Entry |
|
Symbol |
ACET3X_008311
|
Name |
(RefSeq) hypothetical protein
|
KO |
|
Organism |
adac Alternaria dauci
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Pathway |
adac05100 | Bacterial invasion of epithelial cells |
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Brite |
KEGG Orthology (KO) [BR:adac00001]
09140 Cellular Processes
09141 Transport and catabolism
04144 Endocytosis
96088633 (ACET3X_008311)
04142 Lysosome
96088633 (ACET3X_008311)
09160 Human Diseases
09171 Infectious disease: bacterial
05100 Bacterial invasion of epithelial cells
96088633 (ACET3X_008311)
09180 Brite Hierarchies
09182 Protein families: genetic information processing
04131 Membrane trafficking [BR:adac04131]
96088633 (ACET3X_008311)
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:adac04147]
96088633 (ACET3X_008311)
Membrane trafficking [BR:adac04131]
Endocytosis
Clathrin-mediated endocytosis
Clathrin
96088633 (ACET3X_008311)
Exosome [BR:adac04147]
Exosomal proteins
Proteins found in most exosomes
96088633 (ACET3X_008311)
|
SSDB |
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Motif |
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Other DBs |
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LinkDB |
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Position |
8:complement(join(1083732..1083968,1084023..1084142,1084194..1084840,1084891..1084977,1085084..1086740,1086799..1087500,1087565..1088701,1088752..1089129,1089188..1089214,1089285..1089305,1089362..1089406))
|
AA seq |
1685 aa
MAQRQVPLHVTQPTLLTNLNILPASISWQNCTLESDKYVCVRQVNTEANAPAETVIIDLK
NTNNVIRRPIRADSAIMHLTEPIIALKAQGRTLQLFNLETKERLQTYSHQEDIQFWRWIS
QTTLALVSTKAVYHWDVLDSKNAVAPRKIFDRQEQLENNQIINYVTNDDESWSCLVGITS
NPAGGIRGNMQLFSKARNVSQPLEGHAATFGTLRLDGASTDTKIFAFAVKSSTGEAKINI
VEVDHNAANPAFPKRLIPIHWPAEGTGDFPLGIHIAQKYGILIVITKFGFIHLHDLETGT
ALFLNRISEETVFTTARDDEGTGVVVINKRGQVLHTTIREDSLIPYIMENPACAEIAYKL
ASKGGLPGADQLYSQRFETLMSQGNYAEAAKVAANSPRGFLRTMNTINRLRAVPSQPGQI
TTLLQYFGQLLDKGGLNREETLELARPVFVQGRKHLIEKWQKEGKLHCSEELGDLAKPHD
LNLALAIYKEANVPQKVVAALAELGHYDLILQYCNGVGYTPDYNVLLQHVVRINPEKGAE
FASQLAKNEGGPLISIDRVVDIFQSQGMIQQATAFLLDVLSNDLPEEGHLQTKLLEMNLV
SAPQVADAILGNEMFHHYDKARIAQLCENAGLLTRALEHNDDPAAIRRIIVQTDKLPEEW
LINYFGQLTVELSFECLDAMLTTNIRQNLQAVIRIAQKYSDLLGATKIIDLLEKHRTAEG
LYFFLGSIVNVSDDPDVHFKYVEAATTMGQLNEVERICRESAVIPAEKTKNFLKEANLTE
QLPLIIICDRFNFVHDLVLYLYKKQQFKSIEVYVQRVNPARTPAVIGGLLDVDCDESIIK
GLLASVTPSSIPIDELVAEVESRNRLKLLLPFLEQTLASGNQQQAVYNALAKIYIDSNNN
PEKFLKENDQYDTLTVGKYCEKRDPNLAFIAYSKGQNDLELINITNENAMFKAQARYLLE
RADSEVWDYVLSPNNLHRRSLVDQVTSYAVPSSTDPDKVSVAVKAFITGDMPAELIDLLE
KIILEPSTFSDNPSLQNLLMLTACKSDRGRVMNYIQQLDQYTPEDIAQQCIEVGMYDEAF
EIFKKQENHVEAVNVLIEHIVSIDRAYEYADRVDTPEVWSRVAKAQLDGLRVTDSIESYI
RAGDASNYLEVIEIATHAGKDEDLIKFLRMARKTLREVPIDTALAFCFARTNQLAELEDF
LRATNVADVEASGDKAYEEGYHEAAKIFFTSISNWAKLATTLVHLEDYQAAVECARKANS
