KEGG   Branchiostoma floridae (Florida lancelet): BRAFLDRAFT_128677Help
Entry
BRAFLDRAFT_128677 CDS       T01074                                 

Definition
hypothetical protein
Orthology
K12657  
delta-1-pyrroline-5-carboxylate synthetase [EC:2.7.2.11 1.2.1.41]
Organism
bfo  Branchiostoma floridae (Florida lancelet)
Pathway
Arginine and proline metabolism
Metabolic pathways
Biosynthesis of amino acids
Module
Proline biosynthesis, glutamate => proline
Brite
KEGG Orthology (KO) [BR:bfo00001]
 Metabolism
  Overview
   01230 Biosynthesis of amino acids
    BRAFLDRAFT_128677
  Amino acid metabolism
   00330 Arginine and proline metabolism
    BRAFLDRAFT_128677
Enzymes [BR:bfo01000]
 1. Oxidoreductases
  1.2  Acting on the aldehyde or oxo group of donors
   1.2.1  With NAD+ or NADP+ as acceptor
    1.2.1.41  glutamate-5-semialdehyde dehydrogenase
     BRAFLDRAFT_128677
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.2  Phosphotransferases with a carboxy group as acceptor
    2.7.2.11  glutamate 5-kinase
     BRAFLDRAFT_128677
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
JGI: 
UniProt: 
AA seq 1027 aa AA seqDB search
MSGQIRSKSTLSRPIINRTNVTERALGGVSVPRWRYVNARDLNDLKGAYAHAPYSRLNGK
AIPYRSELKHAKRIVVKLGSAVITRDDECGLALGRLASIVEQVSELHAEGHEMLIVTSGA
VAFGKQRLRHEIAMSQSMRQSMRDARARNGNTMKFLEPRACAAAGQSGLMALYDSMFSQY
GITCAQNEDEMVKEACAAAGQGGLMALYDLLFGLRGINTAQVLVTKPDFYNDDNRRNLQS
TISELLRMNIVPILNANDAVAPPPEPDKDLLGVISVKDNDSLAARLAAEVQADLLCLLSD
VDGIYTAPPGEDSSKLIDTYYPGIQSTIKFGQKSRVGMGGMESKVRAAQWALERGTAVVI
ANGCRQGSGQAILDIVSGRKTGTFFTEAKVSSVTVETQAENARNGGRVLSSLTADQRSDI
ISHLANLLEERKSSILAANQKDMDVARQQGNLSGPMLSRLALSAGKLTNLADGLRQIAAS
SHRNLDRVLKRIQVADGMELRQITVPIGVLMVIFESRPDCLPQVAALAIASGNGLLLKGG
KEATHSNEYLHSLVQESLDLYSAKDAISLVSSREAIYDLLKLEHLIDLVIPRGSSDLVRM
IQQASKGIPVLGHSEGICHVYVDKDCDPEMAAKIVLDSKCDYPAACNAMETLLVHRSLLK
TPVFDHIVDTLKQEKVSINAGPLLAKALRFGPREAKSMRVEYGGLECCVEAVDSVDDAIN
HIHSFGSSHTDVIVTNNEHTAEKFLQSVDSACVFHNASSRFADGYRFGLGAEVGISTARI
HSRGPVGVEGLLTTKWVLRGNGNSVGDFAEGGPNSYIHQYLPVAAVLDSKCDYPAACNAM
ETLLVHRSLLKTPVFDHIVDTLKQEKVSINAGPLLAKALRFGPREAKSMRVEYGGLECCV
EAVDSVEDAINHIHSFGSSHTDVIVTNNEHTAEKFLQSVDSACVFHNASSRFADGYRFGL
GAEVGISTARIHSRGPVGVEGLLTTKWVLRGNGNSVGDFAEGGPNSYIHQYLPVAAGAEE
SDSEKEN
NT seq 3084 nt NT seq  +upstreamnt  +downstreamnt
atgtcaggccaaataagatcaaagtctacgctatcccgtcccatcataaacagaacgaat
gttacggaacgagcgttagggggtgtttctgtgccacgatggcgttatgtcaacgcacgg
gacttgaacgatcttaagggggcgtacgcacacgcgccttactccagactcaatggcaaa
gcgattccgtatcgctctgagctgaagcacgccaagagaatcgtggtgaagttggggagc
gcggtgattactcgtgatgacgagtgtgggttggcgcttgggaggctcgcatctatcgtg
gaacaggtgtcggagcttcacgctgagggtcatgagatgttgattgtcaccagcggtgcg
gtggcgtttggaaaacagcggttgcgtcatgagatcgccatgtctcagagcatgaggcag
agcatgcgagatgcccgtgccaggaacgggaacaccatgaagtttctggaaccgcgtgct
