Eleginops maclovinus (Patagonian blennie): 134872804
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Entry
134872804 CDS
T09869
Symbol
pik3c3
Name
(RefSeq) phosphatidylinositol 3-kinase catalytic subunit type 3
KO
K00914
phosphatidylinositol 3-kinase [EC:
2.7.1.137
]
Organism
emac
Eleginops maclovinus (Patagonian blennie)
Pathway
emac00562
Inositol phosphate metabolism
emac01100
Metabolic pathways
emac04070
Phosphatidylinositol signaling system
emac04136
Autophagy - other
emac04140
Autophagy - animal
emac04145
Phagosome
emac04371
Apelin signaling pathway
emac05132
Salmonella infection
Brite
KEGG Orthology (KO) [BR:
emac00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00562 Inositol phosphate metabolism
134872804 (pik3c3)
09130 Environmental Information Processing
09132 Signal transduction
04371 Apelin signaling pathway
134872804 (pik3c3)
04070 Phosphatidylinositol signaling system
134872804 (pik3c3)
09140 Cellular Processes
09141 Transport and catabolism
04145 Phagosome
134872804 (pik3c3)
04140 Autophagy - animal
134872804 (pik3c3)
04136 Autophagy - other
134872804 (pik3c3)
09160 Human Diseases
09171 Infectious disease: bacterial
05132 Salmonella infection
134872804 (pik3c3)
09180 Brite Hierarchies
09182 Protein families: genetic information processing
04131 Membrane trafficking [BR:
emac04131
]
134872804 (pik3c3)
Enzymes [BR:
emac01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.1 Phosphotransferases with an alcohol group as acceptor
2.7.1.137 phosphatidylinositol 3-kinase
134872804 (pik3c3)
Membrane trafficking [BR:
emac04131
]
Endocytosis
Macropinocytosis
Kinases
134872804 (pik3c3)
Rab GTPases and associated proteins
Rab associated proteins
134872804 (pik3c3)
Endosome - Lysosome transport
134872804 (pik3c3)
Autophagy
Autophagosome formation proteins
PI3K complex
134872804 (pik3c3)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
PI3_PI4_kinase
PI3Ka
PI3K_C2
HEAT_2
Motif
Other DBs
NCBI-GeneID:
134872804
NCBI-ProteinID:
XP_063752311
LinkDB
All DBs
Position
11:9426347..9435879
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AA seq
875 aa
AA seq
DB search
MDTDKFNYVYSCDLDINVQLKIGSLEGKREQNSYKALLEDPMLRFSGLYQENCSDLYVTC
QVFAEGKPLALPVRTSYKAFSTRWNWNEWLRLPVKYPDLPQSAQVALTVWDIYGPGRAVP
VGGTTVTLFGKYGMFRQGMHDLKVWPGVEGNGGEPTTTPGRTSSSLTEDQMGRLAKLTKA
HRQGHMVKVDWLDRLTFREIEMINESEKRSSNFMYLMVEFPRIKTNDKEYSIVYYEKDGD
DTSPVLTSSDIVKVPDPQMAMENLVESKHHKLARSLRSGPSDHDLKPNAATRDQLNIIVS
YPPTKQLSSEEQDLVWKFRYYLTTQEKALTKFLKCVNWDLPQEAKQALELLGKWRPMDVE
DSLELLSSQFSNPTVRRYAVARLQQADDEDLLMYLLQLVQALKYENFSDIQGGLEPGSKR
DSQGLTDESTMDSSQILSGTSGSSTATQKGKEGADSENQEQDLCTFLISRACKNSTLANY
LYWYVIVECEDQDTQQRDPKTHEMYLNVMRRFSQALLKGDKSVRVMRSLLASQQTFVDRL
VQLMKAVQRESGNRKKKTERLQALLADNEKVNLSDIEPIPLPLEPQIRIRGIVPDTATLF
KSALMPAKLIFKAEDGAMYPVIFKHGDDLRQDQLILQIISLMDKLLRKENLDLKLTPYKV
LATSTKHGFMQFVQSVPVAEVLATEGNIQSFFRKHAPSEKGPYGISSEVMDTYVKSCAGY
CVITYILGVGDRHLDNLLLTKTGKLFHIDFGYILGRDPKPLPPPMKLSKEMVEGMGGMQS
