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.TTGATAGAAGGTTCATTACACTGAAAATTTATAAAAAAGATGATGAACCAATTGCCTATTGGGTCAGTGGAGATTGGAGCTGAACTTGGTAGGGAGGACCCGTGTTCGATCCCCGCAAGTCCGCAACAACCATTGGGAGGGGACTGAAACCTATCCATCCAGAATTCACCCCGAATTTAAATTAGCCTTAAGGGTGAACCAAGTGCTAATACCAAAAAAAAATAATGACAACAAGGCTATTGAAGTTTCTTTCTATTGATATTGCCCTCACATATTGTACTCCCCTTAGTCCCTTACCCCTTGTACCGGTCAAATTCAAGGCATAAAACGAATACCGAACTCGTCAGCTCTCCAGATACTCCGTAATTCTTTCTTCCCCAAATCAATAAAATCGTAAGATACAGCAAACACAGGAGCTAGAAAACCAGACAAACCCAGAAATCAAAGGAGAGAGAACGTGTGTGTGTGAGGTATGTCGTGCTTGTTTTCATGCTGCACATCCCTTGCGTGTGGGTGCTGCACATCAGTAGCATCTGGTATCACAAAGAAGTCAGCTCGAATAGCATACTGTGGCCTCTTTGGTTCTTCTCTTCTTATCTCCTGGATTCTTCGAGAAGTCGCTTCTCCTTTGTTGCAGAAATTACCTTGTATGAAATCTCATCATTTTACTGTTTAATTTCATTTGGTTACTCGTTTTCCTTTATTTTATGTGAATTCATCCATTCTTGGGTTTAATTTGTTGTTTTCTGTTGGTCTTCTCTTGTGGTTTGATGCTGAATTTGTTTAATTTATCTGTATCTGCATCAAAAAGTTTTGGTAAGAATTAGGCTTGAGATGGAACGTTTTGTAGAAAGGGTTACACTTTTGGTGGTATTTAGGACCTATTATAAAATTCGTTTTGCAAATAGTATAAATATAGTAGTTACAATTTAGGCATAAGGAAAGCAACATACTAAAGAATGGATTTTTTTACCCTAAGGTAAGCTATCACCATCTGAAGAATTTGAATTGTGAGCCATTGCTGTTCAGAACAACAATAAAGCCTTGTGAAGAATTGTTCTGCGGCGTATATTTTCCATATTGAATTAGTCAATCCGTCCCTAGAAGGCTTAGATAATTGGTAACATTTCTATTTTGAAGCATCTCGAAATTTTAGGCTTGTTTCTATAAAGTTAAAAATCGAGGTTTCCCATATCATACTAGATGATACTGGTAACTGATAGATTTAAGAAAGTCCAATCAATGACATGATTGAGATGTAAAACTTCAGATAGTGAAGGTTACTTGTGAAATTTCAACTGAATTCCTTAAAAACGAACTTTTATCAAATGTCAGTTAGTAATAGTGGATGGGGGGACTAGTAGTCTCTTGTTTGGCACTAGTTCTCTTGTTTCCTTGTCCTCAATAACTGTACTGGGAAAACCTCTCCCCTTTTCTTACCCTTTAATGGGTACACTTCTCAAATTGCAGGGTCTGCAAACGAGATTATTTTTAGAATTCAGCACTTTGTTGATGGATTTATAGTCAACCACGAAAGGGGTTGGTTGAAGTTGAACACTTAAAGAGTAAACTGATGAAATATCTGGTAGAGATGGATCCTGGAAAAGGGTAGTAACAAGTAACAACAAGAAATAGTTGGTGGATAGAAGCAATCAAAAAACCTTTATTAGATCTAGAAAAGGAAAGGAACTCTCTCTTTTATCATTAAAATCGAACAAATTGTTGTCTATATGCACGGGCACTGTTGGTGCGTCTGAAACACCCCTCTACTCTTTTATCATTAAAATCGAACCTTTATTAGGACTTGAATGTTTTCCTTGAAGTAGCATATTAAGTGCCATCTTGTTGTACACATCCTGATGAGTTTCCCATTTTAGCCTTCAATCATGTATGGTATGAGTGATGGGCTTTTAATCAGTTACTTAACCTCTGAAAGTTTCATTCATCTCCCCTCTCTCAATCCCAGCGGAAAGCCAAAAAATGTATGTTAGATACTTGAGTTTCCTTCAGGAGTAGCATGTTTGCATGGCTGTTGAACAAACTTGTGAGACAGATCTGTATCTGACATTTCTGCTTAATTTGACCTTGAAGGGATCAATAGTGCTGATCACACAAAGGAGTGGTACCAGACAAGTACGGTTCTTCGAGTCAGCTTGGGAAACTTTCTGTTTTTCGTGGTGCTTGCCATAATAATGATTGGTGTCAAGGACCAGAACGACAAACGTGATTCATGGCATCATGGAGGATGGATTGGGAAGATGGTTATCTGGCTTCTACTTATCGTTCTTATGTTTTTTATGCCGAATGTCATTGTAGATATATATGGTAAGCTGTTTATGGTGCTCAACTATCTATGATATCTTTTGTTTTCGGAAATATTCTTGACCACGTTTTCAATTTATTTTAGATACGGAGTACATTATTTCAGCGAACTGACTGCCACTTTTCTAGTAAAGTGTCATAACTCTTGTAAAATAATATGTCATTTACTCCCCTGGTTTTATTGAATATCCTAATTTGCGGGGAATCTATCTCACAAAATATCAGAATCCCACGAACTGAAAAAGAAGAATAAACACACGAAAGCAGTACATATTGGCCCAATTTACAAAACTACTAAATTGCCTTCCTGTACCCAATCTTGTGCTAACGAGTTAAGCAATTGGAATATCCACTGTTCCACTTTGAGAATGGATCGGAATTTATTTAATTTTTTTTTTTTAACTTCTCTATGTTATTAAATTTATTTTTTTACGGAGTACTTACTTATGGTGGCTAATGGAATTTTGGATTTCGTGGGAAATTAGGACTGTAATGAGGCTAATTAAAAGGGTATTTAAGCAATTTGTATATTCTTTTGTGGGCAAATGGACATGTTTGTCAGGAAAAGCCAAAATAGAATTGTCAGTCAAGGGCACATCCAGAGATTAATACTCATAATAGGGTGTATAGTCGGCTCTCATATATGTCATGTCTGTCTCTCAAATTTATCGTAGCAATCCTCTGTATTTTGCAGGTATTCTGTCAAAATTTGGCGCTGGACTATTTTTGTTGGTACAGGTTGTTTTACTATTGGATTTCACTTACGCTTGGAATGATGCTTGGGTTGAGAAAGATGAGCAAAAATGGTATACTCCGTACTATTCTAATTAGCAAGCGCAACTGTTAATTTTTCCTTGCATTCTTGCCTAAAGAAAATCCCGTTGCTTTTTAGGTACATGGCTTTGCTTGCAGTATCAGTAGGGTGCTACATTGCTGCTTTTACTTTCTCTGGAATTTTGTTCATTTGGTTCAACCCCTCTGGCGAAGACTGTGGCCTTAATGTGTTCTTTATTGTCATGACCATGATTCTTGCTTTCGCATTTGGTGTCATTGCTTTGCATCCAAAGGTTAGTGTCAGGCTTTCTCTGTTTGATCATAAGACAATTGTGTTTGGTCTTTTTTTCCCTTCCTTACATTGTACTTCTCATTCACTTAGTTAGTTATTTTGGTTAATGCTGGCATCGAATTTCGTGTGTAGCCAAGGTACCCAAAGCTGACAATAATAGAGTTGAGAGCTAATTGGAAGTGGCAAAGATAATCTGTGAAATTGTTTTATTTATGTTTCCTAAGTTTAGGAACTATTACAACTCTGTTCTTACTCTGGATGTTGTATAGCCATAGTTAGCACTTAGCAGAAAAAATGTCCCCTAAATGACTACATAATGTGGAAGTTTTAATGGGAGGATCTACCATAATAGGACTTGTAAGTTGTAACAGTGCAATAAGAATTAAATTGATTATATTTAACTGGGGAAATTGAAATATGGTGGAACACCTTGCCTAATTTGCCTTACTACAATGAAGGATGAACTATGAAAGCTAACTCAAAGGGAGAAGTAGAAGCTCCCACTCAAAGGATGATGAGCTCATAATGATGATGGGTTAGAGAGTATAAGAGTTCATAAACAATGGCGGAGCCAGGAATTTTTCCTTGGGTGGCTAAACATTCAAAGTTACTCCGTAAAATTTGAATTGTAAAAGTTTTGTAAGGTTATATATAGATAAATAAGGAGTAAATATGATATTTTCTAAAATTTGTACTTAAATAATATGCTTTTTACAAAAACATAGTATGTCTCATTGTATTTGGCCTTTGATTTTAAAAAGTTCAATAGAAAGAAAAAAAACCAAAGAAAAATGTGTGTGAAAAGAGTACTGGAAGAGGAAAAAAATAGAGAAGCAAACCACCACAATTTGTAGAACCATGAATAGAACATGGATTGTTTAGACACAAAAGTGAAGCAAGCGCCCTTACCCATGACCACTGGAGCAACATACATTATATATCTCCTCTCATTGTAAATTATATAGGCATTTTTTTGGGGGGGGGGGGGGGGGGGGGGGGGGGGAGGGGGGGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNGGGGGGGGGGGGGGGGGGGTGGGGGTGGCGGAAGCCCCTACCCGCCCCCTAGCTCCGCCAATGATCATAAATATGTATGGTAAGAATTCTGAGTGACGATGAATATGATTACAAGTAGAACATTGTCATTAGATGCTGGATATTATACTTATATCATGGGGAATGCTGCTTGTTATCGGAACAGGCACCTTTCAAGTTCGGGTTAAGTGGTGGGTGCCACTGGGTGGGATCAGATGTGGTCTTTGTCATAAGACTCATCACTTTATCGAAGAGGCTGTTTCCACTGAATCAAGATGCAAAGCAATTTAATAACTCATTTTGGTGTAATCCTTTATAATCTACAGCCAAAAGTTCAGACACTTCAGTTTTAAGTGTTATTTTAAGTCTTGGTCAAGTGAGGCTGTTAGATAAAAGTGTTGTTTTTCTTCAGCTACTTTTTACTAAACTGATTGATATTACTTGAGCAAACTGATTTTGCAGATTTATGCATATATTTAAAGATTGATTTTTTTTACACTGGTAAATTTTATTAATTAGAACTGTTTTCTGCTAGTTTATAATGTTATAATAACAATCATATTTATAATCACAATTATAATGACAATAACAGAAGTTTTGTATTACTACTGTGTACAATTCAGACCACCTAAGTTTAGGAATTTGACTTAGTTAAGGATATTGACCTAAGATCAATAGAAAACGAGGCTCCGTTTGTTTTAACGAGATTTTTTCAATGGAAAAAAATTTCAAGGTAAAATAAAATTGTAATAGTTTTCCTTTGTTTGTTTCCTACTTTCCTTACAAGTGAAGTATAGAGAAATAGGAAATGGAAGTAGAAAAAAGATGATGAATTGGAGGAAAGGAAATAGGATGCAAGGGAAGAGAAAAATGTGGCTTTCCTTCCTTCCAAAACGAAAATGTTTCCACCGTAGGAAAGTTACTTTCCACCTTTGGGGAAATGGTTTTCTACTCCTGAGCAAACCAAACAAAATCATTTTCCTAGAAAATGTTTTCCTCCAAAACAAATGGAACCTAAATTATGCTTTCTTTTTTAAGGAATAGGTAAACTTAATGCAAATTCCTCAAACATTTTCTACATGTTTGGGCTTAAGCCATTGTTTAATTAGATGTAGAATTCTTTCCGTTGTTTTTGTAACATACATTCATTTCACATTGATTTCAATGTATTAAAAGCATTTCCCTGCTGTTGTAATGGCTATAACTTCAACATTAAGAACATCATATAGTTGATTGTAATTTCGTTTGACCTATTGAAATTTTGTTTGACCTATTGAAATTGAAGTTTTTAGTTTTTGTTTTATGGAAATCCGTGACAGTTCATGACTTCACTCTACAAAGGTCTTAAGTTCCATGTTTTGGCCGATTCCATCTCCACGTTTCTTCGAAGCCCTTTGGATGGAGGACTTGTCTCAAAACTCTCCGTCTAAAATATACCCCGATATTTCTGAATAGATTTCCCGCACTTTCATGCATCAGGTTTTTATGTCCATACTTGCATCATATGTCTCACCCTCAGAACTTACCAATCAGTAAAGTCACAATGAAAAGGACAGAGAACCTTTGGCTCATTAACAAAAGAATGTAAAGCTTGACTGCTTGCATTGCACCTCTTAGTGCCCCCTAAATCTCCATAGTTTGTTTTCTGATTGCCAAGCTACCTTGTACCCTTGTGGAACCAATTTCATTATTAATCTTCGTTATGACATATTTGTGATCTTATTCTCATGTTATTACAGAAATGACAGAACATAGTCTTCGAAGTTGTTCCTCAGGGACAGATGTGCAAACTATTATAATGTTTTTTGAAAAGTTGAGTTCATTTGAGAATAATTGGCTTTTAGTTAGTTAGAGTATGCTCTTTTGTTCTCTGAGAACACTTGATGTCGATTGGCTATAATTTATGCACAATGGTCTTTAGAGCTTGATGTCAAGATCAGCAAATGCAAAATGGGTGAAAGGTGCTGTTGTATCTATATAGGAAAGTTATTGTGTAGAAAGCCAATTCTGATCAAGTGATATTGTTGTGTTGTTAATTGTGAACAGGTGAATGGAAGTCTCTTGCCAGCCTCGGTAATTTCTGTCTACTGTGCCTATGTGTGTTATACTGGTCTTTCTAGTGAACCTCGAGACTATGTTTGCAATGGCCTACATAACAAATCCAGAGCTGTTTCCACTAGCACCCTTATCCTTGGATTGATCACTACTGTACTCTCAGTCTTGTATTCAGCTCTTCGTGCTGGCTCTTCAAAAGCATTTCTGTCACCTCCATCATCTCCAAGGGCAGGTATAAATACCCAAATATTTTTATAGAGATTCAAGCCTATTTGTTGTTTGCCTACGCTTTATTGTCAGATTCCGTGTGCTCATCTTAACTCGAAAGTATTAGTTCCTAAGTAAAAGCTATACAATTAATTCATGTGCACAGGTTTATTTCTTATCAGACTTGACATGAATCTTAAACTGGGATGCGTGAGCTTTTCTGGAATAATACAGTATACCTTCTTGTAGTGCTGCTGTAAACGCGCTGTGAACAATTAACTTTTTGTTCTTATCGTTTGTTCTCTGTTGCTCTACTCGTCACTATTTCCATAACCCTTAATTTTAGATCCGAATAAACCTTATTTCACGAATAAATTGCATCGACTGTAGATCAACTTACAGATGAAATCAACACCACTTACTATACCTGATATCCTCCTTGCTTGGAAGCATCGTGTTCTTGAACAATTAGACGTGTCCACTAAGGAAAATGGTGAACTTGTTTTGGCTGTAGATGAGTAAGATGACTGTATGATAAAGCATATATCTACTGGACTACTGGAGTGTAGTGACAAGAGTACAGGATCAATTGGGCGTATAGAGACTGTAGACTAGCAGAAATAAAATTTGTGGTCTCTGCAAGTTGATTATTCTAGATGGAAATTTGATGTGAGAGTTGAGTAATGTCTTGTTCTTTGAGTAAAAAGTTAGGGCTATGTGCCCTTGATTGTTTTAGTTACAAAATCTTATATTTGGTGGTCACGCAGGTGCAACTAACCCACTTCTGAGCTCAGAAGACACAGAAGCTGGCAACAAAAAGGATTCAGAATCCCGTCCCGTGAGTTATTCGTACACGTTCTTTCATCTAATATTTGCTCTGGCTAGCATGTACTCAGCCATGCTTCTATCGGGGTGGACCAGTTCATCAGACAGCTCTGATCTAATTGATGTTGGCTGGGCTTCTGTCTGGGTAAAGATCTGCACACAATGGGTAACTGCAGGACTTTACATCTGGTCTCTTGTGGCGCCTTTACTGATGCCAGATCGTGAATTCTTTTAGAAAATTCATCTTCTTTTATCAATATAAATCAATAGCCCGACTCTCAAACTGTTATATCATATCAATGACTCTTTGGCTTTCGGAACTTGTGTTAGGTAAGGAAGCATGTACAGGAACAGGATATAGGAAATGTCTGTGTAATTATTCCATCTCTCGTGTTAAAGTATGTATGATAGAGAAATTCTTAAACCATGTGGACGATAATATATACTGTACGTGTATGAAACTAGTGCAAGGAATGTGGTTTGTTATAAGTTATAACTGTCGTCAGGATTGACATTTTTCTTCCTTGAGGTTTTAAAAAACGCAAGTACCAAGTGTAATACAAAAAACGCTAAATGTAGAATAAGTTAATGACGCTATAAAAATTATAAGTCGAAAATACCCTT TTGATAGAAGGTTCATTACACTGAAAATTTATAAAAAAGATGATGAACCAATTGCCTATTGGGTCAGTGGAGATTGGAGCTGAACTTGGTAGGGAGGACCCGTGTTCGATCCCCGCAAGTCCGCAACAACCATTGGGAGGGGACTGAAACCTATCCATCCAGAATTCACCCCGAATTTAAATTAGCCTTAAGGGTGAACCAAGTGCTAATACCAAAAAAAAATAATGACAACAAGGCTATTGAAGTTTCTTTCTATTGATATTGCCCTCACATATTGTACTCCCCTTAGTCCCTTACCCCTTGTACCGGTCAAATTCAAGGCATAAAACGAATACCGAACTCGTCAGCTCTCCAGATACTCCGTAATTCTTTCTTCCCCAAATCAATAAAATCGTAAGATACAGCAAACACAGGAGCTAGAAAACCAGACAAACCCAGAAATCAAAGGAGAGAGAACGTGTGTGTGTGAGGTATGTCGTGCTTGTTTTCATGCTGCACATCCCTTGCGTGTGGGTGCTGCACATCAGTAGCATCTGGTATCACAAAGAAGTCAGCTCGAATAGCATACTGTGGCCTCTTTGGTTCTTCTCTTCTTATCTCCTGGATTCTTCGAGAAGTCGCTTCTCCTTTGTTGCAGAAATTACCTTGGATCAATAGTGCTGATCACACAAAGGAGTGGTACCAGACAAGTACGGTTCTTCGAGTCAGCTTGGGAAACTTTCTGTTTTTCGTGGTGCTTGCCATAATAATGATTGGTGTCAAGGACCAGAACGACAAACGTGATTCATGGCATCATGGAGGATGGATTGGGAAGATGGTTATCTGGCTTCTACTTATCGTTCTTATGTTTTTTATGCCGAATGTCATTGTAGATATATATGGTATTCTGTCAAAATTTGGCGCTGGACTATTTTTGTTGGTACAGGTTGTTTTACTATTGGATTTCACTTACGCTTGGAATGATGCTTGGGTTGAGAAAGATGAGCAAAAATGGTACATGGCTTTGCTTGCAGTATCAGTAGGGTGCTACATTGCTGCTTTTACTTTCTCTGGAATTTTGTTCATTTGGTTCAACCCCTCTGGCGAAGACTGTGGCCTTAATGTGTTCTTTATTGTCATGACCATGATTCTTGCTTTCGCATTTGGTGTCATTGCTTTGCATCCAAAGGTGAATGGAAGTCTCTTGCCAGCCTCGGTAATTTCTGTCTACTGTGCCTATGTGTGTTATACTGGTCTTTCTAGTGAACCTCGAGACTATGTTTGCAATGGCCTACATAACAAATCCAGAGCTGTTTCCACTAGCACCCTTATCCTTGGATTGATCACTACTGTACTCTCAGTCTTGTATTCAGCTCTTCGTGCTGGCTCTTCAAAAGCATTTCTGTCACCTCCATCATCTCCAAGGGCAGGTGCAACTAACCCACTTCTGAGCTCAGAAGACACAGAAGCTGGCAACAAAAAGGATTCAGAATCCCGTCCCGTGAGTTATTCGTACACGTTCTTTCATCTAATATTTGCTCTGGCTAGCATGTACTCAGCCATGCTTCTATCGGGGTGGACCAGTTCATCAGACAGCTCTGATCTAATTGATGTTGGCTGGGCTTCTGTCTGGGTAAAGATCTGCACACAATGGGTAACTGCAGGACTTTACATCTGGTCTCTTGTGGCGCCTTTACTGATGCCAGATCGTGAATTCTTTTAGAAAATTCATCTTCTTTTATCAATATAAATCAATAGCCCGACTCTCAAACTGTTATATCATATCAATGACTCTTTGGCTTTCGGAACTTGTGTTAGGTAAGGAAGCATGTACAGGAACAGGATATAGGAAATGTCTGTGTAATTATTCCATCTCTCGTGTTAAAGTATGTATGATAGAGAAATTCTTAAACCATGTGGACGATAATATATACTGTACGTGTATGAAACTAGTGCAAGGAATGTGGTTTGTTATAAGTTATAACTGTCGTCAGGATTGACATTTTTCTTCCTTGAGGTTTTAAAAAACGCAAGTACCAAGTGTAATACAAAAAACGCTAAATGTAGAATAAGTTAATGACGCTATAAAAATTATAAGTCGAAAATACCCTT ATGTCGTGCTTGTTTTCATGCTGCACATCCCTTGCGTGTGGGTGCTGCACATCAGTAGCATCTGGTATCACAAAGAAGTCAGCTCGAATAGCATACTGTGGCCTCTTTGGTTCTTCTCTTCTTATCTCCTGGATTCTTCGAGAAGTCGCTTCTCCTTTGTTGCAGAAATTACCTTGGATCAATAGTGCTGATCACACAAAGGAGTGGTACCAGACAAGTACGGTTCTTCGAGTCAGCTTGGGAAACTTTCTGTTTTTCGTGGTGCTTGCCATAATAATGATTGGTGTCAAGGACCAGAACGACAAACGTGATTCATGGCATCATGGAGGATGGATTGGGAAGATGGTTATCTGGCTTCTACTTATCGTTCTTATGTTTTTTATGCCGAATGTCATTGTAGATATATATGGTATTCTGTCAAAATTTGGCGCTGGACTATTTTTGTTGGTACAGGTTGTTTTACTATTGGATTTCACTTACGCTTGGAATGATGCTTGGGTTGAGAAAGATGAGCAAAAATGGTACATGGCTTTGCTTGCAGTATCAGTAGGGTGCTACATTGCTGCTTTTACTTTCTCTGGAATTTTGTTCATTTGGTTCAACCCCTCTGGCGAAGACTGTGGCCTTAATGTGTTCTTTATTGTCATGACCATGATTCTTGCTTTCGCATTTGGTGTCATTGCTTTGCATCCAAAGGTGAATGGAAGTCTCTTGCCAGCCTCGGTAATTTCTGTCTACTGTGCCTATGTGTGTTATACTGGTCTTTCTAGTGAACCTCGAGACTATGTTTGCAATGGCCTACATAACAAATCCAGAGCTGTTTCCACTAGCACCCTTATCCTTGGATTGATCACTACTGTACTCTCAGTCTTGTATTCAGCTCTTCGTGCTGGCTCTTCAAAAGCATTTCTGTCACCTCCATCATCTCCAAGGGCAGGTGCAACTAACCCACTTCTGAGCTCAGAAGACACAGAAGCTGGCAACAAAAAGGATTCAGAATCCCGTCCCGTGAGTTATTCGTACACGTTCTTTCATCTAATATTTGCTCTGGCTAGCATGTACTCAGCCATGCTTCTATCGGGGTGGACCAGTTCATCAGACAGCTCTGATCTAATTGATGTTGGCTGGGCTTCTGTCTGGGTAAAGATCTGCACACAATGGGTAACTGCAGGACTTTACATCTGGTCTCTTGTGGCGCCTTTACTGATGCCAGATCGTGAATTCTTTTAG MSCLFSCCTSLACGCCTSVASGITKKSARIAYCGLFGSSLLISWILREVASPLLQKLPWINSADHTKEWYQTSTVLRVSLGNFLFFVVLAIIMIGVKDQNDKRDSWHHGGWIGKMVIWLLLIVLMFFMPNVIVDIYGILSKFGAGLFLLVQVVLLLDFTYAWNDAWVEKDEQKWYMALLAVSVGCYIAAFTFSGILFIWFNPSGEDCGLNVFFIVMTMILAFAFGVIALHPKVNGSLLPASVISVYCAYVCYTGLSSEPRDYVCNGLHNKSRAVSTSTLILGLITTVLSVLYSALRAGSSKAFLSPPSSPRAGATNPLLSSEDTEAGNKKDSESRPVSYSYTFFHLIFALASMYSAMLLSGWTSSSDSSDLIDVGWASVWVKICTQWVTAGLYIWSLVAPLLMPDREFF Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo27008.1 vs. NCBI nr
Match: gi|902187341|gb|KNA10893.1| (hypothetical protein SOVF_140080 [Spinacia oleracea]) HSP 1 Score: 811.2 bits (2094), Expect = 8.100e-232 Identity = 409/409 (100.00%), Postives = 409/409 (100.00%), Query Frame = 1
BLAST of Spo27008.1 vs. NCBI nr
Match: gi|731364353|ref|XP_010693925.1| (PREDICTED: serine incorporator 3 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 757.7 bits (1955), Expect = 1.100e-215 Identity = 373/410 (90.98%), Postives = 397/410 (96.83%), Query Frame = 1
BLAST of Spo27008.1 vs. NCBI nr
Match: gi|225432518|ref|XP_002280143.1| (PREDICTED: serine incorporator 3 [Vitis vinifera]) HSP 1 Score: 686.0 bits (1769), Expect = 3.900e-194 Identity = 327/411 (79.56%), Postives = 378/411 (91.97%), Query Frame = 1
BLAST of Spo27008.1 vs. NCBI nr
Match: gi|590657526|ref|XP_007034589.1| (Serinc-domain containing serine and sphingolipid biosynthesis protein [Theobroma cacao]) HSP 1 Score: 682.2 bits (1759), Expect = 5.700e-193 Identity = 326/410 (79.51%), Postives = 373/410 (90.98%), Query Frame = 1
BLAST of Spo27008.1 vs. NCBI nr
