KEGG   Tinamus guttatus (white-throated tinamou): 104578213
Entry
104578213         CDS       T08560                                 
Symbol
CPS1
Name
(RefSeq) carbamoyl-phosphate synthase [ammonia], mitochondrial
  KO
K01948  carbamoyl-phosphate synthase (ammonia) [EC:6.3.4.16]
Organism
tgt  Tinamus guttatus (white-throated tinamou)
Pathway
tgt00220  Arginine biosynthesis
tgt00250  Alanine, aspartate and glutamate metabolism
tgt00910  Nitrogen metabolism
tgt01100  Metabolic pathways
tgt01200  Carbon metabolism
tgt01230  Biosynthesis of amino acids
Module
tgt_M00029  Urea cycle
Brite
KEGG Orthology (KO) [BR:tgt00001]
 09100 Metabolism
  09102 Energy metabolism
   00910 Nitrogen metabolism
    104578213 (CPS1)
  09105 Amino acid metabolism
   00250 Alanine, aspartate and glutamate metabolism
    104578213 (CPS1)
   00220 Arginine biosynthesis
    104578213 (CPS1)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01002 Peptidases and inhibitors [BR:tgt01002]
    104578213 (CPS1)
Enzymes [BR:tgt01000]
 6. Ligases
  6.3  Forming carbon-nitrogen bonds
   6.3.4  Other carbon-nitrogen ligases
    6.3.4.16  carbamoyl-phosphate synthase (ammonia)
     104578213 (CPS1)
Peptidases and inhibitors [BR:tgt01002]
 Cysteine peptidases
  Family C26: gamma-glutamyl hydrolase family
   104578213 (CPS1)
SSDB
Motif
Pfam: CPSase_L_D2 GATase CPSase_sm_chain CPSase_L_D3 ATP-grasp Dala_Dala_lig_C MGS ATPgrasp_Ter ATP-grasp_3
Other DBs
NCBI-GeneID: 104578213
NCBI-ProteinID: XP_010224062
LinkDB
Position
Unknown
AA seq 1500 aa
MTRILTACKVVKALKGRLEFCNVSADHWSFSRTGTRLLSIKAQTANLVLEDGTKMKGYSF
GHPSSAAGEVVFNTGLAGYTEALTDPSYKGQILTLANPIVGNGGVPDTAALDEMGLSPFL
ESDGIKVSGLVVLDYSSEYSHWQAARSLGKWLQEEKVPALYGIDTRMLSKLIRDKGTVLG
KIEFEGQPVEFTDLNKQNLIAEVSTKEIKIYGRGNPVKVVAVDCGLKHNIIRLLVKRGAE
VHLVPWDHDFTSMEYDGLLISGGPGDPMKAQEVIQNVRKVLESDRPEPLFGISMGSLITG
IAAGATSYKMQMANRGQNQPVLNMLNGRAFITAQNHSFAIDNSTLPPGWKPLFVNANDQT
NEGIMHETKPIFTAQFYPEANPGPTDTEFLFDSFMSLIKKEKGTTIASVLPKAGAASSRV
EVSKVLLLGSGGLSIGQAGEFDYSGSQAVKAMKEENVKVILMNPNIASVQTNESGLKQAD
AVYFLPITPHFVTEVIRAERPDGLILGMGGQTALNCGVELFKQGVLQEYGVKVLGTSVES
IMATEDRQLFSDKLTELNEKIAPSFAVESVEDALKAAEKIGYPVMIRSAYALGGLGSGIC
HDKESLLDLGIKAFSMTNQILVEKSVVGWKEIEYEVVRDAADNCIAVCNMENIDAMGVHT
GDSVVVAPSQTLTNEEFQMLRDRAIKVVRHLGIVGECNIQFALHPTSLDYYVIEVNARLS
RSSALASKATGYPLAFIAAKIALGITLPEIKNVVTGKTSACFEPSLDYVVTKIPRWDLDR
FQRTSNQIGSSMKSVGEVMAIGRTFEESFQKALRMCQPSMDGFAPHLPMGKAWPADLDLQ
KELSEPSSTRIHAVAKALYDDIPVDDIHKLTAIDKWFLYKMRSIVNMEKTLKEVHSEAVP
EETLRRAKQMGFSDRQIGKCLGLTEVQSRELRLRKSIVPWVKQIDTLAAEYAALTNYLYI
TYNGQEHDVKFDDRGVMVLGCGPYHIGSSVEFDWCAVSSIRTLRQLGNKAVVVNCNPETV
