Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TCCAAGAAAGAAGTCCGAATCATGAATAATTGAATATACACAAATACTAATCCAAAACTTTAAATACTCCGTTTAACTTATATCACCAACTCTCGAACCTCCTCCATTATCAATCATTCCTTCAAATTAATCCAAACTTTCAACAATGGCGTCCATTATCCGCAAATCAATCGTCAAACGAATAATCGCTAACCCATCGTCCTTAATCTGCAGATCAATCTTCACTGATTCCTCCATTAATCCTGCTCTAATCTCATTCTCTCTTCCTTCTTCTTCAGCATCGTTTTCTTCGTCGTCGTATAATGTGAGCGGTGGTGGAGCTTCGTATATGAGGGGCGTGATGTTTACCAAACCGAATCAGCCGCTTGTTATTGAAGATTTTCTCATGCCTCGTCCTAAAGTTAATGAAGTTCTCGTCAAAACCAAGGGTAACCTTTTTTCTATTTTCTTTTTATTTTTGTTGGAATTTTACACTTTCGCCAAATTTGGAGTTGATTATTTGGATAGATTTTAGAAGAATTGAATTTAGCGGAGTACATAAGATTTTGTTCATTCATTTGATTTTGCACTATTTCTCAAGGGAAAAAAAATTCTTGGGTTGCACTATTTCGTCCTTTGGAAGATGGAATTGAATTCATTATTATCCATAATTTGTTCTAGACTTAATGTATATTGATTATGAGAAACTTAAACATTCCCATGTATGATTAGACGGCATGGGTGTGTAGTGCGCTTGGTGTGTTGAGAGGTTGAACTTCTTCTTATACATTGTCACTGGTGTGTGTAATGATCTTGAAGGGTAAAAAGTGAATTTGTTATGCTTGATAATATGATCATGACTAGGGTTGTGGCCTGTTTTTAACTTTGATAACGCTTGTAAGATTATTTGAACAATTGAAACCCCGACGTTGCACAATAACAGCTACTAGCTACTAAATGAAACTTGTAGGGACATTGAGTTTACTTTGTCTCAATTTGTATTTCAAACCTCAGTTTTTCAAGACTCGCAATATCTTGATTAGCAAACATTCTGTGCCTTATTTTCAATTTATAGTAGATTTGTAGAAAGGGAAATTAACTTGAATAAGCGTGTGTCTTAGTTGAGAAATATTTCAGCTTGAAGTGAAGAGCTAAATTTTCGTATTACTCCACATATAGTAGTGGATTTATGGTGACTGTTCTAGTATACCTTGTTAGATAGTGACAGCTAATGTACTTCCTCCGGGATTTTTTCCTCTTGCTACACACCCCCTTGGCATGATATTTAATTAAGAGATTAGGGGAGGTTGTGGATTGAGGGAGTAGTTATTGACTTTTTATTATAAGTACATTTGTATTTTCTACCACGCTTGTACGTGATTGGAGGAAGGGAGTCCGAAGATGCCTTTGTCAGCAAAAGGGAATACATTATGAGGCAACAACAACCTCTTTATCTAGTTATTTATTCTTGACAAATGTATTTGTCTTTTCCAAGGCTAGGGAAGATTAAAAGAAGAAAGTTGCCGAACTTTATTTGACATTTGAAATTTACTGTGTGCAGCATGTGGAGTATGCCACTCTGATCTTCATGTGATAAAAGGTGAACTTCCATTTGCCAGCCCTTGTATCCTTGGCCATGAGATTACGGGTGAAGTTGTAGAACATGGTCCTCTTACTGATAGCAGAATCATCAAAAGGTTGACAGACCATGTTCTTACTAATAAGTTTTTTTTGTTTCCATCAATATGCTATGTTGATAAAATTTACATGATGTGTAATTTCGTATGTATAGACTTGACAATAGCTGCGAGAATAATTAATTTCGCAGATATCCTGTTGGATCACATGTTGTTGGAGCTTTTATCATGCCATGTGGTAACTGTTCCTTTTGTTCAAAGGTAGGAATAATTGTTTTTCACTTCCATATAATTGGATTTTCTGTTACTTACATATTATTTATTAATAATAGGGGCAAGATGATCTCTGTGAGGATTTCTTTGCTTATAACCGGGCAAAAGGAACTCTTTATGACGGTGAAACACGATTATTCCTTAGAAGCAATGGTGAGTGTCATTTTCAGTGCCACAATTTACACTATCATTCTACTGCCTGCTTCTAGCATTTTTTTAAAGGAGTTAAATGTTTTTTCCTACCTCTTTCCCCGTCTATGGGTAATACTTACAGAAAATTTAACTAAGCTTTAACAGGTCATCTTAAAGCTCTAGATGTCAAATTTTTATACAGATTTACTGTAGGTGTTCACTTTGTTTTTTACTGTAAGTTTGCTTCATCATTCTATACGAGCATACGGGGTGTCCTGGTCTTTTCTTTTAATAATGTAGAGTAATTTGTACTCTGTACTTTTCTTTGACTCGGTTGAAAAAGATTTATATGTGATGATCGCAAATTAAGTGTCACCTGTTTGTATCCTTGTTTTTGTATCCGAGGTAGTTACATGAGGGGAAGTGAGATTCCTTGTAACATGTTTTTCAATCCTTATGAGTGAAAATCAGAGTTCTTTAAATTAGAAATCCAATATCATTTTATGTAGATATATATTATGCTCTAATAATTTTAATTGTCCACAAGCCAAAAAAAAAAAGCATACATGAGGTATCGAGCCAATAGTCTATTTCGAAAATCTTTCTTTCGTCCTGTCGTTCATTCCATGGGACTCAGATCGTAATAGAATATAACCTCATCCTCCTCCAACCAACTCAATAGAGTTCTCATGACTTTGGGACTCAAGCTCTAATTTCAGCGGTTGACAAATGTGATAATTAGTTAAGAGTTTTAAGACTTTATAATTCATCTTTTGGTTGAAATGCTTCAACCAACTGCGCAAATGGAATTCTGATTAGTCCAGCTAAAGGACCAATCTATGAGCAAGTCGAGATTGGGCAAAAACCTAGTATTTCAATCGAGCTGCAGTGAACTCAGCTTTATTAAAAGTTTCACTCGAGTTTTGAGACAGAGTGTTACCTAAGCCAAACTGAAACAGCACATGAGTAAGCTCAGCTTTCCCTTTTTTCAATTTTCAGTAGAAAACTTCGTTATGCAGAGAACCGTAAATGACAGGTGAGTGAACCACAATAGCTCAGCTCAGAGTCTTAGTTTTTGGTTGAGGTTTTCTAGATCCTTTTATTTATGTATTAAAATGCTGGTTAGTATAATGGTTCTCCTTCCTTCTAGGGTTGTAGAATTTTGGAACTCCAAATGTCTGTTTATGCATAAGAGTTATTTAGCTAACTGCCTTGTGCTGGCGCATGCATATTAACTGCGATTCCTTCTAAGGGGGACTCCATCAAGTGGGTGTGGACCTTGATTTGAGGCTGTCACTATCAAAGTATCAATGGCTTGATTCACTCAAACACAAACTTTATCATAAATCTGATCTTTAAGAAAGACTTAGAGTTGCCTTTTAGTTGTGGTTCAAAAAGGGGATGAGTTTCTTGATTAACTTTTAAAATGACATTAAGAAATAATTTTGAAAATAATTGTGAGCCCATGCTAAAAAGTAGTTTTTGTTTTTTACAAAACTGGTCTTTGAACTTTGAGTTAGATTTTAGTTTATATTTGAAGGAGTATATGTGTGGACTACTGTGGAGTTTGTCTCTTTAGTCTTTAAAACAGGACGAATGGGTACCTTGTGGAAATACGCTTGATATGACCTTATTGGATCTGTTGTATATGTGAGAGAGTTTGGTTGGAGAGTTAAGACTTAGAACTTTCATGCTGTAAACATATTGGGTTTAATGGAGTAAAGAAATTGTACCACGCTCTTGAAGTTGACCTGAAAACAAGACTGACCTTTCGACTTGTCTACTTATTGCTAGAATATGACCACTGGTACTTGGCCCATGAAAACCAACCTATACTCGTGGGAGTTAAAGTGAACATTTCTTATTAGGATATGGTTTTAAGTGGGCTTCAATTCATTGGAACCTTTGCTAACTAATAACCAGCCAAAATTTGGCGAAGTAAAAGCCTGATATCTGTACTTGGCTTGCAAAATTTGGCAAACTTTTAAGTGGGCAAAATTTCGAGCAATTAATTGATGTGGTACTAGAAGAAACACTGATCCTTTTTAAGTCTCCTGTAACTAAAATGCTGGCATAATATTATGGGAACATTGCTAGATACACAATATGATGATTGACAGGCTCAGTGAAGATAGAGGTTGAGCTTGAAGGCTTTTTGTATAGAACTTGGGGAGACAAAGCATAGGTGTTCAGTCATATGTTCTTTTACAGAAGAATATGTTCTGATATCAACTTCAAGTATGCCTCCTGTCGTCTTCCTTGAGAGTAAATATTTTCCTTACATAACTTATAAAGATCATAGTTCTGAGTATGTCTGCCAAAATATACCTCCTGTTGTCAAACTTTAATAATTATATCTGCCACTGTCTACCTTGAAGGCTATCCTTTTCTGTGCAGTTTTCTACTATCTGTTGCCTGTATAGTAAGACACACTAAGACACACTGCCAAATGGACATGCATGGAGAAAGTTTGCTAAGATTGGCATGGAAGTAATGAAACCAATTGTTGAATTGTCCTTGAATTTTAAATCCAATCATAAGCAAGTGAATCATGTACACGTTTACTCGCTGAGAGTATTGAGACTTGGGTGGGAAGGGCTTATCTATCTTAGGAGGGTTATACGACACTTATTTTGTTGTCTTTCTAATTTGCACTTGTACTTTTGTTCCACTTTTGAATTTCGATTGGTATATCTAGTAGATACCTTGAGGATCAAGAAGGACTATGAGGTTTTTTTTTTGTAATTCGTGACTCGGGGGTTGGTGAGGATAACAGAAATCATCTTGTCAGTTGGGAATGTGTTTGGAAAGGAAGAGGGATGCTTGGGTTTCGTTTTGGTGTCTAAAAACATATCCTTCGTGGGACTATGGTAGTAAATATATTTGAAATTTTTATTTAAGGAGGGACAATCATGAGTAGAAGTTGGGAGAGCTTACTAATCGTAAATCATCCTTGAATCTGTGTTTCTTGTCATATTTCCAGGATAGAAGATAGGGTGGTTCGCTTCTTTGGGGTCTTTCGCTTGTCATCCCTTTTAATAAACACCTTAAAACCACTTCAAGTTCATAGACTCTCTTTTGGCTTTTATTTGAAAAACATTTGTTTTGGTTGCCAGCGTAAGGAAATTCAACACTTGTGAGAATTTTCCTGTTCGGAGAACAAACAGTTTTTTTTTTGGGTGGGTGGTTTGTTGGAGAGGGAGTGATAGGATTTTCGTCGTCAGGAGTCTTCTTTGATCTTTTTATGGGATAAGTAATGAACTCCTCATGGACTGTTCCTTGGTGTGTCCCTTTCTGAGCTTCTATTTGTTTTATCATGCTCAAATTAATTTCTGTGGAATTTGGTCCCCGTTCTATGCAATTCTTATTTTTCTTTATAATGGAATTTTTTTGTCATTAATTTAAAAGTATTAGCTGTCCTTTTGTGTCTGCCCAAATCGCCACACTGGTAACATTGCAAACAATTTCCATACACTCTGCCCCTTTGAGAAACAAGTTCCCAACAATCTTTAAGCAAGTTTTACCTCCCACTGTAGAATGCAGATGCATAAACTAAGTTTCATCTCAACATTCTACATAGATGGACTGAGTATTTTAGGTGTCAATCTACATTTGTAGGTAAACCAGTGTACATGTACAGCATGGGAGGCCTTGCAGAATATTGTGTTGTTCCAGCACATGGATTAACTGTACTTCCGGACTCATTGCCATATACCGAGTCCGCAATTTTAGGCTGTGCAGTATTTACTGCTTATGGTGCAATGGTTCATGCTGCTCAAATGCGTGGTGGGGACACCGTTGCTGTGATTGGTATTGGTGGGGTTGGATCAAGGTATGAGCCAGAAACCTTTTTTTTGCGCTGTGCCCCGAAGCAATGTGATTTATTTCTAAGAAGGATGTTATTTTTTAGATAAAAAAATTTGCTTGGGAGGGAGAGAAGTGAATTTGAAAGAACAACATTAGTAACTTAGGCAGCCGGGAATGGAATATGAGTGTAATTCTTTAAAGGACTCCAATAAAGAACTCAGCAGCATCTCCGCATAAAGATGAAAGTATTCCTTCAGCAAATCAATAGTGTAGTTGCAGACATTAAATGGATTGCGTGTCTCCAGAACTCATTTTCCTCCCTAAAACCAATATACTTCACTTGAAAGTGCTCATCTATTGTAGCAGGGAAGACCCAACTTGTTGATGTAGGCTCTATATTATGCTTGCAGTTCGACATGTTTATGATGCAGAACAATTGTTAGTTGTTAGACTTCTCATTCTTGAGCATTTAGATACCAAATTTGATTGTAATTTTTTTTATTGACCTATATTTTTACTGTTCACCTTTGGGTGAAAATGACAATAGCCCCATTCTTCAGTTGTTTGCAGATAGCACGTGCTTTTGGTGCTTCTGCCACTATTGCTGTGGATGTTAGCGATGAAAAGCTGGAGAAAGCAAAGGCTGTTGGTGCCACTCACACAGTTAATGCTCAGAAAGAAGATGCAGTTGAAAAAATCAAAGTGCTGTACTTATCCCTTCTTTTATCAGTTTTTAATTTTATATGCCTCTAAAACTATTCTCTTGTGTTCAAAACTCCTTGTACTTGAGACTTCGAAGTTTTAGTAATGGAGTCGGATATGCTTGAGACAGTCAAAATTAGATTTATTGTTCTTCACTATGGTAGTATGGTGTCCTGATAATGTCTTAGATAGCTCTTTAAGTACGGCTGTGAACTATGATCAGATTGTATTCTGCTTATGTTTTTTATTGTACTCTTAAAGTTTGATGACTTCGTTCCGACTTTCTTCTTTTGTCTAACCAACGATTTCATCATCTGACTTGGTTTTTTCATGGTTAAATGGCTATCTTGTCATCGAACACTTCCGATGGAAGACTCTTAGCAGCATTTTATTCATGAAAAAGAAGCATTTGATCTATATGTGAATTTCAATGGGATTTAGAGATTTGAATATTCTGCATGCATTTACAGATGAACTTTAATATTCTGCATGCTATTTATGTTCTAAATGCATTCATTTGAAACGTTAAATCTATACTAATATTTTAAAACAGAATAATTTGCATAAATAAATTGTGAGCTTTTTTTTAATTAAGAGAACTCGTGCAATGCACAGGCTAAAAAGCTAGTTAAATTTAATGTAATAACGTTACATCATTCCCATTTTTTTCCTGCATTCTCCAAAAGTCCAAATTAAGTTGAACCTATTTTCCAAATTTCTTGTGCAGGAAATTACTGGAGGAGTTGGTGTTGATATTGCCATTGAGGCTCTGGGTAAACCGCAAACTTTCCAACAGTGCACACAAAGTGTTCGTGATGGAGGAAAAGCTGTCATGATTGGCCTTGCGGATTCCAGGGCTAGAGGAGAGGTCGATATAAACCGTCTTGTTCGTAGACAGGTGCTGTACACATTTAGTTTGATAGATTAACAAATTCTTGTCTTTAACATATGACTTGCTAGCTTAGCTTTATTAATAATGATTGTTGGATGTCTAAAACTAATCTGCGCTATTGGTGATAGCTGCAACAAAATATTTATATAGTGATATGGTTGATTAGTTGGTTAATGGTGAAATCACCCCAATCCCCTGGGCTGTCCACCTCCACCGTCCACCTATGTGATACCCCTTAAATTTTCTGCCCTTCTCTCCTGCAAACCCTTAGGTATATAAGCTATGTTCAACTTTTTAGTCATACTTTATTGAAGCTTTAAACTTATATCCCCGGACTGTCGTAATGCTCCTTAACAGATGTTGCACGTGAGGGTGATCCTCATGTTTTCATAGCTTTGAGTCTTTGACTGCATGAATTGCGCAGACCTAGCTTTTTCTGCTTCTAGATTGGTTGATTTTTTTTTAGAATTAAAATTGTGGCATTAGTTGGTTTGTCCCATATTCATTCTGGGGATAAAATAATGTTGGACAGGAATCATTGCTGTTGTAGGCTTCTAAATTCTAATGGGGCTACTCAGTATAACCTGTAACTTTTGATACATTTTTACTTGTATATATTGAACGACAGGTGAAAATTATTGGTTCATATGGAGCAAGAGCTAGACAGGACCTACCCAAGATAGTAAAACTAGCAGAAACGGGGGCATTCAATCTAAGCTCAGCAGTTTCAAAAATATATGACTTTGAAGATGCAGATAAGGCATACCAACATCTCAGTCAGGGCACCATTATTGGCCGTGCTGTCATCAATATTGCTTGATAGCTGCTCTGCGTGGATGACGAGCCCTTGGTCTTGTTTGGCATCCAAAGAATAAAAATTAGATGTTTGTTAAGCCAATCGCATGTGTACTAAATGTATCAACACAATGATTGTTTTTTAATTATCTGTACAATTTTAAAACATCCAATAATAATTATGCATTTGGTACTCGTAATTTTCGTCCTTAACATATGTTTTCATAGCTTTGAGTCTTTGACTGCATGAATTGTGCATGAATTGTGCAGACCTAGCTTTTTCTGCTTCTAGATTGGTTGATTTTTTTTTTAGAATTAAAAATGCGGCATCAGTTGGTTTGCCCCATATTCATTCTGGGGATGAAATAATGTTGGACAGGAATCATTGCTTTTGTAGGCTTCTAAATTCATGCAGGGGCT