Leptonychotes weddellii (Weddell seal): 102748891
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Entry
102748891 CDS
T08708
Symbol
EPRS1
Name
(RefSeq) bifunctional glutamate/proline--tRNA ligase
KO
K14163
bifunctional glutamyl/prolyl-tRNA synthetase [EC:
6.1.1.17
6.1.1.15
]
Organism
lww
Leptonychotes weddellii (Weddell seal)
Pathway
lww00860
Porphyrin metabolism
lww00970
Aminoacyl-tRNA biosynthesis
lww01100
Metabolic pathways
lww01240
Biosynthesis of cofactors
Brite
KEGG Orthology (KO) [BR:
lww00001
]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00860 Porphyrin metabolism
102748891 (EPRS1)
09120 Genetic Information Processing
09122 Translation
00970 Aminoacyl-tRNA biosynthesis
102748891 (EPRS1)
09180 Brite Hierarchies
09181 Protein families: metabolism
01007 Amino acid related enzymes [BR:
lww01007
]
102748891 (EPRS1)
09182 Protein families: genetic information processing
03016 Transfer RNA biogenesis [BR:
lww03016
]
102748891 (EPRS1)
Enzymes [BR:
lww01000
]
6. Ligases
6.1 Forming carbon-oxygen bonds
6.1.1 Ligases forming aminoacyl-tRNA and related compounds
6.1.1.15 proline---tRNA ligase
102748891 (EPRS1)
6.1.1.17 glutamate---tRNA ligase
102748891 (EPRS1)
Amino acid related enzymes [BR:
lww01007
]
Aminoacyl-tRNA synthetase
Class I (A)
102748891 (EPRS1)
Transfer RNA biogenesis [BR:
lww03016
]
Eukaryotic type
Aminoacyl-tRNA synthetases (AARSs)
Multi-aminoacyl-tRNA synthetase complex (MSC)
102748891 (EPRS1)
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
tRNA-synt_1c
WHEP-TRS
tRNA-synt_1c_C
ProRS-C_1
tRNA-synt_1c_C2
Arc1p_N_like
GST_C
GST_C_2
GST_C_3
tRNA-synt_1e
U1snRNP70_N
Motif
Other DBs
NCBI-GeneID:
102748891
NCBI-ProteinID:
XP_006744991
UniProt:
A0A2U3YMN3
LinkDB
All DBs
Position
Unknown
AA seq
974 aa
AA seq
DB search
MERGGVEGLEPAAGRRRRTAMTQRGVRGDGGSHDAGEGRRLRQRQARAHVAASCFRRVRR
GSDGQAGALTGSRRPAEMATLCLTVNAGDPPLGALLAVEHVKDDVSISLEEGKENILYVS
ENVVFTDINSILRYLARVATTTGLYGSNLLEHTEIDHWLEFSATKLSSCNLFTSAINELN
HCLSLRTYLVGNSLSLADLCVWATLKGSAAWQEQLKQNKAPVHVKRWFGFLEAQQAFQSV
GTKWNVSTTKAKVTPEKKQDVGKFVELPGAEMGKVTVRFPPEASGYLHIGHAKAALLNQH
YQVNFKGKLIMRFDDTNPEKEKEDFEKVILEDVAMLHIKPDQFTYTSDHFESIMKYAEKL
IQEGKAYVDDTPAEQMKAEREQRIESKHRKNSIEKNLQMWEEMKKGSQFGQSCCLRAKID
MSSNNGCMRDPTLYRCKIQPHPRTGNKYNVYPTYDFACPIVDSIEGVTHALRTTEYHDRD
EQFYWIIEALGIRKPYIWEYSRLNLNNTVLSKRKLTWFVNEGLVDGWDDPRFPTVRGVLR
RGMTVEGLKQFIAAQGSSRSVVNMEWDKIWAFNKKVIDPVAPRYVALLKKEVIPVNIPEA
QEEMKEVAKHPKNPDVGLKPVWYSPKVFIEGADAETLSEGEMVTFINWGNINITKINKNA
DGKIVSLDAKLNLENKDYKKTTKITWLAETAHALPIPAICVTYEHLITKPVLGKDEDFKQ
YVNKNSKHEELMLGDPCLKDLKKGDIIQLQRRGFFICDQPYEPVSASERRGSERRARIGT
ARMWPTTPFKERPGPSLDNTCAPSEDSLVLYNRVAAQGDVVRELKSKKAAKEDIDAAVKQ
LLALKAEYKEKTGQEYKPGNPPAVVQNVSSMSSASIVESRSLYDEVAAQGEVVRKLKAEK
APKIAQIPFCGEIDCEDWIKKTTARDQDLEPGAPSMGAKSLCVPFKPLCELQPGARCVCG
RNAAKYYTLFGRSY
NT seq
2925 nt
NT seq
+upstream
nt +downstream
nt
atggagaggggcggggtcgaaggcctcgagcccgccgcggggcggagacggcgcacggcg
atgacgcaacgcggtgtgcgcggagacggcgggagccacgacgcaggggaggggcgaagg
