Pseudoalteromonas viridis: J5X90_14095
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Entry
J5X90_14095 CDS
T07232
Name
(GenBank) NAD-glutamate dehydrogenase
KO
K15371
glutamate dehydrogenase [EC:
1.4.1.2
]
Organism
pvb
Pseudoalteromonas viridis
Pathway
pvb00220
Arginine biosynthesis
pvb00250
Alanine, aspartate and glutamate metabolism
pvb00430
Taurine and hypotaurine metabolism
pvb00910
Nitrogen metabolism
pvb01100
Metabolic pathways
pvb01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
pvb00001
]
09100 Metabolism
09102 Energy metabolism
00910 Nitrogen metabolism
J5X90_14095
09105 Amino acid metabolism
00250 Alanine, aspartate and glutamate metabolism
J5X90_14095
00220 Arginine biosynthesis
J5X90_14095
09106 Metabolism of other amino acids
00430 Taurine and hypotaurine metabolism
J5X90_14095
Enzymes [BR:
pvb01000
]
1. Oxidoreductases
1.4 Acting on the CH-NH2 group of donors
1.4.1 With NAD+ or NADP+ as acceptor
1.4.1.2 glutamate dehydrogenase
J5X90_14095
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SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Bac_GDH_CD
GDH_C
GDH_ACT1
GDH_ACT2
GDH_HM3
GDH_ACT3
GDH_HM1
GDH_HM2
DUF7774
ELFV_dehydrog
Cullin_Nedd8
Motif
Other DBs
NCBI-ProteinID:
QTL34661
LinkDB
All DBs
Position
1:3210594..3215432
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AA seq
1612 aa
AA seq
DB search
MTQNEGPASVILDNVTKLIHKKVHAENVSLVETFAKALYSNMSKEDLAHRNDSDLYGAAL
SLWNSLEKNATDDAVIRVFNPEVAKDGWQSSHTIVEIIAKDMPFLVDSVRMALSRKNIVS
HLLLHSPLKIKRDSNNKITALSNLKAEQESSSTKTVFFIEIDRQTDAKAIKAFTEELESV
LKDVSVAVEDWKPIRDKLVAVSKEIPTRHHDCTQAEVNEAVEFLEWLSSDNFTFMGYRQY
DLVPVQGDHELRAVPDTSLGLMKNSSHDGGRLLSELPEVARKEARSKNLLILTKTNSLSR
VHRPAYIDYVGIKRFDEQGNVIGEDRFIGLFSSSFYNNSAADVPVLKSKIQRIMEQCDFA
EGTHAYKAVLNLLETYPRDELVQAREAELLEVATGVLQIQERDMCRLFVRRDVYGRFFSC
MVYVPRERYNTALRRETQKLLADAFKSNEKVEFTTFFSESTLARTHYIVRVADNSIKYNV
KDIENNLAEAARTWEDKLQSALLGSNGETRGNELNRKYANAFPHSYKDQVLPSAAVVDIE
KLEQLSDEKKLEMLFYRPQEEANSEIVRLSLFHKDVPIHLSDVMPMLENFGLRVIGETPY
AIKTSDGQVNWIMDFSMMIDSKGIADFDKVSARFRAALTNVWNNRLESDGFNRMVLLGGM
TGREASILRAYAKYMRQIGVTFSQSYIENTFEHYPHIAAQIVELFVKKFSPAKKAAQKTL
DKLIEKIYLELENVANLDDDRIIRMYVDMINATLRTNFYQKEADDSNKSYVSFKINPRAI
PDMPLPLPAYEIFVYSPRVEGVHLRGGKVARGGLRWSDRREDFRTEVLGLVKAQQVKNTV
IVPVGSKGGFVCKQLPSDREAFFKEGQECYKMFIRGLLDITDNIIHGEIVPPVDVVRHDE
DDPYLVVAADKGTATFSDIANGIAEEYNFWLGDAFASGGSIGYDHKKMGITAKGAWESVK
RHFREMDIDCQTTDFTAVGIGDMGGDVFGNGMLLSKHIRLQAAFNHMHIFIDPNPDAASS
YVERERLFNLPRSSWEDYNKELISEGGGVFSRAAKSINLTAEMKKMLGTKKASMTPNELI
KALLKMPADLLWNGGIGTYIKAKSESNADVGDRANDGLRIDGSELGAKIFGEGGNLGATQ
LGRIEFAEKGGRINTDFIDNVGGVACSDNEVNIKILLNGLVAEGDLTKKQRDELLYAMTD
EVSELVLADCYRQTHTLSITKSKGPATLKEKIRFIHALEKEGKLDRTIEFLPTDEELAER
AAEGSDLTRPELSVLVSYSKMVLKESLVVDEISENPYYRQLLVNSFPVPLRERFNAAMDN