TCCAAGAAAGAAGTCCGAATCATGAATAATTGAATATACACAAATACTAATCCAAAACTTTAAATACTCCGTTTAACTTATATCACCAACTCTCGAACCTCCTCCATTATCAATCATTCCTTCAAATTAATCCAAACTTTCAACAATGGCGTCCATTATCCGCAAATCAATCGTCAAACGAATAATCGCTAACCCATCGTCCTTAATCTGCAGATCAATCTTCACTGATTCCTCCATTAATCCTGCTCTAATCTCATTCTCTCTTCCTTCTTCTTCAGCATCGTTTTCTTCGTCGTCGTATAATGTGAGCGGTGGTGGAGCTTCGTATATGAGGGGCGTGATGTTTACCAAACCGAATCAGCCGCTTGTTATTGAAGATTTTCTCATGCCTCGTCCTAAAGTTAATGAAGTTCTCGTCAAAACCAAGGCATGTGGAGTATGCCACTCTGATCTTCATGTGATAAAAGGTGAACTTCCATTTGCCAGCCCTTGTATCCTTGGCCATGAGATTACGGGTGAAGTTGTAGAACATGGTCCTCTTACTGATAGCAGAATCATCAAAAGATATCCTGTTGGATCACATGTTGTTGGAGCTTTTATCATGCCATGTGGTAACTGTTCCTTTTGTTCAAAGGGGCAAGATGATCTCTGTGAGGATTTCTTTGCTTATAACCGGGCAAAAGGAACTCTTTATGACGGTGAAACACGATTATTCCTTAGAAGCAATGGTAAACCAGTGTACATGTACAGCATGGGAGGCCTTGCAGAATATTGTGTTGTTCCAGCACATGGATTAACTGTACTTCCGGACTCATTGCCATATACCGAGTCCGCAATTTTAGGCTGTGCAGTATTTACTGCTTATGGTGCAATGGTTCATGCTGCTCAAATGCGTGGTGGGGACACCGTTGCTGTGATTGGTATTGGTGGGGTTGGATCAAGTTGTTTGCAGATAGCACGTGCTTTTGGTGCTTCTGCCACTATTGCTGTGGATGTTAGCGATGAAAAGCTGGAGAAAGCAAAGGCTGTTGGTGCCACTCACACAGTTAATGCTCAGAAAGAAGATGCAGTTGAAAAAATCAAAGAAATTACTGGAGGAGTTGGTGTTGATATTGCCATTGAGGCTCTGGGTAAACCGCAAACTTTCCAACAGTGCACACAAAGTGTTCGTGATGGAGGAAAAGCTGTCATGATTGGCCTTGCGGATTCCAGGGCTAGAGGAGAGGTCGATATAAACCGTCTTGTTCGTAGACAGGTGAAAATTATTGGTTCATATGGAGCAAGAGCTAGACAGGACCTACCCAAGATAGTAAAACTAGCAGAAACGGGGGCATTCAATCTAAGCTCAGCAGTTTCAAAAATATATGACTTTGAAGATGCAGATAAGGCATACCAACATCTCAGTCAGGGCACCATTATTGGCCGTGCTGTCATCAATATTGCTTGATAGCTGCTCTGCGTGGATGACGAGCCCTTGGTCTTGTTTGGCATCCAAAGAATAAAAATTAGATGTTTGTTAAGCCAATCGCATGTGTACTAAATGTATCAACACAATGATTGTTTTTTAATTATCTGTACAATTTTAAAACATCCAATAATAATTATGCATTTGGTACTCGTAATTTTCGTCCTTAACATATGTTTTCATAGCTTTGAGTCTTTGACTGCATGAATTGTGCATGAATTGTGCAGACCTAGCTTTTTCTGCTTCTAGATTGGTTGATTTTTTTTTTAGAATTAAAAATGCGGCATCAGTTGGTTTGCCCCATATTCATTCTGGGGATGAAATAATGTTGGACAGGAATCATTGCTTTTGTAGGCTTCTAAATTCATGCAGGGGCT ATGGCGTCCATTATCCGCAAATCAATCGTCAAACGAATAATCGCTAACCCATCGTCCTTAATCTGCAGATCAATCTTCACTGATTCCTCCATTAATCCTGCTCTAATCTCATTCTCTCTTCCTTCTTCTTCAGCATCGTTTTCTTCGTCGTCGTATAATGTGAGCGGTGGTGGAGCTTCGTATATGAGGGGCGTGATGTTTACCAAACCGAATCAGCCGCTTGTTATTGAAGATTTTCTCATGCCTCGTCCTAAAGTTAATGAAGTTCTCGTCAAAACCAAGGCATGTGGAGTATGCCACTCTGATCTTCATGTGATAAAAGGTGAACTTCCATTTGCCAGCCCTTGTATCCTTGGCCATGAGATTACGGGTGAAGTTGTAGAACATGGTCCTCTTACTGATAGCAGAATCATCAAAAGATATCCTGTTGGATCACATGTTGTTGGAGCTTTTATCATGCCATGTGGTAACTGTTCCTTTTGTTCAAAGGGGCAAGATGATCTCTGTGAGGATTTCTTTGCTTATAACCGGGCAAAAGGAACTCTTTATGACGGTGAAACACGATTATTCCTTAGAAGCAATGGTAAACCAGTGTACATGTACAGCATGGGAGGCCTTGCAGAATATTGTGTTGTTCCAGCACATGGATTAACTGTACTTCCGGACTCATTGCCATATACCGAGTCCGCAATTTTAGGCTGTGCAGTATTTACTGCTTATGGTGCAATGGTTCATGCTGCTCAAATGCGTGGTGGGGACACCGTTGCTGTGATTGGTATTGGTGGGGTTGGATCAAGTTGTTTGCAGATAGCACGTGCTTTTGGTGCTTCTGCCACTATTGCTGTGGATGTTAGCGATGAAAAGCTGGAGAAAGCAAAGGCTGTTGGTGCCACTCACACAGTTAATGCTCAGAAAGAAGATGCAGTTGAAAAAATCAAAGAAATTACTGGAGGAGTTGGTGTTGATATTGCCATTGAGGCTCTGGGTAAACCGCAAACTTTCCAACAGTGCACACAAAGTGTTCGTGATGGAGGAAAAGCTGTCATGATTGGCCTTGCGGATTCCAGGGCTAGAGGAGAGGTCGATATAAACCGTCTTGTTCGTAGACAGGTGAAAATTATTGGTTCATATGGAGCAAGAGCTAGACAGGACCTACCCAAGATAGTAAAACTAGCAGAAACGGGGGCATTCAATCTAAGCTCAGCAGTTTCAAAAATATATGACTTTGAAGATGCAGATAAGGCATACCAACATCTCAGTCAGGGCACCATTATTGGCCGTGCTGTCATCAATATTGCTTGA MASIIRKSIVKRIIANPSSLICRSIFTDSSINPALISFSLPSSSASFSSSSYNVSGGGASYMRGVMFTKPNQPLVIEDFLMPRPKVNEVLVKTKACGVCHSDLHVIKGELPFASPCILGHEITGEVVEHGPLTDSRIIKRYPVGSHVVGAFIMPCGNCSFCSKGQDDLCEDFFAYNRAKGTLYDGETRLFLRSNGKPVYMYSMGGLAEYCVVPAHGLTVLPDSLPYTESAILGCAVFTAYGAMVHAAQMRGGDTVAVIGIGGVGSSCLQIARAFGASATIAVDVSDEKLEKAKAVGATHTVNAQKEDAVEKIKEITGGVGVDIAIEALGKPQTFQQCTQSVRDGGKAVMIGLADSRARGEVDINRLVRRQVKIIGSYGARARQDLPKIVKLAETGAFNLSSAVSKIYDFEDADKAYQHLSQGTIIGRAVINIA Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo14601.1 vs. NCBI nr
Match: gi|902160149|gb|KNA06398.1| (hypothetical protein SOVF_181480, partial [Spinacia oleracea]) HSP 1 Score: 807.4 bits (2084), Expect = 1.200e-230 Identity = 409/410 (99.76%), Postives = 410/410 (100.00%), Query Frame = 1
BLAST of Spo14601.1 vs. NCBI nr
Match: gi|731328635|ref|XP_010675159.1| (PREDICTED: alcohol dehydrogenase 1C [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 749.6 bits (1934), Expect = 3.100e-213 Identity = 389/448 (86.83%), Postives = 413/448 (92.19%), Query Frame = 1
BLAST of Spo14601.1 vs. NCBI nr
Match: gi|729301435|ref|XP_010521409.1| (PREDICTED: alcohol dehydrogenase 1B [Tarenaya hassleriana]) HSP 1 Score: 627.5 bits (1617), Expect = 1.800e-176 Identity = 305/394 (77.41%), Postives = 350/394 (88.83%), Query Frame = 1
BLAST of Spo14601.1 vs. NCBI nr
Match: gi|720052744|ref|XP_010272510.1| (PREDICTED: alcohol dehydrogenase 1B [Nelumbo nucifera]) HSP 1 Score: 626.7 bits (1615), Expect = 3.000e-176 Identity = 307/390 (78.72%), Postives = 345/390 (88.46%), Query Frame = 1
BLAST of Spo14601.1 vs. NCBI nr
