Identification of selenohomolanthionine in selenium-enriched Japanese pungent radish

Sulfur (S) and selenium (Se) are same-group elements that share, in part, a common metabolic pathway. Because a radish variant having pungent flavor ( L. cv. 'Yukibijin') has a unique S metabolic pathway, we expected that it would also produce unique Se compounds through that metabolic pat...

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Veröffentlicht in:Journal of analytical atomic spectrometry 2007-01, Vol.22 (11), p.1390-1396
Hauptverfasser: Ogra, Yasumitsu, Kitaguchi, Takashi, Ishiwata, Kazuya, Suzuki, Noriyuki, Iwashita, Yuji, Suzuki, Kazuo T.
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Sprache:eng
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Zusammenfassung:Sulfur (S) and selenium (Se) are same-group elements that share, in part, a common metabolic pathway. Because a radish variant having pungent flavor ( L. cv. 'Yukibijin') has a unique S metabolic pathway, we expected that it would also produce unique Se compounds through that metabolic pathway. Se metabolites in the radish were assigned by speciation techniques, , HPLC-inductively coupled plasma mass spectrometry (ICP-MS) and HPLC-electrospray ionization tandem mass spectrometry (ESI-MS-MS). 68.5% of total Se in the selenized Japanese pungent radish was water-extractable, and the water extract contained selenate (around 45% of total Se), -methylselenocysteine (around 11%), an unknown Se compound tentatively named KD-1 (around 5%), and others (around 1.2%). KD-1 was assigned by ESI-MS-MS as 4,4[prime or minute]-selenobis[2-aminobutanoic acid] or -(3-amino-3-carboxypropyl)-homocysteine, commonly known as selenohomolanthionine (SeHLan). This Se compound was first identified in nature. The metabolic pathway of SeHLan was suggested to involve the phosphorylation of homoserine to produce -phosphohomoserine, and the subsequent reaction of -phosphohomoserine with selenohomocysteine (SeHCys).
ISSN:0267-9477
1364-5544
DOI:10.1039/b707348h