Nasonia vitripennis (jewel wasp): 100114960
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Entry
100114960 CDS
T01081
Name
(RefSeq) actin-related protein 2 isoform X4
KO
K17260
actin-related protein 2
Organism
nvi
Nasonia vitripennis (jewel wasp)
Pathway
nvi04144
Endocytosis
nvi05100
Bacterial invasion of epithelial cells
Brite
KEGG Orthology (KO) [BR:
nvi00001
]
09140 Cellular Processes
09141 Transport and catabolism
04144 Endocytosis
100114960
09160 Human Diseases
09171 Infectious disease: bacterial
05100 Bacterial invasion of epithelial cells
100114960
09180 Brite Hierarchies
09182 Protein families: genetic information processing
04131 Membrane trafficking [BR:
nvi04131
]
100114960
09183 Protein families: signaling and cellular processes
04812 Cytoskeleton proteins [BR:
nvi04812
]
100114960
04147 Exosome [BR:
nvi04147
]
100114960
Membrane trafficking [BR:
nvi04131
]
Others
Actin-binding proteins
Arp2/3 complex
100114960
Cytoskeleton proteins [BR:
nvi04812
]
Eukaryotic cytoskeleton proteins
Actin filaments / Microfilaments
Actin-binding proteins
Arp2/3 complex
100114960
Exosome [BR:
nvi04147
]
Exosomal proteins
Exosomal proteins of haemopoietic cells (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
100114960
Exosomal proteins of other body fluids (saliva and urine)
100114960
Exosomal proteins of bladder cancer cells
100114960
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Actin
Motif
Other DBs
NCBI-GeneID:
100114960
NCBI-ProteinID:
XP_001608102
NASONIABASE:
NV12348
UniProt:
A0A7M7LK14
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Position
5:6335272..6339141
Genome browser
AA seq
394 aa
AA seq
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MDSQGRKVIVCDNGTGFVKCGYAGANFPAHIFPSIVGRPIIRAANKIGDIDVNDLMIGEE
ASKLRSMLEISYPMQNGIVRNWEDMCHVWDYTFGPEKMNIDPRECKILLTEPPMNPITNR
EKMIEVMFEKYQFAGTYIAIQAVLTLYAQGLISGVVVDSGDGVTHICPVYEVYPLPHLTR
RLDIAGRDITMYLIKLLLQRGYAFNHSADFETVRMIKEKLCYIGYDIETEEKLALETTIL
VESYTLPDGRVIKVGGERFAAPEALFQPHLINVEAQGIAELVFNTIQSADIDMRNELYKH
IVLSGGSTMYPGLPSRLEREIKQLYLQHVLKNDITKLNKFKIKIEDSPRRKDMVFIGGAV
LAEICKDRDSMWITREDYEEKGLNVMKKLGSPYA
NT seq
1185 nt
NT seq
+upstream
nt +downstream
nt
atggatagccagggtagaaaagtcatcgtctgcgacaatggaacagggttcgtcaaatgc
gggtatgcaggtgccaactttccagctcacatctttccatccatagtgggacggcccatc
atccgagcagccaacaagattggagacatcgacgtcaatgaccttatgatcggcgaagaa
gccagcaaattgcgatccatgttggaaatcagttatcctatgcaaaatggtattgttagg
aactgggaagacatgtgccatgtgtgggattacacctttggtccagagaaaatgaacatc
gacccacgagagtgcaagattttattgacggagccgccgatgaatccaattactaaccga
gaaaaaatgatcgaagtaatgttcgaaaagtatcaattcgctgggacatacattgcaatc
caagccgtactgacactgtatgctcagggcttgataagcggagtcgtggtagactctggt
gatggtgtgacacatatatgtccggtgtatgaagtttacccactgccgcatttaacgcga
aggctagatattgccggtcgcgacataaccatgtacctaattaagctactgttgcaacgt
ggctatgcttttaatcattccgcggatttcgagactgtaaggatgatcaaggagaagctg
tgttatatcggttacgatatcgagacagaggagaagctcgcactcgaaacgactattctt
gtggaatcgtacacgttacctgacgggcgagtgataaaagttggaggcgaaaggttcgca
gcgccagaggctctcttccagcctcatctgatcaacgtagaagcgcaaggtattgccgag
ttggtttttaacaccattcagtcggctgacattgacatgcgcaacgagctttacaagcac
atcgtacttagcggcggtagcaccatgtatcctggcttaccctcaaggttggagcgagag
attaaacagctctatcttcagcacgtgttgaagaacgacattacgaaactgaacaaattc
aagattaaaatcgaagattcgcccaggagaaaagacatggtgttcattggcggcgcagtg
ctagcggagatctgcaaagaccgggacagcatgtggattacgcgcgaggattatgaggaa
aagggactgaatgttatgaagaaactgggctcgccttacgcctga
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