sensitive to lysine and the other sensitive to threonine, with the latter corresponding to approximately 60% of the total AK activity. In contrast to previous results from other plant species, the threonine-sensitive AK eluted from an ion exchange chromatography column at higher KCl concentration than the lysine-sensitive form. The HSDH activity extracted from the seeds was partially inhibited by threonine, indicating the presence of threonine-sensitive and threonine-resistant isoenzymes. LOR and SDH activities were detected only in the endosperm tissue and co-purified on an anion exchange chromatography column, suggesting that the two activities may be linked on a single bifunctional polypeptide, as observed for other plant species. One single SDH activity band was observed on non-denaturing PAGE gels. The Km for saccharopine of SDH was determined as 0.143 mM and the Km for NAD as 0.531 mM. Although SDH activity was shown to be stable, LOR, AK and HSDH were extremely unstable, under all buffer systems tested.

KW - Aspartate kinase

KW - Coix lacryma-jobi

KW - Lysine

KW - Lysine 2-oxoglutarate reductase

KW - Saccharopine dehydrogenase

KW - Threonine

U2 - 10.1016/S0981-9428(01)01343-2

DO - 10.1016/S0981-9428(01)01343-2

M3 - Journal article

VL - 40

SP - 25

EP - 32

JO - Plant Physiology and Biochemistry

JF - Plant Physiology and Biochemistry

SN - 0981-9428

IS - 1

ER -