Entry |
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Name |
(RefSeq) alpha-actinin, sarcomeric
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KO |
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Organism |
aflr Apis florea (little honeybee)
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Brite |
KEGG Orthology (KO) [BR:aflr00001]
09180 Brite Hierarchies
09182 Protein families: genetic information processing
04131 Membrane trafficking [BR:aflr04131]
100863892
09183 Protein families: signaling and cellular processes
04812 Cytoskeleton proteins [BR:aflr04812]
100863892
04147 Exosome [BR:aflr04147]
100863892
Membrane trafficking [BR:aflr04131]
Exocytosis
Small GTPases and associated proteins
Rab associated proteins
100863892
Cytoskeleton proteins [BR:aflr04812]
Eukaryotic cytoskeleton proteins
Actin filaments / Microfilaments
Actin-binding proteins
Cross-linking proteins
100863892
Exosome [BR:aflr04147]
Exosomal proteins
Exosomal proteins of other body fluids (saliva and urine)
100863892
Exosomal proteins of colorectal cancer cells
100863892
Exosomal proteins of bladder cancer cells
100863892
|
SSDB |
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Motif |
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Other DBs |
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LinkDB |
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Position |
Unknown
|
AA seq |
617 aa
MEEYERLASDLLEWIRRTMPWLASRQTDNSLAGCQKKLEEYRTYRRKHKPPRVEQKAKLE
TNFNTLQTKLRLSNRPAYMPTEGKMVSDINKAWKGLELAEKSFEEWLLSEMMRLERLEHL
AQKFKHKADAHEEWTAGKEEMLTSQHFRQCKLNELKALKKKHEAFESDLAAHQDRVEQIA
AIAQELNTLEYHDSASVNARCQRICDQWDRLGTLTQRRRQALDEAERILEKIDVLHLEFA
KRAAPFNNWLDGTREDLVDMFIVHTMEEIQGLMDAHAAFKATLGEADKEYNAIVGLVREV
ESIVKQFQIPGGLENPYTTLTALDLTKKWSDVRQLVPQRDGTLQAELRKQQNNELLRRQF
AEKANAVGPWIERQLDAVTAIGLGLQGTLEDQLHRLKEYEQAVYQYKVHLEELEKIHQAV
QEGMIFENRYTQYTMETLRVGWEQLLTSINRNINEVENQILTRDSKGITQEQLNEFRSSF
NHFDKNRTGRLAPDEFKSCLVSLGYSIGKDRQGDIDFQRILAIVDPNNSGYVHFDAFLDF
MTRESTDTDTAEQVIDSFRILAGDKPYILADELRRELPPDQAEYCIQRMPPYKGPNAIPG
ALDYRSFSTALYGESDL |
NT seq |
1854 nt +upstreamnt +downstreamnt
atggaagaatatgaacgtctggcgtctgatctgttggaatggataaggcgaaccatgcct
tggctggccagtcgacagaccgacaactcccttgccggatgtcagaagaaattagaagaa
tacagaacgtatcgtcgtaagcacaagccaccgcgggtcgagcaaaaggctaaactcgag
acaaatttcaatactttgcaaacgaaattgagattgagcaatcggcccgcttatatgcca
acagaaggaaaaatggtctccgatataaataaagcttggaaaggcttggagctggcagag
aaatcgttcgaagaatggctgttgtcggaaatgatgcgcctcgaacgcctggaacatttg
gctcagaaattcaagcacaaagctgacgcgcacgaggaatggaccgcggggaaggaggag
atgcttacgtcgcaacacttccggcaatgtaagcttaacgagctcaaagctttgaagaaa
aagcacgaggctttcgagtcggatctcgctgcccatcaggatcgcgtagagcagatagct
gctatcgctcaagagctcaatactttggaatatcacgatagtgcgtcggttaatgctagg
tgtcaacgaatttgcgatcaatgggatcgtttgggtactcttacccagcgcaggcgtcaa
gctctagacgaagctgagcgtatccttgagaagatcgacgttctgcatttggaatttgct
aagcgagctgctccatttaataactggttggatggaaccagggaagatttagtagacatg
tttatcgtccacacgatggaggaaatccaaggattgatggatgctcacgcagcgtttaaa
gcgactctcggcgaagctgataaggaatacaacgccattgttgggctggtgcgcgaagtc
gagtcaatagtcaaacaattccaaatccctggaggacttgagaatccgtacaccaccctg
accgctttggatcttacgaagaagtggagcgatgtgagacaacttgtgccccaacgtgat
ggtacgcttcaagcggagcttcgtaaacaacagaacaacgaactgctccgacgacaattc
gccgagaaagctaacgcggttgggccgtggatagaacgccaattggacgcagttacagcc
attggcctcggtcttcagggcactctggaggatcaactgcatcgtttgaaagaatatgaa
caggctgtctatcagtacaaagttcatctcgaggaactcgagaagattcatcaagctgtt
caagagggtatgatatttgagaaccgatatactcaatacaccatggagacattacgcgtt
ggatgggaacaattactcacttctataaatcgtaatatcaacgaggtagaaaatcaaatt
cttaccagagattcgaagggtattacgcaagagcaacttaacgaatttcgtagtagtttc
aatcatttcgataagaatcgtacaggtagattggctcctgatgagttcaagtcttgcctc
gtttcgcttggatattcgattggaaaggacaggcaaggcgatatcgatttccaacgtatc
ctagctattgttgatccaaataattctggttacgtacactttgatgcgttcctagacttc
atgactcgtgaatctacagatacggatacggctgaacaagttatcgatagtttccgtata
cttgccggggacaagccgtacatcttggcagatgaactgagaagagaattgccacctgat
caggctgaatattgtattcagcgaatgccaccttataaaggacctaatgcaattcctgga
gcattagattatcgttcgttctctaccgctctatatggtgaatcggatttgtaa |