HPLRKEIIATKLANNIVNDMGLNFMVRMHEETGATEAEIALCYSIASEIFEMKQTWQSIA
ALDNHIPSAVQTEMLYQLRRTIRRTTRWFLRHRNKGMTIEQTIAFFAPTFADLSKNLNSY
MVEEESARLTEKADALVAQGVPEQIAMRIVSLSSLFSVMDLAEVAASSGRAIDVVSNTYF
KLGANMGLHWFLDQITAQPVANHWQALARASYREELDWQQRALSEVVLNSFEGDDHDVDS
LINQWMENQSTLLLRWQQMLAEFKTSQSHDFAKFSVALRELMLLSHNCDTSK
NT seq
4839 nt
NT seq
+upstream
nt +downstream
nt
atgacacaaaatgaaggtccagcatcggttatcctggataacgtcaccaagctgatccac
aaaaaagttcatgccgaaaacgtgtcgctcgttgaaacttttgccaaagccttgtacagc
aatatgtctaaagaggacttggcacatcgtaacgacagtgacttatacggagccgcattg
agtctttggaattctctcgaaaagaatgccactgacgatgcggttattcgcgttttcaac
cctgaagtagccaaagatggctggcaatcctctcacacgatcgtcgagatcatcgccaaa
gacatgccatttttggttgactcggtacgcatggcactgagccgcaaaaacatcgtgtct
cacttactgctgcatagcccgcttaaaattaagcgcgacagcaataacaagatcactgca
ctttcaaatttaaaagcagaacaagaatcatcgtcgaccaagactgtgtttttcattgaa
attgatcgtcagacagatgctaaagcaatcaaagcgttcaccgaagaactggaatcagta
ttgaaagacgtgtctgtggccgttgaagactggaagccaatccgcgataagctggttgca
gtcagtaaagagatcccaactcgtcatcatgactgcacacaggcagaagttaatgaagcg
gttgagttccttgaatggctatcttcagataactttacttttatgggctatcgccagtac
gatttggtgcctgtacaaggtgatcatgagctgcgcgcagtgccagacactagcctgggt
ttgatgaaaaactccagccacgatggcggtcgtttgctttctgagttgccagaagtggcc
cgaaaagaagcacgcagcaaaaacctgctgattttaaccaagactaactcactgtctcgt
gttcaccgtccagcctacattgattatgtgggtattaaacgttttgacgaacagggcaat
gtgatcggcgaagatcgcttcattggtttgttctcatcgagcttctacaacaatagtgcg
gcagatgtgcctgtgctcaaaagcaagatccagcgcattatggagcaatgtgattttgca
gaagggacgcacgcttataaagccgtgctgaacttgctcgaaacctatcctcgcgatgag
ttagttcaggcgcgtgaagccgagctactggaagttgcgactggcgtattgcaaattcag
gaacgcgacatgtgtcgtctgttcgttcgccgtgatgtatatgggcgcttcttctcttgt
atggtatacgtaccacgtgagcgctataacacggcactacgtcgtgaaactcaaaaacta
ttggcagatgcatttaagtccaatgaaaaagttgagtttacgacctttttctcagagtcc
acactggcgagaacgcattacatcgtgcgtgtggcagacaacagtattaagtacaacgtg
aaagacatcgaaaataacctggcagaagccgcacgcacttgggaagacaaactacagtca
gcattgcttggtagcaatggtgaaactcgcggtaacgagctaaaccgcaagtatgccaat
gcgttccctcattcatacaaagaccaggttttgcctagtgctgctgtggttgacatagag
aagctggagcaactgagcgacgagaaaaagctggaaatgctgttctatcgtcctcaggaa
gaagcaaacagcgaaatcgttcgcctgagcctgttccacaaagatgtgcctatccacctg
tcagacgttatgccgatgttagaaaactttggtttgcgtgtgattggtgaaacgccttac
gcaatcaaaaccagcgatggtcaggtaaattggatcatggacttctccatgatgatcgac
tccaaaggcattgcagatttcgataaagtctctgcacgttttcgcgccgcattgaccaat
gtctggaacaaccgtctggaaagcgatggctttaaccgcatggtattgctgggtggcatg
acaggccgtgaagcgtctattttgcgtgcatacgctaaatatatgcgtcagatcggtgtg
acattctcacaatcttacatcgaaaacacctttgagcactatccgcacattgcagcgcaa
attgtagagctgtttgtgaagaaattctctcctgcgaagaaagcggcacaaaagacgctg
gacaagctgattgagaagatctacctggaactggaaaacgttgctaacctggatgacgac
cgtatcattcgcatgtacgttgatatgatcaatgccacactgcgtactaacttctatcaa
