Arvicola amphibius (Eurasian water vole): 119811779
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Entry
119811779 CDS
T08327
Symbol
Tcirg1
Name
(RefSeq) V-type proton ATPase 116 kDa subunit a3
KO
K02154
V-type H+-transporting ATPase subunit a
Organism
aamp
Arvicola amphibius (Eurasian water vole)
Pathway
aamp00190
Oxidative phosphorylation
aamp01100
Metabolic pathways
aamp04142
Lysosome
aamp04145
Phagosome
aamp04721
Synaptic vesicle cycle
aamp04966
Collecting duct acid secretion
aamp05152
Tuberculosis
aamp05165
Human papillomavirus infection
aamp05323
Rheumatoid arthritis
Module
aamp_M00160
V-type ATPase, eukaryotes
Brite
KEGG Orthology (KO) [BR:
aamp00001
]
09100 Metabolism
09102 Energy metabolism
00190 Oxidative phosphorylation
119811779 (Tcirg1)
09140 Cellular Processes
09141 Transport and catabolism
04145 Phagosome
119811779 (Tcirg1)
04142 Lysosome
119811779 (Tcirg1)
09150 Organismal Systems
09155 Excretory system
04966 Collecting duct acid secretion
119811779 (Tcirg1)
09156 Nervous system
04721 Synaptic vesicle cycle
119811779 (Tcirg1)
09160 Human Diseases
09172 Infectious disease: viral
05165 Human papillomavirus infection
119811779 (Tcirg1)
09171 Infectious disease: bacterial
05152 Tuberculosis
119811779 (Tcirg1)
09163 Immune disease
05323 Rheumatoid arthritis
119811779 (Tcirg1)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
aamp04147
]
119811779 (Tcirg1)
Exosome [BR:
aamp04147
]
Exosomal proteins
Exosomal proteins of other body fluids (saliva and urine)
119811779 (Tcirg1)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
V_ATPase_I
DUF2730
THOC7
APG6_N
Motif
Other DBs
NCBI-GeneID:
119811779
NCBI-ProteinID:
XP_038181727
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All DBs
Position
1:complement(147826174..147836618)
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AA seq
833 aa
AA seq
DB search
MGSMFRSEEVALVQLLLPTAAAYTCVSQLGELGLVEFRDLNASVSAFQRRFVVDVRRCEE
LEKTFTFLQEEVQRAGLTLPPPEGTLPAPPPRELLRIQEETDRLAQELRNVRGNQQALRA
QLHQLQLHSAVLSQSHGPPMAAAHTEGPSSERTPLLPDARGPHADLKVNFVAGAMEPYKA
AALERLLWRACRGFLIASFRETEGQLEDPVTGEPATWMTFVISYWGEQIGQKIRKITDCF
HCHVFPYLEQEEARHAVLQQLRQQSQELQEVLGEAERFLSQVLGRVQQLLPPGQVQIRKM
KAVYLALNQCSVSTTHKCLIAEVWCATQDLPTLQQALQDGSSEAGVSAVAHRIPSRDMPP
TLIRTNRFTASFQGIVDAYGVGRYREVNPAPYTIITFPFLFAVMFGDVGHGLLMFLFALA
MVLTENRPAVKAAQNEIWQTFFGGRYLLLLMGLFSIYTGFIYNECFSRATTIFPSGWSVA
AMANQSGWSDKYLSQHPMLTLNPNISGVFLGPYPFGIDPIWSLATNHLSFLNSFKMKMSV
ILGVTHMAFGVFLSIFNHMHFGQAHRLLLETLPELIFLLGLFGYLVFLIVYKWLQVSAAS
ASTAPSILIHFINMFLFAQSPTNQPLFHGQEVVQYVLVVLALATVPILLLGTPLYLLRQH
RHRNTQRRPAGQQDKNSDKLLASSDASTSENTWSPDEEKAGIPGDEEAEFVPSEVFMHQA
IHTIEFCLGCISNTASYLRLWALSLAHAQLSEVLWAMVMRIGLGMSREMGVAAVVLVPVF