STDFDECDRLYFEELSLERILDIYQHEGCSGCIISVGGQIPNNLAVPLYRSGVQILGTDP
LQIDRAEDRAVFSAVLDELRVAQAPWKAVSTLKDAVEFASSVGYPCLLRPSYVLSGSAMN
VVFTEEEMKKFLAEATRVSQDHPVVLTKFIEDAREVEMDAVAKAGRVISHAVSEHVENAG
VHSGDATLMLPAQTISQGALEKIKAATRKIANAFAISGPFNIQFLVRGNDVLVIECNLRA
SRSFPFVSKTLGVDFIDVATKVMVDKEVNELSLPTLEHPIIPSKYVGIKAPVFSWSRLRD
ADPVLRCEMASTGEVACFGEDVYSAFQKAMLATGFTFPKKGILIGIQNSFRSKFLSVAEL
LHEQGLKLFATEEISDWLNANSIPATPVAWPSQDSQGSGLPLLSRLVRDRKIDLVINLPS
SSSEFVHDNYVVRRLAIDSGIALLTNFQVAKLLAEAIKYSGNLDSKSLFHYRQFDSGDQA
NT seq 4503 nt   +upstreamnt  +downstreamnt
atgacaagaattctgacggcttgcaaagtggtgaaggctttgaaaggcagattggagttt
tgcaatgtgtctgctgatcactggagtttctcaaggactggcaccaggttgttgagcatc
aaggcacagacagcaaacttggtgctggaagatggaacgaagatgaagggctattccttt
ggccatccatcctctgcagcaggggaagttgtgttcaacactggccttgctggatacacc
gaagccttgacagatcccagctacaaaggccagatccttacactagccaaccccatagtt
gggaatggcggggtgcctgacacggctgctttggatgaaatgggcctcagcccgttcctt
gagtctgatggaatcaaggtttcgggtttggtggtgctagactacagcagtgagtacagt
cactggcaggctgctaggagcctgggcaagtggctgcaggaggagaaggtgcctgctcta
tatgggattgataccaggatgctgtccaaattgattcgggacaagggcactgtacttggg
aagattgaatttgaaggtcaacctgtggagtttacagacctgaataagcagaacttaatt
gcagaagtgtcaaccaaggaaatcaaaatatatggtagagggaatccagttaaagtggta
gctgtcgactgtgggttgaagcacaacatcatccgtctgctagtgaagcgaggtgcagaa
gtgcatttggtgccatgggaccatgatttcaccagcatggaatatgatggactcttaatt
tctggaggtccaggggatccaatgaaggcccaggaggtgattcagaatgttagaaaggtc
ctggagagcgatcgcccagagccgttgtttggaatcagcatgggcagtttaatcactgga
atagcagctggagccacttcctacaagatgcagatggccaacagagggcagaaccagccg
gttctgaacatgctgaatggacgggctttcatcactgctcagaaccacagttttgccatc
gacaactctaccctcccaccaggctggaagcctctttttgtgaatgccaacgatcaaaca
aatgagggaattatgcatgagaccaaaccaattttcacagctcagttctacccagaggca
aatccagggccaacagatacagagtttctcttcgattcatttatgtccctgattaagaag
gagaaaggcactaccattgcctctgtcctgcccaaagctggagcagcatcttccagagta
gaggtctccaaagttcttctcctaggatctgggggtctgtcgattggtcaagcaggggaa
tttgattattctggatcccaggctgtgaaagccatgaaggaagaaaatgtgaaagtcatc
ctcatgaatcccaacatcgcctcggtgcagaccaacgagagcggcctgaaacaagccgac
gccgtctacttcctccccatcaccccacactttgtcacggaggtcatcagggctgagcga
cccgatggattaatcctgggcatgggtggccagacagctctcaactgtggagtggaactc
ttcaagcaaggagtgctgcaggagtacggcgtgaaggtcctaggtacatcagttgaatcc
atcatggctacagaggatagacagctcttttctgacaaactgactgaactgaatgaaaag
attgctcctagctttgcagtggagtcggttgaagatgctttgaaggctgctgaaaagatc
ggctatcctgtcatgatacgttctgcctatgcccttggtggtctgggatcgggcatatgt
catgataaggaaagtctgctggatcttggtatcaaggcgttctcaatgactaaccaaatt
ctggtggaaaagtcagttgttggctggaaggagatagagtatgaagttgtgagagatgct
gctgataactgtattgctgtctgcaatatggaaaacattgatgctatgggagtccacaca
ggggattctgttgtagtggctccaagccagacgctcactaatgaggagtttcagatgctg
