Cre14.g628500.t1.1 NAD(P)-binding Rossmann-fold superfamily protein

Chromosome Product Feature Type Transcript Start End Strand Length
Cre14.g628500.t1.1 chromosome_14 NAD(P)-binding Rossmann-fold superfamily protein CDS 3052646 3055285 + 2 639
Locus Genomic View Functional Annotation
Cre14.g628500.t1.1 Cre14.g628500.t1.1

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Symbol Augustus Synonyms STRING PAC Record in ChlamyCyc
g15138.t1 JGI287390 30776620 Search
Motif 1 Motif 2 Residual
bicluster_0043

motif_0043_1

e.value: 
0.00000000000005
Motif Bicluster: 
Width: 
24
Number of Sites: 
1
Consensus: 
AcaCAcaCAcacaCaCAcAtaaAc

motif_0043_2

e.value: 
0.0000000026
Motif Bicluster: 
Width: 
20
Number of Sites: 
1
Consensus: 
GGAGgtGggGgAgGanGgGG
0.19
bicluster_0113

motif_0113_1

e.value: 
0.0000016
Motif Bicluster: 
Width: 
15
Number of Sites: 
1
Consensus: 
GnTtaTGTTGtTGtT

motif_0113_2

e.value: 
0.0000000000001
Motif Bicluster: 
Width: 
15
Number of Sites: 
1
Consensus: 
cTGCTGcTaCTGCTG
0.26
GO:0003824 GO:0050662 GO:0044237 -

catalytic activity

GO Category: 
molecular_function
Details: 
Catalysis of a biochemical reaction at physiological temperatures. In biologically catalyzed reactions, the reactants are known as substrates, and the catalysts are naturally occurring macromolecular substances known as enzymes. Enzymes possess specific binding sites for substrates, and are usually composed wholly or largely of protein, but RNA that has catalytic activity (ribozyme) is often also regarded as enzymatic.

coenzyme binding

GO Category: 
molecular_function
Details: 
Interacting selectively and non-covalently with a coenzyme, any of various nonprotein organic cofactors that are required, in addition to an enzyme and a substrate, for an enzymatic reaction to proceed.

cellular metabolic process

GO Category: 
biological_process
Details: 
The chemical reactions and pathways by which individual cells transform chemical substances.
Displaying 1 - 2 of 2
Regulator Locus Interaction Weight Other Influences
Link to STRING STRING Network
JGI287390
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