AAFAVLTVAILLVMEGLSAFLHALRLHWVEFQNKFYSGTGYKLSPFTFTVDNE
NT seq
2502 nt
NT seq
+upstream
nt +downstream
nt
atgggttccatgttccggagtgaagaggtggccttggtccagctcctgctgcccacagca
gctgcctacacctgcgtgagccagctgggtgagctgggcctcgtggagtttagagacctc
aacgcatccgtgagtgccttccagaggcgctttgtggtggatgtccggcgctgcgaggag
ctagagaagaccttcaccttcttacaggaagaagtacagcgggctggcctgacactgccc
ccacctgaggggacactgccagcaccacctccccgagagctgctgcgaattcaggaggag
acagaccgcctggcccaggagcttcggaatgttcgaggcaaccagcaggcactgcgggcc
cagctgcaccagctgcagctccactctgctgtgctcagccagagtcacggccccccgatg
gcagctgcccacactgagggaccctcctctgagagaacgcccctgcttccagacgctcgg
gggccacatgcagacctgaaggtcaactttgtggcaggtgccatggagccctacaaggct
gctgccctggagcgcctgctctggagagcctgccgcggcttcctcattgccagctttcgg
gagacggaggggcagctggaggacccggtgacgggtgagcctgcaacttggatgaccttt
gtcatctcctactggggtgagcagatcggtcagaagatccgaaagatcacagactgcttc
cactgccacgtcttcccctacctggagcaagaggaagcccggcatgcggtgttgcagcag
ctgcggcagcagagccaggagcttcaggaggtcctgggggaagcagaacgattcctgagc
caggtgttgggccgggtacagcagctgctgccaccagggcaggtgcagatccgcaagatg
aaggctgtgtacttggctctcaaccagtgcagtgtgagcaccacacacaagtgcctcatt
gccgaggtctggtgtgccacgcaggacctgcccaccctccagcaggcgctacaggatggc
tcaagcgaggcaggagtgagtgctgtcgctcaccgcatacccagccgggacatgcctccg
accctcatccggaccaaccgctttactgccagcttccagggcattgtggatgcctatggt
gtgggccgctaccgagaagtcaaccctgctccctacaccatcatcaccttcccctttctc
ttcgctgtgatgtttggtgatgtgggtcacggactgctcatgtttctcttcgccctggcc
atggtcctcacagagaaccggccagccgtgaaagccgcacaaaatgagatctggcagacg
ttcttcggggggcgctacttactcttgctcatgggtctgttctccatctacactggcttc
atctacaacgagtgtttcagccgcgctactaccattttcccctcgggctggagtgtggcc
gccatggccaaccagtcaggctggagtgacaagtatctgtcccagcaccccatgctcacc
ctgaaccccaacatcagcggtgtcttcctgggaccgtatccctttggcattgacccgatc
tggagcctggccaccaaccacctgagcttcctcaactctttcaagatgaagatgtctgtc
atccttggggtcacccacatggcctttggggtgttcctcagcatcttcaaccacatgcac
tttggccaggcacaccggctcctgctagagaccttgcccgaactcatcttcctgctgggc
ctctttggctatcttgtattcctcattgtctacaagtggctgcaggtctcagctgccagc
gcctccacagctcccagtatcctcatccactttatcaatatgttcctctttgcccaaagc
cctaccaatcagccactcttccatgggcaggaagtggtacagtatgtgctggtggtcctg
gctttggccaccgttcctatcctgctgctgggcacacccctgtacctgctgcggcagcac
cgtcacagaaacactcagagaaggccggcaggccaacaggacaagaacagtgacaagctt
ctggcctcctccgatgcttccacctcggagaatacctggagccctgatgaggagaaggcc
gggatcccaggggatgaggaagctgagtttgtcccctctgaggtctttatgcaccaggcc
atccacaccattgaattctgcctgggctgcatctccaacacagcctcctacttgcgtctc
tgggccctgagcctagcccatgcccagctctctgaggtcctgtgggccatggtgatgcgc
ataggcctgggtatgagccgagagatgggtgtggcagctgtggtgctggtccctgtgttt
gctgcctttgctgtgttgactgtggccatcttgctagtgatggaagggctctcagccttt
ttgcatgccctgcggttgcactgggtggagttccagaacaagttctactcgggtactggt
tacaagctcagtcccttcaccttcactgtggacaatgagtaa
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