Entry |
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Symbol |
ACAP1
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Name |
(RefSeq) arf-GAP with coiled-coil, ANK repeat and PH domain-containing protein 1 isoform X1
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KO |
K12489 | Arf-GAP with coiled-coil, ANK repeat and PH domain-containing protein |
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Organism |
pps Pan paniscus (bonobo)
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Pathway |
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Brite |
KEGG Orthology (KO) [BR:pps00001]
09140 Cellular Processes
09141 Transport and catabolism
04144 Endocytosis
100983146 (ACAP1)
09180 Brite Hierarchies
09182 Protein families: genetic information processing
04131 Membrane trafficking [BR:pps04131]
100983146 (ACAP1)
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:pps04147]
100983146 (ACAP1)
Membrane trafficking [BR:pps04131]
Endocytosis
Arf GTPases and associated proteins
Arf associated proteins
100983146 (ACAP1)
Protein recycling
Rab GTPases and associated proteins
Other Rab GTPase associated proteins
100983146 (ACAP1)
Exosome [BR:pps04147]
Exosomal proteins
Exosomal proteins of haemopoietic cells (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
100983146 (ACAP1)
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SSDB |
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Motif |
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Other DBs |
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LinkDB |
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Position |
19:14926225..14948514
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AA seq |
740 aa
MTVKLDFEECLKDSPRFRASIELVEAEVSELETRLEKLLKLGTGLLESGRHYLAASRAFV
VGICDLARLGPPEPMMAECLEKFTVSLNHKLDSHAELLDATQHTLQQQIQTLVKEGLRGF
REARRDFWRGAESLEAALTHNAEVPRRRAQEAEEAGAALRTARAGYRGRALDYALQINVI
EDKRKFDIMEFVLRLVEAQATHFQQGHEELSRLSQYRKELGAQLHQLVLNSAREKRDMEQ
RHVLLKQKELGGEEPEPSLREGPGGLVMEGHLFKRASNAFKTWSRRWFTIQSNQLVYQKK
YKDPVTVVVDDLRLCTVKLCPDSERRFCFEVVSTSKSCLLQADSERLLQLWVSAVQSSIA
SAFSQARLDDSPRGPGQGSGHLAIGSAATLGSGGMARGREPGGVGHVVAQVQSVDGNAQC
CDCREPAPEWASINLGVTLCIQCSGIHRSLGVHFSKVRSLTLDSWEPELVKLMCELGNVV
INQIYEARVEAMAVKKPGPSCSRQEKEAWIHAKYVEKKFLTKLPEIRGRRGGRGPPRGQP
PVPPKPSIRPRPGSLRSKPEPPSEDLGSLHPGALLFRASGHPPSLPTMADALAHGADVNW
VNGGQDNATPLIQATAANSLLACEFLLQNGANVNQADSAGRGPLHHATILGHTGLACLFL
KRGADLGARDSEGRDPLTIAMETANADIVTLLRLAKMREAEAAQGQAGDETYLDIFRDFS
LMASDDPEKLSRRSHDLHTL |
NT seq |
2223 nt +upstreamnt +downstreamnt
atgacggtcaagctggatttcgaggagtgtctcaaggactcaccccgtttccgagcctct
attgagctggtggaagccgaagtgtcagaattggagacccgtctggaaaagctcctgaaa
ctgggcactggtctcctggaaagtgggcgccattaccttgctgccagccgcgccttcgtt
gtcggcatttgtgacctggcccgcctgggtccaccagagcccatgatggcggagtgtctg
gaaaaattcaccgtgagcctgaaccacaagttggacagccatgcggagcttctagatgcc
acccaacacacactgcagcagcagatccagaccctggtcaaggaaggtctgcggggtttc
cgagaggctcgccgggatttctggcggggggctgagagcctggaggctgccctgacccac
aacgcagaggttcccaggcgccgggcccaggaggcagaagaggcaggagctgctttgagg
acggctcgagctgggtaccggggacgggcactggattatgccctgcagatcaacgtgatt
gaggacaagaggaagtttgacatcatggagtttgtgctgcgtttggtggaggcccaggct
acccatttccagcagggccacgaggagctgagccggctgtcccagtatcgaaaggagctg
ggcgcgcagttgcaccagctggtcttgaattcagcacgagagaagagggacatggagcag
agacacgtgctgctgaaacagaaggagctgggtggggaggagccagaaccaagcttaaga
gaggggcctggtggcctggtgatggaaggacatctcttcaaacgggccagcaacgcattt
aagacctggagcagacgctggttcaccattcagagcaaccaactggtttaccagaagaag
tacaaggaccctgtgactgtggtggtggatgaccttcgtctctgcacagtgaaactctgc
cctgactcagaaaggcggttctgctttgaggtggtgtccaccagcaagtcctgcctcctc
caggctgactcagagcgcctcctgcagctgtgggtcagtgctgtgcagagcagcattgct
tctgccttcagtcaggctcgccttgatgacagcccccggggtccaggccagggctcagga
cacctggccataggctctgctgccaccctgggctctggtggaatggccaggggaagggag
cctgggggagtcgggcacgtggtggcccaggtccagagtgtggatggcaatgcccagtgc
tgcgactgccgggagccagccccggagtgggccagcatcaaccttggtgtcaccctctgc
attcagtgttccggcatccacaggagccttggtgttcacttctccaaagtccggtctctg
acccttgactcatgggagccagaactagtgaagctcatgtgtgagctgggaaatgtcgtc
atcaaccagatctatgaggcccgcgtggaggccatggcagtgaagaaaccagggcccagc
tgctcccggcaggagaaggaggcctggattcacgctaaatacgtggagaagaagttcctg
accaagctgcctgagattcgagggcgaagaggtggccgggggcccccaagggggcagcct
cctgtgcccccaaagccttccatcaggccccggccagggagcttgagatccaagccagag
cccccctctgaggacctgggaagcctgcaccctggggccctactgtttcgagcatctggg
catcctccatctcttcccaccatggctgatgcccttgcccatggagctgatgtcaactgg
gtcaatgggggccaagataatgccacaccgctgatccaggccacagctgctaattctctt
ctggcctgtgagtttctcctccagaacggggcgaacgtgaaccaagcggacagtgcgggc
cggggcccgctgcaccacgcaaccattcttggccacacggggctcgcctgcctgttcctg
aaacggggagctgatctgggggctcgagactctgaaggcagggatcctctgaccatcgcc
atggaaacagccaacgctgacatcgtcaccctgctacgactggcaaagatgagggaggct
gaagcggcccaggggcaggcaggagatgagacgtatcttgacatcttccgcgacttctcc
ctcatggcgtcagacgacccggagaagctgagccggcgcagtcatgacctccacacgctg
tga |