Match: gi|823163770|ref|XP_012481827.1| (PREDICTED: probable serine incorporator [Gossypium raimondii]) HSP 1 Score: 679.9 bits (1753), Expect = 2.800e-192 Identity = 323/410 (78.78%), Postives = 371/410 (90.49%), Query Frame = 1
BLAST of Spo27008.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QW00_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_140080 PE=4 SV=1) HSP 1 Score: 811.2 bits (2094), Expect = 5.700e-232 Identity = 409/409 (100.00%), Postives = 409/409 (100.00%), Query Frame = 1
BLAST of Spo27008.1 vs. UniProtKB/TrEMBL
Match: D7T6Q6_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_05s0020g02600 PE=4 SV=1) HSP 1 Score: 686.0 bits (1769), Expect = 2.700e-194 Identity = 327/411 (79.56%), Postives = 378/411 (91.97%), Query Frame = 1
BLAST of Spo27008.1 vs. UniProtKB/TrEMBL
Match: A0A061EKE8_THECC (Serinc-domain containing serine and sphingolipid biosynthesis protein OS=Theobroma cacao GN=TCM_020499 PE=4 SV=1) HSP 1 Score: 682.2 bits (1759), Expect = 4.000e-193 Identity = 326/410 (79.51%), Postives = 373/410 (90.98%), Query Frame = 1
BLAST of Spo27008.1 vs. UniProtKB/TrEMBL
Match: A0A0D2PM95_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_005G040500 PE=4 SV=1) HSP 1 Score: 679.9 bits (1753), Expect = 2.000e-192 Identity = 323/410 (78.78%), Postives = 371/410 (90.49%), Query Frame = 1
BLAST of Spo27008.1 vs. UniProtKB/TrEMBL
Match: B9RSR7_RICCO (Membrane protein PB1A10.07c, putative OS=Ricinus communis GN=RCOM_0678100 PE=4 SV=1) HSP 1 Score: 671.8 bits (1732), Expect = 5.400e-190 Identity = 322/409 (78.73%), Postives = 369/409 (90.22%), Query Frame = 1
BLAST of Spo27008.1 vs. ExPASy Swiss-Prot
Match: SERC3_PONAB (Serine incorporator 3 OS=Pongo abelii GN=SERINC3 PE=2 SV=1) HSP 1 Score: 186.8 bits (473), Expect = 4.700e-46 Identity = 140/463 (30.24%), Postives = 229/463 (49.46%), Query Frame = 1
BLAST of Spo27008.1 vs. ExPASy Swiss-Prot
Match: SERC3_HUMAN (Serine incorporator 3 OS=Homo sapiens GN=SERINC3 PE=2 SV=2) HSP 1 Score: 185.3 bits (469), Expect = 1.400e-45 Identity = 139/463 (30.02%), Postives = 229/463 (49.46%), Query Frame = 1
BLAST of Spo27008.1 vs. ExPASy Swiss-Prot
Match: SERIC_DICDI (Probable serine incorporator OS=Dictyostelium discoideum GN=serinc PE=3 SV=1) HSP 1 Score: 183.3 bits (464), Expect = 5.200e-45 Identity = 123/410 (30.00%), Postives = 207/410 (50.49%), Query Frame = 1
