Exaiptasia diaphana (Aiptasia): 110239539
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Entry
110239539 CDS
T05080
Name
(RefSeq) phosphatidylinositol 3-kinase regulatory subunit alpha
KO
K02649
phosphoinositide-3-kinase regulatory subunit alpha/beta/delta
Organism
epa
Exaiptasia diaphana (Aiptasia)
Pathway
epa04068
FoxO signaling pathway
epa04070
Phosphatidylinositol signaling system
epa04081
Hormone signaling
epa04140
Autophagy - animal
epa04150
mTOR signaling pathway
epa04620
Toll-like receptor signaling pathway
epa05100
Bacterial invasion of epithelial cells
Brite
KEGG Orthology (KO) [BR:
epa00001
]
09130 Environmental Information Processing
09132 Signal transduction
04068 FoxO signaling pathway
110239539
04070 Phosphatidylinositol signaling system
110239539
04150 mTOR signaling pathway
110239539
09133 Signaling molecules and interaction
04081 Hormone signaling
110239539
09140 Cellular Processes
09141 Transport and catabolism
04140 Autophagy - animal
110239539
09150 Organismal Systems
09151 Immune system
04620 Toll-like receptor signaling pathway
110239539
09160 Human Diseases
09171 Infectious disease: bacterial
05100 Bacterial invasion of epithelial cells
110239539
09180 Brite Hierarchies
09182 Protein families: genetic information processing
04131 Membrane trafficking [BR:
epa04131
]
110239539
Membrane trafficking [BR:
epa04131
]
Endocytosis
Rab GTPases and associated proteins
Rab associated proteins
110239539
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
SH2
RhoGAP
PI3K_P85_iSH2
C1_1
SH3_1
SH3_9
SAM_2
SAM_1
SH3_2
SAM_PNT
C1_2
DUF7019
Sec8_N
Motif
Other DBs
NCBI-GeneID:
110239539
NCBI-ProteinID:
XP_020900920
UniProt:
A0A913X919
LinkDB
All DBs
Position
Unknown
AA seq
945 aa
AA seq
DB search
MDSGWSRFRALYDYKPQDDNEIEISVGDILIVAKPIPDPNGWLLAQNXQXNXMGDVPGTY
LEYLDDIEELEPEPEPELPPPRPPKPKPANGGHNTIKIPCRKPVFCFNCEDFVWGHSKEY
YKCQDCELTLHLNCAVNLSQFTCSKKDDTTEEEAYEQLVASFEEWTVENVLSWLAITNHY
IYANVFLDYGINGSKLQLLNEESLVHMGIEEKSHQLSLLYAIRELFDGDSPQKQSSSFTG
FHRAPKGSLGEHEFKAHNFDKIQWCDICGKCLWGVYQQGLQCFICGMCCHPKCVNDGIPV
CPGRRVRGSGDDDDGVFGKDLGDQFHPSSQPAPVVVMKCVQAIEQRGLRVDGIYSIVPMS
HGKSSLHSALNQNPGQVLMTDQEWCDPLVIAAVLKMYFQELPTCLFTEEKYDEFIHVSQG
MDNIDGLLRIIEELPPTNQSVIRYFMSHLFKVSQHQQYNSMTSLGLARVFAHVLMRPCKQ
DKLKMAINHEVQIKALDILISQGPWSIHQVPNDEPTEPQPPPVPVRPRRPSRSAPRPPSH
HAAPAPPSSPGFSPPSNMREQVWYWGETSKEVVQERMKEAPDGTFIVRDSKRNPGEYTLT
LRKGGLSKLIRIIYQNGKYGFSEPLTFESVSELIDFYRDRSLAQYNPKLDVKLTHPLPLY
ERDPVEDSESEDAIIGRLENMHKELETKSNKYEELQKEYESMTETANELQMLKDAHCSVI
AVIEEQMVIHESFQKDAPPQSRAVLRQNYDLLKHRLNDARCELSESERELSNTSEKSRQT
DQLINTLRAQIIELTTQKQNCMDILMNDKGYTQDEVKEIVNEGIRQGCIYQVPDIDLSEE
NWWFGSIDRNQAGFLLKDCPDGTFLIRDSIHHPGTYSVTLSFDFIPRHIHIIQGANGCYG
FNEDYAIYRTIKDLVQHYHNNTLQKHNRHLATKLVYPLRFFKKNV
NT seq
2838 nt
NT seq
+upstream
nt +downstream
nt
atggactcaggttggtctcggttcagagctttgtacgattataaacctcaagatgacaac
gaaatcgagatttctgttggcgacatcttgatagttgctaaaccaatccctgacccgaat