agggatcgtgccatcaaggtggtccggcacttgggcatcgtgggagagtgtaatatccag
tttgctctgcatccaacttccctggactactacgtcattgaagttaatgccaggctctca
agaagttcagctttggcatccaaagcgacagggtacccactggccttcattgctgccaaa
attgccttgggcatcaccctaccagaaatcaagaacgtggtgacaggaaaaacctctgcc
tgctttgagcccagcctggattacgtcgttaccaagataccccgctgggatttggaccgt
tttcagcgtacctccaaccagataggaagctccatgaaaagtgtgggagaggtcatggcc
atcggacgcaccttcgaggagagctttcagaaggccctgcggatgtgtcagccctccatg
gatggcttcgctccacacctgcccatgggcaaagcctggccggccgacctggacctccag
aaggagctatcagagccttccagcactcggatacacgcggtggccaaggccttgtatgat
gacatccctgtggatgacattcacaaactcacggccattgacaagtggttcctctataag
atgcgcagtattgtgaacatggagaagaccttgaaggaagtgcacagtgaagctgttcca
gaagagacactgaggagagccaagcagatgggcttctcggacaggcagattgggaagtgc
ctggggctgaccgaagtccagagccgggagctgaggctgaggaaaagcatagtgccttgg
gtgaaacagattgacacgctggcagcggaatatgccgcactaactaattacctctacatc
acatacaatgggcaggaacatgatgtaaaatttgatgaccgtggagtgatggtgttgggc
tgtggaccgtatcacataggcagcagtgtggagtttgactggtgtgctgtctccagcatc
cgcacgctgcggcagcttggcaacaaggcggtcgtggtgaactgcaacccggagacggtg
agcaccgattttgatgagtgtgacaggctgtactttgaagagctgtcactggaaaggatc
ctggacatctaccagcacgagggatgcagtggctgcatcatttctgtaggagggcagatt
cccaataacttggccgtgccgctgtaccggagtggagtgcagatccttggcacagatccc
ttgcagattgaccgggcagaagatcgtgccgtgttctcggctgttctggatgagctgcgc
gtggcccaggccccctggaaggcagtcagcacgctgaaagatgcagttgaatttgcaagc
tccgtgggttatccatgcttgttgaggccttcctacgttctgagtgggtctgcaatgaat
gtagtattcactgaagaggagatgaagaaattcttagcagaagccaccagagtctcccag
gatcaccctgtggtactcactaaatttattgaagatgcccgtgaggtggaaatggatgct
gtagccaaggcaggcagggttatctctcacgccgtttccgagcacgtggagaacgcaggt
gtgcactctggagatgccaccctcatgttgcccgctcagactattagccagggagcactg
gagaagataaaagctgctacgagaaagattgcaaatgcctttgctatctctggtccattc
aacattcaattcttggtgcgaggaaacgatgtgctggtgattgagtgcaatttgcgggcc
tcccgctccttcccttttgtatccaagactctaggtgtggacttcattgatgtggcaaca
aaagtgatggttgacaaagaggttaatgaattgtcccttcccacactggagcatccaatt
attccttccaaatacgttgggattaaggccccagtgttctcctggtcccggctgagagat
gctgaccctgttcttcgatgtgagatggcctctactggggaggttgcctgctttggggag
gatgtgtactctgctttccagaaggccatgcttgccacggggtttacttttccgaagaag
ggaattctgatcggaatccagaattccttccgctcaaagttcctcagtgtggcagagcta
cttcatgagcaaggtttgaagctttttgccacggaagaaatttctgactggctcaatgcc
aacagcatcccagcgactccagtggcgtggccgtcgcaggacagccaggggtctgggctg
cccttgctcagcaggctcgtaagggataggaaaatagatctggtgattaacctgcccagc
agcagctctgagtttgtccatgataattacgtggtccggcggctggctatcgacagtggg
attgctctgctcactaatttccaggtggcgaagctgcttgctgaagccatcaagtactct
gggaacctggactccaagagtcttttccactacagacagtttgacagtggagatcaagca
tag

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