tgtgcagcggccgggcagagcggccttatggcgttgtacgattccatgttctctcagtac
ggcattacctgtgcccagaacgaggacgagatggttaaggaagcgtgcgccgcagcggga
caggggggcctcatggccctgtatgatttactgtttggcttacgtgggattaacacggcg
caggtgctggtgaccaagccggatttctacaacgatgacaaccggcgcaatttacagagc
acgatcagcgagctgctgcggatgaatatcgtgcccatcctgaacgccaacgatgccgtt
gcccctcctcccgaacctgacaaagacttacttggggtgatcagtgtgaaggataatgac
tccctggcggcacggctagctgcggaggtccaggccgacctgctctgtctgttgtccgat
gtcgacgggatctacaccgctccgcccggcgaggattcctccaagctgatcgacacgtac
tatcccgggattcagagcaccatcaagtttgggcagaagtccagggtcggcatgggaggt
atggagtccaaggtacgagctgcacagtgggcattagagcgaggcactgcagtagtcatc
gctaacggctgtcgccagggttccggtcaggccattctggacattgtcagtggtcgcaag
acggggacgttcttcactgaggccaaggtctcctcggttaccgtggaaactcaggcagag
aatgcgagaaacggagggagagtgttgtcttcgctcacagcggatcagcgatcagacatc
atctcacacctggctaacctgctggaggagcgcaagtcgtccattctcgcagccaatcag
aaggacatggatgttgctaggcaacaaggtaacctgtcagggccgatgctgtcccgtctg
gcgctgagcgccgggaagctgaccaacctggccgatggcctgcgtcagatcgccgccagc
tctcaccggaacctggaccgcgtgctgaagcgtatccaggtggctgatgggatggagctg
cgccagatcaccgtaccgatcggggtgctgatggtcatcttcgagtcccggcccgactgt
ctgccgcaggtggcagccctggccatcgccagcggtaacggtttacttctgaagggcggc
aaggaggcgacacactccaacgagtacctgcacagtctggtgcaggagtccctggatctg
tacagcgctaaggacgccatctcgctggtcagctcaagagaagccatctatgacctcctg
aagctggagcacctgatcgacctggtgatcccgcggggatccagcgatctggtgcgcatg
atccagcaggccagtaaggggatcccggtgctgggtcacagcgaggggatctgccacgtg
tacgtggacaaggactgtgatccggagatggctgccaaaattgtcctggactcgaagtgt
gactacccagctgcctgtaatgccatggagacccttctggtgcaccgcagtctgctgaag
acacctgtgttcgaccacatcgtcgacacgctcaagcaagaaaaggtatcaatcaatgct
ggtccactattggccaaggcacttcgctttggaccgcgggaggccaagtcgatgcgagtg
gagtacggcggactggagtgctgtgttgaagctgtggacagcgtggatgatgccattaac
cacatccacagctttgggagttcacacactgacgtcatagtcaccaacaatgagcacaca
gcagagaagttcctccagagcgtggacagtgcctgtgttttccataacgccagctcgcgg
tttgcggacggctaccgcttcgggctgggcgccgaggtggggatcagcacggcgaggatc
cactcccgcgggccggtgggcgtggagggtctgctaaccaccaagtgggttcttcgcggg
aacggaaactcggtgggcgactttgcggaaggagggccgaacagctacatacatcagtac
ttacctgtagcggcagtcctggactcgaagtgtgactacccagctgcctgtaatgccatg
gagacccttctggtgcaccgcagtctgctgaagacacctgtgttcgaccacatcgtcgac
acgctcaagcaagaaaaggtatcaatcaatgctggtccactattggccaaggcacttcgc
tttggaccgcgggaggccaagtcgatgcgagtggagtacggcggactggagtgctgtgtt
gaagctgtggacagcgtggaagatgccattaaccacatccacagctttgggagttcacac
actgacgtcatagtcaccaacaatgagcacacagcagagaagttcctccagagcgtggac
agtgcctgtgttttccataacgccagctcgcggtttgcggacggctaccgcttcgggctg
ggcgccgaggtggggatcagcacggcgaggatccactcccgcgggccggtgggcgtggag
ggtctgctaaccaccaagtgggttcttcgcgggaacggaaactcggtgggcgactttgcg
gaaggagggccaaacagctacatacatcagtacttacctgtagcggcaggtgctgaggaa
tcagactcagagaaggaaaactag

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