BLAST of Spo27008.1 vs. ExPASy Swiss-Prot
Match: SERIC_NEMVE (Probable serine incorporator OS=Nematostella vectensis GN=serinc PE=3 SV=1) HSP 1 Score: 180.3 bits (456), Expect = 4.400e-44 Identity = 149/445 (33.48%), Postives = 218/445 (48.99%), Query Frame = 1
BLAST of Spo27008.1 vs. ExPASy Swiss-Prot
Match: SERIC_MONBE (Probable serine incorporator OS=Monosiga brevicollis GN=serinc PE=3 SV=1) HSP 1 Score: 174.5 bits (441), Expect = 2.400e-42 Identity = 140/468 (29.91%), Postives = 223/468 (47.65%), Query Frame = 1
BLAST of Spo27008.1 vs. TAIR (Arabidopsis)
Match: AT3G06170.1 (Serinc-domain containing serine and sphingolipid biosynthesis protein) HSP 1 Score: 637.1 bits (1642), Expect = 7.400e-183 Identity = 313/409 (76.53%), Postives = 360/409 (88.02%), Query Frame = 1
BLAST of Spo27008.1 vs. TAIR (Arabidopsis)
Match: AT1G16180.1 (Serinc-domain containing serine and sphingolipid biosynthesis protein) HSP 1 Score: 542.3 bits (1396), Expect = 2.500e-154 Identity = 261/410 (63.66%), Postives = 319/410 (77.80%), Query Frame = 1
BLAST of Spo27008.1 vs. TAIR (Arabidopsis)
Match: AT3G24460.1 (Serinc-domain containing serine and sphingolipid biosynthesis protein) HSP 1 Score: 208.4 bits (529), Expect = 8.500e-54 Identity = 123/388 (31.70%), Postives = 202/388 (52.06%), Query Frame = 1
BLAST of Spo27008.1 vs. TAIR (Arabidopsis)
Match: AT2G33205.1 (Serinc-domain containing serine and sphingolipid biosynthesis protein) HSP 1 Score: 203.0 bits (515), Expect = 3.600e-52 Identity = 122/383 (31.85%), Postives = 200/383 (52.22%), Query Frame = 1
BLAST of Spo27008.1 vs. TAIR (Arabidopsis)
Match: AT4G13345.1 (Serinc-domain containing serine and sphingolipid biosynthesis protein) HSP 1 Score: 203.0 bits (515), Expect = 3.600e-52 Identity = 115/389 (29.56%), Postives = 195/389 (50.13%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo27008.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo27008.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo27008.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo27008.1 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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