ctgcggcaacgtcaggcgcgcgcacacgttgcagcttcttgctttcggcgggttcggaga
ggttctgacggccaggcaggcgcactgacaggtagccgcagaccggcggagatggcgacg
ctctgtctgaccgtgaatgcaggagaccctccgctgggagctttgctggccgtagaacat
gtgaaagacgacgtcagcatttctcttgaagaagggaaagagaatattctttatgtgtct
gaaaatgtggtattcacagacataaattccatacttcgctacttggctcgagttgcaacg
acaactgggctctatggttctaacctgctggaacatactgagattgatcactggttggag
tttagtgctacaaaattgtcttcatgtaatttgttcacttctgcaatcaacgagctcaat
cattgcctgtctctgagaacatacttagttggaaattccttgagcttagcagatttgtgt
gtttgggccaccctaaaaggcagtgctgcatggcaagaacagttgaaacagaacaaagct
ccagtgcacgtaaaacgctggtttggctttctcgaagcccagcaggccttccagtctgta
ggtaccaagtggaatgtttcaacgaccaaagctaaagtgacacctgagaaaaaacaagat
gttgggaaatttgttgagcttccaggtgctgagatgggaaaggttactgtcagatttcct
ccagaggctagtggttacttacacattgggcatgcaaaagctgctcttctgaaccagcac
taccaggttaactttaaagggaaactgatcatgagatttgatgacacaaatcctgaaaaa
gaaaaggaagattttgagaaggttatcttggaagatgttgcaatgttgcatatcaaacca
gatcaatttacttatacctcggatcattttgaaagtataatgaaatatgcagagaagcta
attcaggaagggaaggcttatgtggatgatactcctgctgagcagatgaaagcagaacgt
gagcagaggatagaatccaagcataggaaaaactctattgagaagaatctgcaaatgtgg
gaagaaatgaaaaaaggaagccagtttggtcagtcctgttgtctgagagcaaaaattgac
atgagtagtaacaatggatgtatgagagacccaacgctttatcgctgtaaaattcagcca
catccaagaactggaaataaatacaatgtttatccgacatacgattttgcctgccccata
gttgacagtattgaaggtgttacacatgccctgagaacaacagaataccatgacagagat
gaacagttttattggattattgaagccttaggcataagaaaaccatatatttgggaatat
agtcgactaaatctcaacaacacagtgctctccaaaagaaaactcacatggtttgtcaac
gaaggattggtagatggatgggatgacccaaggtttcctactgttcgtggtgtgctcaga
agagggatgactgttgaagggctgaaacagtttattgctgctcagggctcttcacgttca
gttgtgaacatggaatgggacaaaatttgggcatttaataaaaaggttattgacccggtg
gccccacgatatgttgcattactgaagaaagaagtgattccagtgaatatccctgaggct
caggaggagatgaaagaagtagccaaacacccaaagaatcctgatgttggcttgaagccg
gtgtggtacagtcctaaagttttcattgaaggggctgatgcagagacattgtcagaaggg
gagatggttacctttataaattggggcaacatcaacattactaaaataaacaaaaatgca
gatggaaaaattgtatctcttgatgcaaaattgaatttggagaacaaagactacaagaaa
accacaaagatcacgtggctggcagagacggcacatgctcttcctattcctgcaatctgt
gtcacttacgagcacttgatcacaaagccagtgctgggaaaagatgaggactttaagcag
tatgtcaacaagaacagtaagcatgaagagctaatgctgggggatccctgccttaaggat
ttgaaaaaaggagacattatacaactccagagaagaggattcttcatatgtgatcagccg
tatgaacctgttagtgcctctgagagaagaggttcagaaaggagagcaagaataggaact
gctaggatgtggccgactactccttttaaggaaagaccgggtccttctttggataatact
tgtgctccatctgaggattccttggtcctttacaacagagtggctgctcaaggggatgtg
gttcgtgaattaaaatccaagaaagcagcaaaggaagatatagatgcagctgtaaaacag
cttttggctttgaaagctgaatataaggagaaaactggccaggaatataaacctggaaat
cctcctgcggtggtacagaatgtttcttctatgtcatcagcaagtattgtggaaagtaga
tctctctatgatgaagttgctgcacaaggggaggtggttcgtaaactgaaagctgaaaaa
gcccccaagattgctcagattccattctgtggggaaattgactgcgaagactggatcaaa
aagaccactgctagggatcaagatcttgagcccggagctccatccatgggagctaaaagc
ctttgcgtccccttcaaacccctctgtgagctgcagcccggagccagatgcgtctgcggc
aggaacgccgccaagtactataccttgtttggccgcagttactaa
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