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1.5.1.10: saccharopine dehydrogenase (NADP+, L-glutamate-forming)

This is an abbreviated version!
For detailed information about saccharopine dehydrogenase (NADP+, L-glutamate-forming), go to the full flat file.

Word Map on EC 1.5.1.10

Reaction

N6-(L-1,3-dicarboxypropyl)-L-lysine
+
NADP+
+
H2O
=
L-glutamate
+
(S)-2-amino-6-oxohexanoate
+
NADPH
+
H+

Synonyms

aminoadipate semialdehyde-glutamate reductase, aminoadipic semialdehyde-glutamate reductase, aminoadipic semialdehyde-glutamic reductase, ASS, dehydrogenase, saccharopine (nicotinamide adenine dinucleotide phosphate, glutamate-forming), epsilon-N-(L-glutaryl-2)-L-lysine:NAD+(P) oxidoreductase (L-2-aminoadipate-semialdehyde forming), LKR/SDH, lysine-ketoglutarate reductase/saccharopine dehydrogenase, nSpe-Sdh, saccharopine dehydrogenase, saccharopine dehydrogenase (L-glutamate forming), saccharopine reductase, SDH, spermidine synthase-saccharopine dehydrogenase, SR1

ECTree

     1 Oxidoreductases
         1.5 Acting on the CH-NH group of donors
             1.5.1 With NAD+ or NADP+ as acceptor
                1.5.1.10 saccharopine dehydrogenase (NADP+, L-glutamate-forming)

Expression

Expression on EC 1.5.1.10 - saccharopine dehydrogenase (NADP+, L-glutamate-forming)

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EXPRESSION
ORGANISM
UNIPROT
LITERATURE
once the protecting veil is broken during storage, the expression levels decrease to an initial storage level and remain relatively constant until the end of the storage, indicating the possible involvement of nSpe-Sdh in postharvest mushroom development
the enzymes LKR/SDH and AASADH are co-upregulated at the transcriptional level by exogenously applied lysine in plants, animals, and bacteria
the enzymes LKR/SDH and AASADH are co-upregulated at the transcriptional level by exogenously applied lysine in plants, animals, and bacteria. Hyperosmotic treatment of rapeseed leaf disks induces an increase in LKR/SDH transcript abundance and enzymatic activity, which correlates with decreased levels of free lysine and increased levels of pipecolate. The LKR/SDH activity and pipecolate concentration decrease with the return of the leaf disks to hypoosmotic conditions
the expression of nSPE-SDH mRNA and protein are both significantly upregulated with the cap expansion of Agaricus bisporus during storage. The up-regulation of the expression of nSPE-SDH mRNA and protein was both tissue especially in cap tissues