Match: gi|661898702|emb|CDO98669.1| (unnamed protein product [Coffea canephora]) HSP 1 Score: 626.3 bits (1614), Expect = 3.900e-176 Identity = 300/371 (80.86%), Postives = 336/371 (90.57%), Query Frame = 1
BLAST of Spo14601.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QI82_SPIOL (Uncharacterized protein (Fragment) OS=Spinacia oleracea GN=SOVF_181480 PE=4 SV=1) HSP 1 Score: 807.4 bits (2084), Expect = 8.600e-231 Identity = 409/410 (99.76%), Postives = 410/410 (100.00%), Query Frame = 1
BLAST of Spo14601.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CII5_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_4g084140 PE=3 SV=1) HSP 1 Score: 749.6 bits (1934), Expect = 2.100e-213 Identity = 389/448 (86.83%), Postives = 413/448 (92.19%), Query Frame = 1
BLAST of Spo14601.1 vs. UniProtKB/TrEMBL
Match: A0A068TRV6_COFCA (Uncharacterized protein OS=Coffea canephora GN=GSCOC_T00022841001 PE=4 SV=1) HSP 1 Score: 626.3 bits (1614), Expect = 2.700e-176 Identity = 300/371 (80.86%), Postives = 336/371 (90.57%), Query Frame = 1
BLAST of Spo14601.1 vs. UniProtKB/TrEMBL
Match: A0A061DNY9_THECC (GroES-like zinc-binding alcohol dehydrogenase family protein OS=Theobroma cacao GN=TCM_003380 PE=4 SV=1) HSP 1 Score: 622.9 bits (1605), Expect = 3.000e-175 Identity = 313/432 (72.45%), Postives = 369/432 (85.42%), Query Frame = 1
BLAST of Spo14601.1 vs. UniProtKB/TrEMBL
Match: K4C2X8_SOLLC (Uncharacterized protein OS=Solanum lycopersicum PE=3 SV=1) HSP 1 Score: 619.8 bits (1597), Expect = 2.600e-174 Identity = 316/431 (73.32%), Postives = 361/431 (83.76%), Query Frame = 1
BLAST of Spo14601.1 vs. ExPASy Swiss-Prot
Match: SUCD_METS5 (Succinate-semialdehyde dehydrogenase (acetylating) OS=Metallosphaera sedula (strain ATCC 51363 / DSM 5348) GN=Msed_1424 PE=1 SV=1) HSP 1 Score: 267.7 bits (683), Expect = 2.200e-70 Identity = 148/369 (40.11%), Postives = 220/369 (59.62%), Query Frame = 1
BLAST of Spo14601.1 vs. ExPASy Swiss-Prot
Match: ADH3_GEOSE (Alcohol dehydrogenase OS=Geobacillus stearothermophilus PE=1 SV=1) HSP 1 Score: 177.9 bits (450), Expect = 2.300e-43 Identity = 127/374 (33.96%), Postives = 184/374 (49.20%), Query Frame = 1
BLAST of Spo14601.1 vs. ExPASy Swiss-Prot
Match: FADH_AMYME (S-(hydroxymethyl)mycothiol dehydrogenase OS=Amycolatopsis methanolica PE=1 SV=2) HSP 1 Score: 174.9 bits (442), Expect = 2.000e-42 Identity = 120/372 (32.26%), Postives = 181/372 (48.66%), Query Frame = 1
