| Entry |
|
| Definition |
regulatory-associated protein of mTOR-like
|
| Orthology |
| regulatory associated protein of mTOR |
|
| Organism |
aqu Amphimedon queenslandica (sponge)
|
| Pathway |
|
| Class |
Environmental Information Processing; Signal transduction; mTOR signaling pathway [PATH: aqu04150]
 |
| SSDB |
   |
| Motif |
 |
| Other DBs |
NCBI-GI: NCBI-GeneID: UniProt: |
| Position |
Un
|
| AA seq |
1297 aa  
MDHSTKDILPVDPEDASELDDWRLPLSYMKGRHLEDIAGLPPMKENWRIKERLKTWSVAL
ALCLNIGVDPPDVVKTTPCARKECWIDPLSRGSQKAMELIANSLQKQYERWQPRARYKQL
LDPTTDEVRKLCIALRKNAKNERVLFHYNGHGVPRPTVNGEIWVFNKSYTQYIPLSVYDL
QVWMGKPSVYVLDCSYAAQIVDSFKLFIRERESEFFLEGSINLSTSNSSCLGLLDESILL
AACGSKEILPMNPKLPADLFTACLTTPIKTALLWFCLQRVGKLVHGVTEEMIDNIPGKLN
ERKTPLGELNWIFTAITDTIAWNTLSQELFQKLFRQDLLVASLYRNYLLAERIMRSYNCT
PESHPYLPPTYQHPLWQAWDLAVDHIMAQLPQLIDGTQEYEPSSFFPEQLNAFQVWLLSF
PNLSQPPTQLPIILQFLLSQAHRLQALELLGRYLDMGPEAVHAALSVGIFPYVLKLLASK
LRELQPILVFIWAKILSVDNCCQSDLVKDGGYKYFISVLADTTIQFEYRTMAAFILSSIC
NNYSKGQEVCLQGNVVAICLSQLEEPNAVLKQWLAICLGRLWQKYDAAKWCGVRDAAHEK
LSLLLWDEVPEVRAAAVFALGTYIFTPSTDGSHTDHATSIDHSVAMLLLPLVSDGSPLVR
MELITALHGLILQYEREFQIAALRSSDSEPSLVPSNLSTSLTPGGWINVFIDSASSSSET
EKKSDHLSPMKRSPAAISNGSVNSESYSSGEDDESLPRPGPRTQSFAPPPPIARYHDNSS
SSGLYAQLWRGVQSICGDPCPTVALKAGSIIQSVLDKIRQTSKARDIAISSLSTSTSAPL
SVAPPPSSASVSHGKSHTIGRSSSKSRAVEPSSNSSLPAFLLTSRKDPQADDDNYPQLSP
GGSGSSSSIGSSASVYEETKFYDWSCKYFANSLMKQPEDCDRFSESYLQREFRFLRNHTV
REEGSQLIDSYDKAKFNDHIFVNKESKTPQELKFHPYIPQLVVLHKSSWSLWDIERGTHL
CTHSNHTGTSKATAVEFINPHDVSFLLTGTDDGCIRVWRNYLEEDEGSPKLVTSWRALSD
MQQSSRNVGMVMEWEQPTGLLYATGDVKYIRVWDTHKELKISDIPTGAESCVSSLALDHC
DKSLMVAGCGDGTIRLYDRRHPSSSSLVQVLKEHSSWILKVHIQQPVNNIVSMGAQGDVR
VWDPRFTRSTHNFNAMSGSNVCTIHHSVPLLACASNQAIKLYNIQNKESINSIRYHDGFM
GQKIGPTKSITFHPYKLWMAAGGSDGLISIYSSERKK |
| NT seq |
3894 nt  +upstreamnt +downstreamnt
atggaccattccactaaagacattctcccagtggatccagaggatgcatcagagcttgat
gactggcgccttccgctaagttatatgaagggacgtcacctggaggatattgctgggctc
cctccaatgaaagaaaactggaggataaaggaaagactcaagacgtggagtgtagcactt
gctctttgtttgaatattggagtcgacccgcccgacgtagtcaagacaacaccttgcgct
aggaaagagtgctggatagatccgttgtcaagaggatctcagaaggcgatggaattgatt
gctaatagtttacagaagcagtatgagagatggcaacccagagccaggtataagcagcta
ttagatccaaccactgatgaagtacggaaactttgcattgctctgaggaagaatgccaaa
aatgagagagttttgtttcattataacggacatggtgtgccacgcccaacagttaacgga
gagatatgggtctttaacaagtcatacacacagtacattccactgtcagtgtatgatttg
caagtgtggatgggcaaaccatcagtatatgtactggattgttcatatgcagctcaaatt
gttgattcttttaaattatttatacgagaaagggaaagcgaattctttttagagggatcc
attaatctctctacctcaaattcaagttgtctcggattattggacgagtccatattgcta
gctgcttgtggttccaaggagatactaccgatgaacccaaagcttcctgctgatctcttc
actgcctgtcttaccactcctataaagactgcactgttatggttttgcttgcaaagggtt
gggaagctagttcatggagtgacagaagaaatgattgacaacatacctggtaaactgaat
gaaaggaagactccactgggagagctcaattggatattcactgccatcactgacaccatt
gcatggaacacactatcacaagaattatttcagaagctgtttagacaggacctcctggtt
gctagcctgtataggaattacttgctggccgagaggataatgaggtcttataattgcacg
cccgagtcccacccgtacttacccccaacctaccagcacccgttgtggcaggcgtgggac
cttgcagtggatcatataatggctcagctacctcagctcattgacggaactcaagaatac
gaacccagctctttcttcccggagcagttaaatgctttccaagtttggttacttagtttt
cctaacttaagtcaacccccaacccagctgcctataatattacagtttctactcagtcag
gcccacagattacaagctcttgagttattaggaagatacctagatatgggccctgaagca
gtacatgcagctctctctgttggtatatttccgtatgtgttgaagctactggctagtaaa
ctccgtgagctacagcctatcctagtgttcatatgggctaagatactgtcagtagacaat
tgttgccagtctgatcttgttaaagatggcggttacaagtatttcatttcagtactagct
gatactactatacagtttgagtacaggacaatggctgccttcatactatcatctatatgt
aacaattacagtaaaggccaggaggtgtgtcttcaaggtaatgtggtcgcaatatgtctc
tctcagctagaggagcctaatgctgtcctcaagcagtggctagcgatatgtcttgggagg
ttatggcaaaaatatgacgcagccaaatggtgtggagtgagggacgctgcacatgaaaaa
ctctcactgcttctctgggatgaagtacccgaggttagggcagcagctgtgtttgctttg
ggtacttatatattcactccatcaactgacgggtcacacactgatcatgctactagtatt
gatcactctgtggcaatgcttctcctacctcttgtctctgatggatctcctcttgtcaga
atggagctcattacagcactgcatggtctcatcctacagtacgagagggagttccagata
gctgctctccgttcctctgattcagagccttcccttgtcccctctaacctctccacctcc
ctcactcctggtggctggatcaacgtcttcattgactccgcctcttcctcctccgagact
gaaaagaaaagtgaccatctttcccccatgaagaggagccctgctgccatcagcaatggc
agtgtcaacagtgagtcttatagcagtggcgaggacgacgagtctctcccacgtcccggc
ccacggacgcagtcttttgctccgccccctccgatagctcgttaccacgacaactcgtct
tcgagtggcctgtatgctcagttgtggcgaggggtccagtctatttgtggtgatccttgt
ccgactgttgctcttaaggctggctccatcattcaaagtgtcttggataaaataagacag
acttcaaaggctcgtgacattgccatttcctctctctccacttcaacctcagctcctctc
agcgtagcccctcccccttcctctgcttctgtttctcacggcaagtcgcacaccataggc
cgaagctccagcaagtctagagcagttgaaccgtcttccaattcatcgctaccggctttc
ttgctcacatcaagaaaagatcctcaagctgatgatgataattatcctcaattgtctcca
ggtggctctggaagcagtagctctattggctcatcggctagcgtctatgaagaaaccaag
ttctacgactggtcctgcaagtattttgcaaattcactaatgaagcaaccggaggactgt
gacaggtttagtgagagctacttgcagagggagtttcggttcttgcgtaatcacacagtg
agagaggaggggtcacagttgattgattcctatgataaagcaaagttcaacgatcacata
tttgttaacaaggagagcaagacaccccaagagctcaagtttcatccttacatacctcaa
ctggttgtacttcacaagtcatcatggagtctgtgggatatagaacgaggtactcacctc
tgcactcattccaatcacactggaaccagtaaggccactgctgtggagttcattaatcct
cacgacgtctcatttttactcacagggacagatgacgggtgcatcagagtctggaggaac
tacctagaagaggatgaaggaagtcctaaactagttaccagctggagggcattgagtgac
atgcagcaaagctctagaaatgttggtatggtaatggagtgggagcagcccacaggtctc
ctctatgctacaggtgatgtcaagtacatcagagtatgggacactcacaaggagctcaag
atcagtgacataccaacaggagccgagagctgtgtctccagccttgcactggaccactgt
gacaagtcactgatggtcgctgggtgtggggacggaaccattagactctatgacaggaga
cacccttcatcaagcagtttggttcaagtgttaaaggagcactccagttggatactcaaa
gtacatatccagcaacctgtcaataacattgtctctatgggtgctcagggagatgttcgt
gtctgggatccaaggttcactagatctacacacaatttcaatgcaatgtctggttctaat
gtatgcactatacatcattcagtacctctcctggcatgtgcgtccaatcaagccatcaag
ctgtataatattcaaaacaaagagtcgatcaactcgatacgttatcacgatggcttcatg
ggacagaaaataggaccaaccaaatctatcacctttcatccatataagttgtggatggcc
gctggtggatctgacggcttgatatcgatatattcaagcgagagaaagaaatga |