Anolis carolinensis (green anole): 100564021
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Entry
100564021 CDS
T01608
Symbol
gna12
Name
(RefSeq) G protein subunit alpha 12
KO
K04346
guanine nucleotide-binding protein subunit alpha-12
Organism
acs
Anolis carolinensis (green anole)
Pathway
acs04010
MAPK signaling pathway
acs04081
Hormone signaling
acs04270
Vascular smooth muscle contraction
acs04810
Regulation of actin cytoskeleton
Brite
KEGG Orthology (KO) [BR:
acs00001
]
09130 Environmental Information Processing
09132 Signal transduction
04010 MAPK signaling pathway
100564021 (gna12)
09133 Signaling molecules and interaction
04081 Hormone signaling
100564021 (gna12)
09140 Cellular Processes
09142 Cell motility
04810 Regulation of actin cytoskeleton
100564021 (gna12)
09150 Organismal Systems
09153 Circulatory system
04270 Vascular smooth muscle contraction
100564021 (gna12)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
acs04147
]
100564021 (gna12)
04031 GTP-binding proteins [BR:
acs04031
]
100564021 (gna12)
Exosome [BR:
acs04147
]
Exosomal proteins
Exosomal proteins of hepatic cells
100564021 (gna12)
GTP-binding proteins [BR:
acs04031
]
Heterotrimeric G-proteins
Alpha Subunits
Alpha type 4 (G12/13)
100564021 (gna12)
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GFIT
Motif
Pfam:
G-alpha
Arf
Gtr1_RagA
GTP_EFTU
FtsK_SpoIIIE
Motif
Other DBs
NCBI-GeneID:
100564021
NCBI-ProteinID:
XP_003226089
Ensembl:
ENSACAG00000008583
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Position
Un
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AA seq
380 aa
AA seq
DB search
MSGVVRTLSRCLLPAEASSAAGGKERGGGEAEREARRRSREIDAQLARERRAVRRLVKIL
LLGAGESGKSTFLKQMRIIHGREFDQKALLDFRATIYENALKGCRVLVDARDKLGIPWQY
TENEKHGMFLMAFENKAGMPIEPSLFQLYVPALIGLWKDSGIKEAFSRRSEYQLGESVKY
FLDNLDRIGQLNYFPSKQDILLARKATKGIVEHDFIIKKIPFKMVDVGGQRSQRQKWFQC
FDGITSILFMVSSSEYDQVLMEDRRTNRLVESMNIFETIVNNKLFFNVSIILFLNKMDLL
VEKVKTVSIKKYFGDFKGDPHRLEDVQRYLVQCFDRKRRNRSKPLFHHFTTAIDTENIRF
VFHAVKDTILQENLKDIMLQ
NT seq
1143 nt
NT seq
+upstream
nt +downstream
nt
atgtccggggtggtgcggacgctgagccgctgcctcttgccggccgaggcctcgtccgcg
gcgggggggaaggagcggggcggcggcgaggcggagcgcgaggcccggcgccgcagccgc
gagatcgacgcccagctggcccgcgagcgccgcgccgtccgccgcctggtcaagatcctg
ctcctgggcgccggggagagcggcaagtccaccttcctcaagcagatgcgcatcatccac
ggccgagagttcgaccagaaggcgctgctcgacttccgggccaccatctacgagaacgcc
ctcaagggctgcagagttctagttgatgcacgggacaaactaggcattccttggcagtac
acagagaatgagaagcatgggatgtttctgatggcctttgaaaacaaggctgggatgccc
attgaaccctctctgttccagctgtatgtgcctgccttgattggtctatggaaggattct
gggatcaaagaagcttttagccgcagaagtgaataccagctgggtgaatcagtgaaatat
ttcctggataatctggaccggattggccagttgaattatttccctagtaagcaagacatc
ttactcgctagaaaagccaccaaggggattgtggagcatgatttcattatcaagaagatc
cctttcaaaatggtcgatgtgggtggacagcggtctcagcggcaaaagtggtttcagtgc
ttcgatgggatcacctcgatactgttcatggtctcctcgagcgagtatgatcaggtcctt
atggaagaccggcgcacaaacagactcgttgaatccatgaacatctttgagaccattgtg
aacaacaagctcttttttaacgtctccatcattctcttcctgaataaaatggaccttctg
gtggagaaagtgaagactgtcagcattaagaaatactttggagacttcaagggtgacccg
caccgtctggaggatgttcagcgttacctggtgcagtgttttgatcggaagcggaggaat
cgtagtaagccccttttccatcacttcaccactgccatagacactgaaaacatccgcttt
gtgtttcatgctgtaaaggatacaatccttcaggaaaaccttaaagatatcatgttgcag
tga
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