gggtggttactcgctcaaaatgawcaawctaaccraatgggcgatgtacccggtacttac
ttggaatacttagatgatattgaagaacttgaaccagaacctgagcctgaactaccgcct
ccaaggccgcccaaaccaaaaccagcaaatggcggccataataccatcaagattccctgt
aggaagccagtgttttgtttcaactgtgaagactttgtttggggtcatagtaaggagtat
tacaagtgtcaagattgtgagctcacattacatttaaactgtgctgtaaatttaagccag
tttacttgtagcaagaaagatgacactactgaagaagaagcatacgagcagctagtagca
tcttttgaagaatggacagtggagaatgttctgtcctggttggccatcaccaatcactac
atatatgcaaatgtgttcttagattatggaataaatggctcaaaactgcagttattaaat
gaagaaagcttagtacacatgggtattgaagaaaaatcccatcagctgtctttgttgtat
gctattagagagctgtttgatggggattctccccagaaacaatccagcagttttactggt
tttcacagagcaccaaaaggttcacttggagagcatgagtttaaagctcacaattttgac
aaaatacaatggtgtgacatttgcggcaaatgtttatggggagtgtaccaacagggctta
cagtgctttatatgtggtatgtgctgtcatccaaagtgtgtaaatgatggaattcctgtg
tgccctgggaggagagttagagggtctggtgatgatgatgatggagtatttggcaaagac
cttggtgatcagttccatccatcaagycaaccagcaccagtggtggtaatgaaatgtgtt
caagctattgaacaaagagggctaagagtagatggaatctatagcattgtacctatgagc
catggcaagtcatccttgcattcagcgctcaatcaaaatcctggtcaagtattgatgact
gatcaagaatggtgcgacccacttgtgatagcagcagtattaaaaatgtacttccaggaa
ttaccaacttgtcttttcactgaagagaaatatgatgagtttatacacgtctcacaaggt
atggacaacattgatggactattgagaatcatagaagaattacctccaacaaaccagtca
gtcattagatacttcatgagccatttgtttaaagtatctcaacaccagcagtataattcc
atgacgtcactaggtctggcaagagtgtttgcacacgtattgatgcggccttgcaaacaa
gacaagctgaaaatggccataaaccacgaggtacaaatcaaagctcttgatatattaata
agccaaggaccatggtcgatacaccaagtcccgaatgatgaaccaacggaacctcaacct
cctccagttcctgttcgacctcgccgaccgtcaagaagcgctccacgacctccttcccat
catgcagcaccggcacctccatcatcacctggtttcagtcctccatcgaacatgagagaa
caagtatggtactggggagagactagcaaagaggtcgttcaagaacgcatgaaggaagca
ccagatggtacattcattgtcagagattcaaaacgaaacccaggcgaatacacactgaca
ctaaggaagggtggtcttagtaagctgattcgaatcatataccagaacggcaagtacggc
ttctctgagccgttaacctttgaatcagtcagtgaactgatagatttctatcgtgatcgg
tcattggcccaatataatcctaagctagatgtcaaacttacacacccattgcctttatat
gaacgggacccagtcgaagattccgaaagtgaagatgcaattatcggaagacttgaaaat
atgcacaaagaacttgaaaccaagtctaataaatatgaagaactgcaaaaagaatatgaa
tctatgaccgagacggctaacgagctacaaatgttaaaagacgctcactgctcggtcatc
gcagtcatcgaggaacaaatggtgatccatgaatccttccagaaagatgctcctccccag
tcacgtgccgtcctaagacagaattacgacctactgaaacatcgattaaacgacgcaaga
tgtgaactttccgagtctgaacgcgaactgtcaaacacttcagaaaagagccgtcaaaca
gaccaactgataaacactcttcgcgctcaaatcattgaacttacaacccaraaacagaat
tgcatggatattctgatgaacgataaaggctacacacaagacgaagtcaaagaaatagtc
aatgaaggtattcgccagggatgtatttaccaagtaccagacatcgacttaagcgaagag
aactggtggtttggtagtatcgatagaaatcaagcgggatttttactgaaggactgtccc
gatggtacgttcttgataagagacagtattcaccacccagggacatattccgtcactctt
tcgttcgacttcatccctcgccatattcatattattcaaggtgcaaatggttgctatggt
ttcaacgaggactatgcgatttatcgtactataaaagacctggttcaacactaccacaac
aacacactacaaaaacacaatagrcatctcgccactaaactagtctatcctttgagattt
ttcaaaaagaatgtatag
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