IKVWKQVNEACVAKKEFRLAQICGLNLIVHAEELTDLVKQYERNGYFDELISLLEAGLGL
ERAHMGMFTSLGEALAKYHPERVMEHLRLFWSRINIPKLIRATEEAHLWPELIFLYVHYD
EWDNAALAMMERAADAWEHQAFKDTITKATNVEIYYRALGFYLEEQPTLLTDLLQALTPR
IDVNRVVRMFVKSDNIPLIKPFLLNVQSQNKREVNNALNDLLIEEEDYKTLRDSVNNYDN
YDPVELAQRLEKHDLVFFRQIAADIYRKNKRWEKSITLSKQDKLFKDAIETSAMSGKSDV
VEDLLRYFVDIGSRECYVGMLYACYDLLRPDIILEMSWRNGLHDFTMPYMINLISQQTAA
IEMLKKDNEERKTREVSQQKKEEDTPILGSRLMLTQGPMTSAPSPGPYGQTNGIAPQPTG
SFRAF |
NT seq |
5058 nt +upstreamnt +downstreamnt
atggcccagcgacaggtgccattgcacgtaacgcagccgacgctgctcacgaacctcaac
atcctcccggcatcgatatcatggcaaaactgcacactcgagtccgacaagtacgtttgc
gtgcgacaggtcaacaccgaagccaacgcgcccgccgagaccgtcatcatcgacctcaag
aacaccaacaatgtcatccggagaccgatccgcgccgacagcgctatcatgcacttgact
gagcctatcattgctctcaaggcgcaaggccggacactgcagctgttcaacctcgagacc
aaggagcgcctgcagacctacagccaccaagaggacattcagttctggaggtggattagc
cagactacccttgcgctcgtcagcacaaaggctgtatatcactgggatgtactcgactcg
aagaacgctgttgcgccgcgcaagatctttgatcgccaagaacaactcgagaacaaccag
atcatcaactacgttaccaacgatgacgagagctggtcctgcttggttggtatcacatcg
aatcccgccggtggcattcgtggaaacatgcagctcttctccaaggcgaggaacgtcagc
cagcccctcgagggtcatgctgctaccttcggtactctccggcttgacggtgcatctacc
gatacaaagatcttcgcgttcgctgtaaagtcttcgactggagaagccaagatcaatatc
gttgaagtcgaccacaacgccgcaaacccagccttcccgaagcgactcattccgatccac
tggcctgccgagggtactggtgacttcccgctcggcatccatattgcgcaaaagtacggc
attctaatcgtaattaccaagttcggtttcatccacctccacgacctcgagacaggtacc
gcactgttccttaaccggatatctgaggagactgtcttcacaacggcgcgtgatgacgaa
ggcaccggtgtcgtcgtcatcaataagcgaggacaagttctgcatacaaccatccgagag
gacagcctgattccatacattatggagaacccagcgtgtgctgagattgcttacaagctc
gcttcaaagggcggacttccaggcgcagatcagctttactcgcaacgattcgagacgctt
atgtcacaaggcaactatgccgaagcagcaaaggtcgccgcgaactcgcctcggggcttc
ctccgcacaatgaacacaatcaacaggctgcgtgcggttcctagccagcctggccagatc
actactttactacagtacttcggacaactactggataagggcggattgaacagggaagag
actctagagctagctcgtcctgtgttcgtgcagggccgtaagcacctcatcgagaagtgg
cagaaggaaggcaagcttcactgctcagaggagctcggtgatctcgccaagccccatgac
ctgaaccttgctctggctatctacaaggaggcgaacgtaccccaaaaggtcgttgcagca
ctcgctgagctcggtcactacgatctgatcctgcaatactgcaacggcgttggctacaca
cctgattacaacgtcttgcttcaacatgtagtccggatcaatcctgagaagggtgccgag
ttcgcttcccagctagcgaagaacgaaggcggcccattgatcagcattgaccgcgttgtc
gacatcttccagtctcaaggcatgatccaacaggccaccgctttcctcctggacgtcctc
tcgaacgatctaccagaagagggtcatctgcagaccaagctgctggagatgaacttggtc
agcgctccccaggttgcagacgctattctcggcaatgaaatgttccaccattacgacaag
gcgcgcattgctcagctctgcgagaacgctggcttgctcactcgcgctctggaacacaat
gatgacccggctgccattaggcgtattattgtccagaccgacaagcttccagaagagtgg
ctgatcaactacttcggtcaactcacagtagagctctcgtttgagtgtttggacgctatg
ctcactacgaacattcgccaaaacttgcaggccgtcatccgtattgcccagaagtactct
gacctactcggcgctacgaagatcatcgatcttcttgagaagcatcgcaccgcagagggt
ctgtacttcttcctaggctccattgtcaacgtcagcgatgaccccgatgttcacttcaag
tacgttgaggccgcgactaccatgggtcagctcaacgaagtcgagcgtatctgccgagag