BLAST of Spo14601.1 vs. ExPASy Swiss-Prot
Match: ADH1_GEOSE (Alcohol dehydrogenase OS=Geobacillus stearothermophilus GN=adhT PE=1 SV=2) HSP 1 Score: 173.7 bits (439), Expect = 4.400e-42 Identity = 123/374 (32.89%), Postives = 185/374 (49.47%), Query Frame = 1
BLAST of Spo14601.1 vs. ExPASy Swiss-Prot
Match: ADHD_MYCTU (Putative alcohol dehydrogenase D OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=adhD PE=1 SV=1) HSP 1 Score: 171.8 bits (434), Expect = 1.700e-41 Identity = 116/366 (31.69%), Postives = 174/366 (47.54%), Query Frame = 1
BLAST of Spo14601.1 vs. TAIR (Arabidopsis)
Match: AT5G63620.1 (GroES-like zinc-binding alcohol dehydrogenase family protein) HSP 1 Score: 605.1 bits (1559), Expect = 3.300e-173 Identity = 293/409 (71.64%), Postives = 351/409 (85.82%), Query Frame = 1
BLAST of Spo14601.1 vs. TAIR (Arabidopsis)
Match: AT1G64710.1 (GroES-like zinc-binding dehydrogenase family protein) HSP 1 Score: 155.2 bits (391), Expect = 9.000e-38 Identity = 108/358 (30.17%), Postives = 171/358 (47.77%), Query Frame = 1
BLAST of Spo14601.1 vs. TAIR (Arabidopsis)
Match: AT1G77120.1 (alcohol dehydrogenase 1) HSP 1 Score: 153.3 bits (386), Expect = 3.400e-37 Identity = 113/371 (30.46%), Postives = 185/371 (49.87%), Query Frame = 1
BLAST of Spo14601.1 vs. TAIR (Arabidopsis)
Match: AT5G43940.2 (GroES-like zinc-binding dehydrogenase family protein) HSP 1 Score: 149.1 bits (375), Expect = 6.500e-36 Identity = 105/363 (28.93%), Postives = 171/363 (47.11%), Query Frame = 1
BLAST of Spo14601.1 vs. TAIR (Arabidopsis)
Match: AT5G42250.1 (Zinc-binding alcohol dehydrogenase family protein) HSP 1 Score: 144.4 bits (363), Expect = 1.600e-34 Identity = 109/386 (28.24%), Postives = 182/386 (47.15%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo14601.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo14601.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo14601.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo14601.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 5
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
RNA-Seq Expression
Co-expression
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