Vescimonas coprocola: MM50RIKEN_05540
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Entry
MM50RIKEN_05540 CDS
T07634
Name
(GenBank) hypothetical protein
KO
K08693
2',3'-cyclic-nucleotide 2'-phosphodiesterase / 3'-nucleotidase / 5'-nucleotidase [EC:
3.1.4.16
3.1.3.6
3.1.3.5
]
Organism
vcop
Vescimonas coprocola
Pathway
vcop00230
Purine metabolism
vcop00240
Pyrimidine metabolism
vcop00760
Nicotinate and nicotinamide metabolism
vcop01100
Metabolic pathways
vcop01110
Biosynthesis of secondary metabolites
vcop01232
Nucleotide metabolism
Module
vcop_M00958
Adenine ribonucleotide degradation, AMP => Urate
vcop_M00959
Guanine ribonucleotide degradation, GMP => Urate
Brite
KEGG Orthology (KO) [BR:
vcop00001
]
09100 Metabolism
09104 Nucleotide metabolism
00230 Purine metabolism
MM50RIKEN_05540
00240 Pyrimidine metabolism
MM50RIKEN_05540
09108 Metabolism of cofactors and vitamins
00760 Nicotinate and nicotinamide metabolism
MM50RIKEN_05540
Enzymes [BR:
vcop01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.5 5'-nucleotidase
MM50RIKEN_05540
3.1.3.6 3'-nucleotidase
MM50RIKEN_05540
3.1.4 Phosphoric-diester hydrolases
3.1.4.16 2',3'-cyclic-nucleotide 2'-phosphodiesterase
MM50RIKEN_05540
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
5_nucleotid_C
Y_phosphatase3
Metallophos
SAM_HAT_C
PGA_cap
NadN_nucleosid_C
Tc-R-P
Gram_pos_anchor
PTP-SAK
Motif
Other DBs
NCBI-ProteinID:
BCK80791
UniProt:
A0A810Q5T4
LinkDB
All DBs
Position
568072..570963
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AA seq
963 aa
AA seq
DB search
MRKVLALLLSLVMTLTLLVPATWAEEKPAAGYQLPASLKGKTVILHTNDVHGAIDKYAKV
AALKNECYDRGASAVVLLDAGDFSQGSTYVSLSKGATAVELMNAVGYDAVTLGNHEFDYG
FPQLKANLSYSAADFLVTCVNLVDDEGEPIFAPGATAPVTDADDNPLFNLTVMGVATPET
QTKANPALMKGLTFLSGQKLYDAANAVIKVAREEGNADIVIALTHLGVDASSEPNRSIDF
VKNVPGVDIVIDGHSHTVMTANKDNGMIQSTGTGLAYVGAFVIDNATKSVESNGLIDLST
YTKEDASVKAIADKIIGEVDAEYGKVFAKTEVELNGDKEPGNRTEETNMGDLITDAMMWA
VKTRMPSINMENAVAITNGGGIRAAIKAGDITKKDVFTVLPFGNTLTVVNVTGAELLEAL
EAATFCTPVSLGGFPQTAGMKLTVDCTKDYDKNDTTYPGSTYYGPKSINRVTIESINGKP
FDKDATYAVITNDFLAAGGDIYYAFAAASSQIESGLSLDTVVMDYITDELGGTVTKARYG
EPQGRMTIIPPEKTDDGKITIGGLDANVWMTKYGNVYTDCKAKDFMGKLGFAWGDLVTVK
FLDKTLTLPVVPTYSYVDSGKPAIIVEKDADGKPTGYVSMAINMGNFAETYELAKKHTNE
DKTWYWTAWEGVTYPVEVTFKMAEKGGYMAEYIMHDLQRTNDRADYPNLSDAEFGNFRNI
ATTGMGKDVLYRGSSPINPELGRNTYVDAALKQAGVNVIMNLANSQEEAEAYEGFADTYY
SGQKVIYLNLGVDFSAPEFQKGLAEGLRFFAANKGTYYVHCTEGKDRAGFVSALLECLMG
ATYDEVVADYMVTYYNYYGVEPGTDKYNAIANSNIIKTLQNAFGVEDLSKADLQKGAKDY
MKAIGLTDAEITDLMVNLGYVAPVEPVTPSKPATGDAGIVVYLGLGVMALAGGVLVAKKK
EQF
NT seq
2892 nt
NT seq
+upstream
nt +downstream
nt
atgcggaaagtattagcattgctcctgtccctggtgatgacactgactctgttggtgccg
gccacctgggcagaagagaagccggcggctgggtatcagctgccagcttctctgaagggc
aagacggtcattctgcacaccaacgacgtacatggcgctattgacaaatacgccaaggtt