agtgctgttattcctgctgagaagaccaagaacttcttgaaggaagccaacctcacggaa
caactgccactcataatcatttgcgatcgtttcaacttcgtacacgacctggtactctac
ctctacaagaagcagcagttcaagtccatcgaagtgtacgttcagagggtcaaccctgcc
aggacacctgctgtcattggtggtcttctcgatgtggattgcgacgaaagcatcatcaag
ggccttctggcttcagtgacaccatcttcgattccaatcgacgaattggttgccgaggta
gaatcgcgaaaccgattgaagcttcttttgccatttttggagcagacgttggctagcggc
aaccagcagcaggctgtctacaacgccttggccaagatctacatcgactccaacaacaac
ccagagaagtttctgaaggagaatgaccaatacgataccctcactgttggcaagtactgc
gagaagcgcgaccctaacttggcgtttattgcctacagcaagggacagaatgatctcgag
ctgatcaacatcaccaacgagaacgccatgttcaaggcccaagcacgttacctcctggag
cgtgccgattctgaggtctgggactatgtcctgagtccgaataacttgcaccgccgatcg
ctcgttgatcaagtcacttcgtatgctgtcccttcgtccaccgacccggacaaggtctct
gtcgctgtcaaggccttcatcactggggatatgcctgctgagctcatcgacttgctagag
aagattatattggagccttctactttcagcgataacccgtcccttcagaacttgctgatg
ctcaccgcctgcaagtccgatcgcggcagggtcatgaactacatccaacagctcgaccaa
tacactcctgaggacattgctcaacagtgtattgaggtcggcatgtatgatgaggccttt
gaaatcttcaagaagcaagagaaccatgttgaagctgttaatgtcctcattgaacacatt
gtgtcaattgatcgagcatacgagtatgctgacagggtcgacacaccagaagtgtggagc
agagttgccaaggcacagctggatggccttcgtgttacagactcgattgagtcctacatc
cgcgccggggacgcatccaactacttggaagtcatcgagattgctacacatgctggcaaa
gacgaagacttgatcaagttcttgaggatggctcgcaagacccttcgtgaggtacccatt
gacaccgccttggctttctgcttcgctcgtaccaaccaactagccgagctcgaggacttc
ctccgtgctaccaacgtcgcggatgtggaagcctcaggtgacaaggcttacgaggagggc
taccacgaggcagcgaagatcttcttcaccagcatctccaactgggccaagcttgcaact
accctcgtacacctcgaagactaccaagctgccgttgaatgtgccaggaaagcaaactcc
atcaaagtctggaagcaggtcaacgaggcttgcgttgcaaagaaggaattccgtcttgcc
cagatctgtggcctcaacctaattgtccacgccgaagagctcaccgaccttgttaagcaa
tacgagcgtaacggttacttcgatgagttgatcagcctgcttgaagctggccttggtctg
gaacgcgcgcacatgggaatgttcacttccttaggcgaggcccttgctaaataccatcct
gagcgtgtcatggagcatctccgcctcttctggagccgaatcaacatcccaaagctcatc
cgtgcgactgaggaggctcacttgtggccggagttgatctttctgtatgtccactacgat
gagtgggacaacgctgctcttgccatgatggagcgtgctgcggatgcctgggagcaccaa
gcattcaaggacaccatcaccaaggctaccaacgtcgagatttactaccgagctctgggc
ttctacctcgaggagcagccaactcttttgaccgacctactgcaggcgctaactccccga
atcgacgtcaaccgtgttgtccgcatgttcgtcaagtctgacaacattcctttgatcaag
cctttcctgctcaacgtccagtcgcagaacaagcgtgaggtcaacaatgccctcaacgat
ctcctgattgaagaagaggactacaagaccctccgcgactcggtcaacaactacgacaac
tacgatcctgtcgagcttgcgcagcgcctggaaaagcacgacctggtcttcttccgtcaa
atcgctgccgatatctaccgcaagaacaagcgatgggaaaagtccattactctttccaag
caagacaagcttttcaaggacgctatcgagacctcggccatgtctggcaagtcggatgtt
gttgaggatctgctccgctacttcgtcgacattggcagccgcgagtgctacgttggtatg
ctatacgcttgctacgaccttctccgccctgacatcatccttgagatgtcatggcgcaac
ggtctccacgacttcactatgccatacatgatcaaccttatctctcagcagacggctgcg
atcgagatgctcaagaaggacaatgaggagcgcaagacccgcgaagtctcgcaacaaaag
aaggaggaagacactccgatcttgggctcgcgtctcatgcttacccagggtccgatgact
tcggccccttccccaggtccatacggacagaccaacggcatcgccccacagccaactgga
agcttccgcgccttctag |