EQYQEFRKQCYTAFLHLRRYSNLILNLFSLMVDANIPDIALEPDKTVKKVQDKFRLDLSD
EEAVHYMQSLIDESVGALFAAVVEQIHKFAQYWRR
NT seq
2628 nt
NT seq
+upstream
nt +downstream
nt
atggacactgataaattcaactatgtttacagctgtgacttggacatcaatgttcaactt
aagataggcagtttggaggggaaacgcgagcagaacagctacaaagctctgctcgaagat
cccatgctgcggttctctggcctctaccaggagaactgctcggacctctacgtcacctgt
caggtgttcgctgaaggaaaacctctggccctgcccgttcgcacctcgtacaaagcgttt
agcacacgttggaactggaatgagtggctgcggctgccagtcaagtacccagaccttccc
caaagtgcccaggttgctctcacagtgtgggacatctatggacccggcagagccgtccca
gttggaggaaccactgtcaccctgtttggcaaatatggtatgttccggcaagggatgcat
gacctgaaagtctggcctggtgtggagggaaatggaggagagcccaccaccacacccgga
cgcaccagcagcagcctgacggaggaccagatgggcagactggcaaagctgacaaaggcc
caccgacagggccacatggtgaaggtcgactggctggaccgtctgaccttcagagagatt
gagatgatcaacgagagtgagaaacgcagctctaatttcatgtacctcatggtggagttt
ccccgaatcaaaacaaatgacaaggagtacagcattgtgtattatgagaaggatggagac
gacacatcaccggttctcaccagcagcgacatcgtcaaagttcctgacccacagatggcg
atggagaacctggtggagagcaagcatcacaagctggctcgtagccttcgcagcggaccc
tcggatcacgacctgaagcccaacgctgccacaagagaccagcttaatatcattgtgagc
taccctccaaccaagcagctgagctctgaagagcaggacctggtgtggaagttcagatac
tacctcaccacgcaggagaaggccctgacaaagttcctcaagtgtgtgaactgggatctg
ccccaggaggccaagcaggctctggagttgctggggaagtggaggccgatggatgtggag
gactccctggagctgctgtcctcccagttcagcaaccccacggtcagacgctacgctgtg
gcgcgcctgcagcaggcagacgatgaggacctgctgatgtatctgctccagctggtccag
gcgctcaagtacgagaacttcagcgatattcagggcggcctggagccaggcagcaagaga
gacagccaagggcttacagatgaatccacaatggacagttcccagatcctgtctggcacc
tctggatcttccactgcaacacagaaaggcaaggaaggagccgacagtgaaaatcaagag
caggacctgtgcacgtttctcatctcccgagcttgcaagaactccacacttgccaactat
ttatattggtatgtgattgtggagtgtgaggatcaggacacccagcagagagacccgaag
acccacgagatgtacctgaacgtcatgaggaggttcagtcaggctctgctcaagggtgat
aagagtgtgagggtgatgcggtcgctgctggcttcccagcagacgtttgtggacagactg
gtgcagctgatgaaagccgtgcaaagagaaagtggaaatcgcaagaagaagacggagcgg
ctgcaggctctgctggctgacaacgagaaagtgaatctgtcagatatcgagcccattcct
ctccctctggagcctcagatcagaatcagaggcatcgtccccgacacagctacactcttc
aagagcgctctgatgccagctaagctgatcttcaaggcagaggatggagccatgtacccg
gttatcttcaaacatggagacgacctgaggcaggatcagctcatcctgcagatcatctct
ctcatggacaaacttttaaggaaagagaatttggacctgaagttgacgccgtacaaagta
ttggccaccagcaccaagcacggtttcatgcagttcgttcagtccgtcccagttgctgaa
gtcctggctactgaaggcaacatccagagcttcttcaggaagcatgcccccagtgagaag
gggccgtacggcatcagctccgaggtgatggacacctacgtgaagagctgcgctggttac
tgcgtcatcacatacatccttggagtaggagacagacatttggacaatctgctgctgaca
aaaaccgggaagctgttccacatcgacttcggctacatcctgggtcgagaccctaaaccg
ctgcctccgcccatgaagctgagcaaagagatggtggaggggatggggggcatgcagagc
gagcagtaccaggagttcaggaagcagtgctacaccgccttcctgcacctcaggagatac
tccaacctgatcctgaatctgttctctctcatggtcgacgccaatattcctgacatcgcc
ctggagcctgacaagaccgtgaagaaggtgcaggacaagttcagattggacctgtctgac
gaggaggccgtccactacatgcagagtctgatcgatgagagtgtgggcgctctgtttgct
gctgtggtcgagcagatacacaagtttgctcagtactggcgcagatga
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