gcggcactgaaaaacgagtgctacgaccggggcgccagcgctgtggtgctgctggatgcc
ggtgacttcagccaaggctctacctacgtcagcctcagcaagggcgctaccgccgtggag
ctgatgaatgccgtgggctacgacgccgtgacgctgggcaaccacgagtttgactacggc
ttcccccagctgaaggcgaatctcagctacagcgccgccgacttcctggtgacctgcgtc
aatctggtggacgacgagggtgagcccatcttcgctcccggcgctaccgctcccgttacg
gacgctgacgacaaccccctctttaacctcaccgtgatgggtgtggccactccggagact
cagaccaaggccaaccccgctctgatgaagggcctgaccttcctgtccggccagaagctg
tatgacgccgccaacgccgtgatcaaggtcgcccgtgaggagggcaacgccgatatcgtc
atcgctctgactcatctgggcgtagatgcgtcctccgaacccaaccgctccatcgatttc
gtgaagaacgtccccggtgtggacatcgtcatcgacggccactcccacaccgtgatgacc
gccaacaaggacaacggcatgatccagtctaccggtacgggtcttgcgtatgtgggcgct
ttcgtcattgataacgccaccaagagcgtggagagcaacggtctcatcgacctgagcacc
tacaccaaggaggatgcctccgtcaaggccatcgccgacaagatcatcggtgaggtggat
gccgagtacggcaaggtgttcgccaagaccgaggtggagctcaacggcgacaaggagccc
ggcaaccgcaccgaggagaccaacatgggcgaccttattaccgacgccatgatgtgggcc
gttaagacccggatgcccagcatcaacatggagaacgctgtggccatcaccaacggcggc
ggcatccgtgccgccatcaaggccggcgacatcaccaagaaggacgtgttcaccgttctg
cccttcggcaatacgctgacggtggtgaatgtcaccggcgccgagctgctggaggcgttg
gaggctgctaccttctgcactcctgtgtccttgggcggcttcccccagaccgccggcatg
aagctgacggtggactgcaccaaggattacgacaagaacgacaccacctatcccggctcc
acctactatggtcccaagagcatcaaccgtgtgaccatcgagagcatcaacggcaagccc
tttgataaggatgccacctacgctgtcatcaccaacgacttcctggccgccggcggcgac
atctactacgccttcgccgctgccagcagccagatcgagagcggtctgtcgctggacacc
gtggtcatggactacatcaccgatgaactgggcggcaccgtcaccaaggcccggtacggc
gagcctcagggccgcatgaccatcatcccgccggagaagacggatgacggcaagatcacc
atcggcggtctggacgccaacgtctggatgaccaagtacggcaacgtctacaccgactgc
aaggccaaggacttcatgggcaagctgggctttgcctggggcgatctggtgacggtcaag
ttcctggataagaccctgaccctgccggtggtgcctacctattcctatgtggattccggc
aagcccgccatcatcgtggagaaggacgccgacggtaagcctaccggctacgtctccatg
gctatcaacatgggtaactttgccgagacctatgagctggccaagaagcacaccaatgag
gataagacgtggtactggaccgcttgggagggtgtgacctatcccgtggaggtcaccttc
aagatggcggagaagggcggctacatggccgagtacatcatgcacgacctgcagcgcacc
aatgaccgtgccgattatcccaacctgtccgacgccgagttcggcaacttccgcaacatc
gccaccaccggcatgggcaaggatgtgctgtaccgtggctcctcccccatcaacccggag
ctgggccgcaacacctatgtggatgccgctctgaagcaggcgggcgtgaacgtcatcatg
aaccttgccaacagtcaggaggaggccgaggcctatgagggcttcgctgatacctactac
tccggccagaaggtgatctatctgaatctgggcgtggacttctccgctccggagttccag
aagggtctggccgagggcctgcggttcttcgccgccaacaagggtacctactatgtccac
tgcaccgagggcaaggaccgtgccggtttcgtctccgctctgctggagtgcctgatgggc
gctacctatgacgaggtggtggcggactacatggtcacctactacaactactacggcgtg
gagcccggtacggacaagtacaacgccattgccaacagcaacatcatcaagaccctccag
aacgccttcggcgtggaggatctgtccaaggccgacctgcagaagggcgctaaggactac
atgaaggccatcggtcttaccgacgccgagatcaccgatctgatggtgaatctgggctac
gtggcccccgtggagcctgtgacaccctccaagcccgctaccggtgacgccggtatcgtg
gtgtatctgggtctgggcgtgatggctctggccggtggggtgctggtggctaagaagaag
gagcagttctaa
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