aaagaagcggacgacagcaataagtcttatgtctcgttcaagatcaaccctcgtgccatc
cctgacatgccgctgcctttgcctgcgtacgagatctttgtctattctccgcgcgtagaa
ggtgtgcatttacgtggtggtaaagttgcacgtggtggattgcgttggtctgaccgccgt
gaagatttccgtactgaggttctgggccttgttaaggcacagcaggttaagaacacggtg
attgtacctgtgggttctaaaggcgggttcgtttgtaagcagctgccaagtgaccgtgaa
gccttctttaaagaaggtcaggaatgctacaagatgttcatccgcggtttgttagatatc
acagacaacatcatccacggtgaaattgtgccaccagttgacgttgtacgtcatgatgaa
gacgacccgtatctggttgttgctgccgataaaggcaccgcgactttctcggatatcgct
aacggcattgcagaagaatacaatttctggctgggtgatgcgtttgcctcaggtggttca
attggttacgaccacaagaaaatgggtatcacagcgaaaggtgcctgggagtctgttaaa
cgtcatttccgtgaaatggacatcgactgtcagaccacagatttcaccgcggtaggtatc
ggtgacatgggtggtgacgtatttggtaatggtatgttgctgtctaagcacattcgcctg
caggcagcctttaaccatatgcacatcttcatcgacccgaacccggatgcagcaagctct
tatgtagagcgtgaacgcttgtttaatctgcctcgctcaagctgggaagattacaacaaa
gagctgatctctgaaggcggtggtgttttctcacgtgcggctaagtcaattaacctgacg
gctgaaatgaaaaagatgctgggcaccaaaaaagccagcatgacgcctaacgagctaatc
aaagccttgcttaaaatgccagctgatctgctgtggaacggtggtatcggtacttatatt
aaagctaagtcggaatccaatgccgatgtaggcgaccgcgcgaacgacggtctgcgtatc
gatggttcagagctgggcgctaagatctttggtgaaggtggtaacctgggtgcaacgcaa
ctgggtcgtatcgagtttgccgagaaaggcggacgcattaacaccgacttcattgataac
gtaggtggcgtggcttgttcggataacgaagtaaacatcaagatcctgttgaacggtctg
gtagcagaaggcgacctgaccaagaaacagcgtgatgaactgctgtatgccatgacggac
gaagtgtctgaactggtactggctgactgttaccgtcagacgcataccttgtctatcact
aagtcgaaaggtccggcaacactgaaagagaagatccgctttatccatgcactggagaaa
gagggcaaactggaccgtactattgagttcttgccaacggatgaagagctggctgagcgc
gctgcggaagggtctgatctgacacgtcctgagctttcagtactggtttcttactctaag
atggtgttgaaagaatcgctggttgttgatgagatttcagaaaacccgtattaccgtcag
ttgttagtgaattcattccctgtgccactgcgtgagcgctttaacgcggcgatggataac
cacccactgcgtaaagaaatcatcgcgacgaaactggcaaacaacatagtgaacgacatg
ggtctgaacttcatggttcgtatgcacgaagaaaccggtgcaacggaagccgagattgcg
ctgtgctactcgattgccagcgaaatctttgaaatgaaacagacctggcagtcaattgca
gcgctggataaccatattccatcagcggttcagacagaaatgttgtatcagctacgccgt
actatacgccgtacaacgcgttggttcctgcgtcaccgcaacaagggtatgacgattgag
cagacgattgcgttctttgcaccgacctttgcagatctgagcaaaaacctgaacagctac
atggttgaagaagaaagtgcacgcctgacagaaaaagccgatgcgcttgtcgcacaaggt
gtaccagagcaaatcgcaatgcgtattgtgtctctgtctagcctgttctcagttatggac
ctcgcagaagtggctgcaagctctggccgtgccattgatgtggtgtctaacacatacttc
aaactgggtgcgaacatgggactgcactggttccttgaccagatcacggcacagcctgtt
gccaaccactggcaggcgctggcacgtgcctcttaccgtgaagagctggactggcagcaa
cgcgcattgtctgaagttgttctgaacagctttgagggcgatgatcacgatgtcgattca
ctgatcaatcagtggatggaaaatcagtcaacgctattgctacgttggcagcaaatgctg
gctgagttcaagacatcgcagagtcatgactttgccaagttctcagtggcattgcgtgaa
ctgatgttgttgagtcacaactgtgacacttccaaatag
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integrated database retrieval system