Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TTGTATATCTTAAGGATTCCATGAATCTCTGCTGTAAACCATATTAGTTCATTGTAAGAATCTGAGCTTTTAATACAAGTTACTGTCAGATTGTTGTGTTCTTCCCAGAAGTCTGCAGCTGTGTTCTTTTCTCCAATCATCTTCTTCAACAATTGGTATGCAACGTTTTCTCTCTCCTCTTTAAAGCTGCATTCTTGAATTTATTGCATTGATTATCTTAATCTAGCTTGTATAAGTATGAAGATCTCTTCAGCTTGTGTGATCTTCATTAAATTCAATTTCCAACTTTTGACAAAAAAAGTTCGGGTCAAAGTTGAAAATTGCAGTATGTTATTCCATGTAGACAGATGTAATCATCGTCCAAGCCATAATCTAGACACAATGATTTAACTAAAAATTCTGATACTGTATTAATAGACATGACTATTATTTCCAGACAGAGTTGGTAATACTTTGATAGAATACTACCGGGTTTTTTTTTATCAGTATTTAACTATACATAGAAATATTTTGTAAGAGATTGATCAGTATTATATCAGCTTCATCAGACTCAAAATGTTGCTTGTTTGCAAATTTTTTTGTGGCATTATGCTTTGTGGATAAAGTGATGACTAGATACTGAATCATGTGGCTGTTCTTAATTAACTTGCTCTAATGATTCAGAGAATTTTGGCAGGTGGGACTGAAGATGTATGTGGTAGAGAGTAAAACAGGAGCTATACTGTGCATGCTTCTCTCTCTAATCTTCTTAGGGACATGGCCTGCTGTTTTGGCTTACCTTGAAAGGCGTGGCCGCCTTCCTCAACATACTTATCTTGATTATGCTCTTACTAATCTCCTAGCTGCCGTGTTTATAGCACTCACATTAGGTGAGATTGGAGAGACCAAACCAGGCATGCCAAATTTCTTAACTCAACTCTTTCAGGTAATTTTTTCTTATTGAGAACATTTTACTAGGATCCTCATATTTTAGGCTTAGAGATTGATTCCAAAATCATGTTAACAGAAATCTATTTTCCATTAGCAACAATGTTTTAATTTTTTTGAACGTGATAGGTTCAAGAGAATTGGCCTTCGGTGTTGTTTGCAATGGCTGGAGGAGTTGCTCTTAGTGTAGGGAATCTATCTATACAGTATGCTATGGCTTTAGCTGGGTTATCAGTTGTTGAGGTTGTAAGTGCTAGCATTACCGTTGTCATAGGTTCGTGTTTTTCCTTCTTTCCTATAACAACATCCACATCACCTCCTTTTGTGATTAAGAATCGCATTTAGGATGTCAGAAAAAGTTGCTATCTTCCCTAATATAGTAATGATGGCCTACAATTAAACTTTCCAACTTATGTTTCAGAATCTGTTATTTTGAAACAACTGGAATTGAAACTTCCTTTTTTACATTATCAGGAACCACAGTAAACTATTTCCTGGATGACAGAATAAATAAGGCAGAAATCCTTTTCCCTGGAGTAGGTTGTTTTCTGATTGCAGTGTTCGTGGGCTCGGCTGTTCACAAATCTAATGATGCTGATAATACTGCAAAACTCAAAAATTTGGAAAGTAAACTAGAAGAACAGGAAAGGTACACACTGTCTGAACTATGATAAAGAACTCATTGCAAGAGAGATTATTAGGATTTTGTGAAACATGAATAGACTATGAAAGTATGAAGTGTACTAGTAACCAAGTTGTCGGATTGTGTACTTGCCACAATATTTCAGACTAGTGACGCCACCAAAACCGACTTTTGACAGGAAATCCGATATTTCAGCCTCAGATGGAACATCTGCTCATAAAGGTTGAGGAATTAGGACATTTTGTGTTACATATAGGGCATGTCCATCTCTAGGTTAGGACTAGGAATAGAATATCTCAACCTCCACTTTACTTTCAGTTTCTATCGACCTTGAAAAGACAAATGAACCTACAAAGGAGCCGGAGTTTGGAACTGCAAAGTTCCTCATTCAGCTTGAGGAAAAAAGATCCATAAAGGTCAGTTGCTTAGTCTTGATGGAGGTTGGTTATGTATGATGATTTAATGTATGCTTAAGTTATCTCATTCGTAATCTATTTGCAGGTGTTTGGCAGGAGTATTTGGATCGGTTTAGCAATAACATTTTTTGCTGGAATTTGTTACTCCTTTTTTTCTCCACTATTCAATATAGCAACCAATGACCAGTTTCACCGTTTGAGGAAAGGAGTGCCTCATTTGGTTGTTTATACCGCTTTCTTCTACTTTTCCATCTCCTCTTTTGCAATTGCACTCATCTTGAATGTCACCTTCCTATTTCACCCTATTTTGGGATTGCCAAAGTCATCATTTGATGCCTACTTTAAGGACTGGAATGGTCGAGGATGGGCCCTTTTGGCTGGCTTACTCTGTGGATTTGGAAATGGTCTTCAGTTTATGGGAGGTCAGGCTGCAGGATATGCTGCAGCTGATGCTGTTCAGGTCAGTCAAAACGTCGAAACTTACATTTATCTTGTATTTTGTTGGTTTATAGAGAGATGAGAGTCATGTAGGGTAATGATGCAGACGAGATTCAATAGTTTCTTGTTAACAATTTCTTTGTGTTTTGTGTATGAATTATCAGGCACTTCCATTGGTGAGCACCTTTTGGGGAGTAGTTGCTTTTGGAGAATACAGGAAATCAACAAGAAAAACATACACACTACTTGTAAGCATGTTATTAATGTTCATCATTGCAGTTGGAATCCTAATGGCATCATCAGGGCATAGAAAGTCATAATCTGGCAACAAAAATTGTCCCATTGTTAATGTATTTTACTGATGAAGACATACAATCATACAACAATCTTGATTCAGTAATCAGTAGTGATTCGTGGTTGTTTAGACTGAGATGTGAAATATATGTTCAGATTGAAACTTTATCAGATGTTCATAGTTGATTGCCAAGGAAATTTGTGGGTTGGGTTGAGAGAAACTGTCAAACTTTCCTTGAAAGTAGCAGCAGTTGTTTTTGGAAACCGGAAGAAGTACAAATTTTTAAATCAATTCCTTAATCCTTGTAAAATTTGGAAGTAATTTGTATTAGCTCCTTGCTAATTTTGCAATCCCATTGGTTTTGATTTTGTTTTTCTTTTTCTTTCCGTTTTTCGGTTAAAAGATAGAATGAGACTCAAGATGTATTGTTTTCTACTTGTATCATACTTGTTTTCAACTCCATATATTGCATTGTGGATTTGTGGTTGATTTGTGCACTCTTGTCAAGTTGCAACATTTTTGGAACATAAAAAAGTATATTCCAACTATAAGATGATGTTTATTCAAATTCTCCACGCTCATAGGAGTACGTACTTCATATTTTCTTCTTCTATGATACAATGTTAATTCAAAAAAAAAAAAGCAAGGTATGACTTGGTAATGTGTTCGATTGAAATTGGTTTGCGCTAAGAAGAAACCATTTTTTGACCTCCTGATGGTGCTCGACTGTATGATTTGGTAATGTGTCCTCTAAATCACAAGGTAAGTTGAGTTCCCTACCAACTTCAACAAGGTTAGTGTTGAATCTTCTTCATTTAGTTTCACCCATTTTATATCCTGAGAATTAGACATCTTGGTTAGGGGAAAACAAATCTTAAAATCCTCTTATTTTTTCCCTTCATACATTCAAAACCATTGATTAAGAAATGAACCATCCATTTCATTTAGAAAAGTAAGAAGATCCCTTCCACATAACCCTTCCTTACTATCACGTTGCTCTCAACTTTGACGTAGTTAGTCAGGCTGACTAACACGTTTTAAATTTTCAATTTTTTTTTTCTTTAAAGGTAAGATGAAGAGCTCTATTAGGTCGAAATTCCACATAAATTCACCCTTACAGATTAACAAAAGGAAAATTTGGTAATATTAATCCAACCTTTGGCCGATTTTCTTTTATTAATCCCACCTACGACATATTTTTTAATAATCCCACCTTTACTACCCGACGACTTTTATTGGGCTTAAGTGGCCGGTAATCGGTGAAAAAGTCAACGAGATGGTGATGAATTGATGATGATGACTGAATATATCGAGAGAGAGTACTGCCATGTAGAGAAATAATGCCGCTTACAACAGTTTTATGACCTGTTGGGCCCAATAAAAGTTGTTGGGTAATAAAGTGGGATTATTAAAAAATATGTCGTAGGTGGGCTTAATAAAAGAAAATCGGTCAAAGGTTGGATTAATATTACCAAATTTTCGTTAACAAAATAGACACTATAAGAGTGGGGTTTCAAATTTTCTATACAGTCCCCTTCCTGAGGATAAAAAAAAAATCTTAACCAACCTTATACGTTCAAGATTGCAGTGGGCCCTGTCAAGTGAGACAAAATTGCCATATCGGCCGCTCTAATTGACTCATACGTGGGTTGTTACAGAATCACCGAAGTGCTGGCAATAAGGAAATTAATAAAAGATTCTATCATTTTCAAAAGATTCCAAAAGTCAACGCATCTCCATAACTTTGCAAAGATGAGCCTATCATAGATTTACGTTTACCCACCCAAACAAACTATTCCATGATCAGTTGATCACAAAATTACAAATTTTCAGTCTATTCTCTCACTCTTTTTATAAGTAGTAATCCAAAATTCTGGAAAAATAAAACAATTCATTACAGTTTTATCAATTGTTAATCCCCTTTTCAGTCGACATCACATCAAATACATTTGGGAAGCTTTCTTGTTCATACATTGTACAGATTAATTATTTAAGGTATGGGACTTCTTTATGGGACATTTTTTTAGATTGATGATTTTTACATTCAAAACTCAAAAGTATTGTCTCATTTTGCTGTCTTGTGGGTTTTTATTAATTATTCTTGTCAATGGAAGATATCATTGTATGATCCTGTTTATCCTATTCTTCATTTTTGCTAAATTTCCTGATTTTTCTTATATTTTTCTGCTTAATTTCCTGAAGAATTTGCATATTTTCACATTTTCCCTCTTTTCTTAAATCTGGGGTTTTGAATTATCCTACCATGCTTCATGTTAATCATGTTATCATTTAATTAGGTGTTTTTTTCCCTCTTTTTCCATTGGGTGTTTCATGCTATGTTTGTACATCAAGATTGAATTTTGTCAAAAAAAAAAGAGAGTAAAATATTGTTAAAAAAAAATACTGAATTTTATCGAAAATAAGAACTTAAGACATGATTGAATTTTGTTATTAGTGCTATTTCCAAAAATGAAAGAAAATTAAAGCTAGCAATTTCATTCTGTTTGAATTTTAAATTATGTAAATTTGATGATGAAAAATGTGTGATAATCAGGAGGAAGGAAGCCCAATAATAAGAGTGATAGAGAAGATAACAAAGAGGATTTTGTCAAGTGGTTTAGAAATGTTTGTGGTTGAAAGCAAAGGAGGAGCAATAGTATGTATGCTCATGTCTTTGCTGTTCTTGGGTACATGGCCTGCTGTGTTAGCCTTCCTCGAAAGGCGTGGCCGTCTTCCTCAACACTCTTATCTTGATTACTCCATTACCAATCTCTTGGCTGCTGTTATCATTGCTCTTACTCTTGGTCAGATGGGAGATGCTAAACCTGGCATGCCTAATTTCATCACCCAACTTTATCAGGTCACCTATTTTCTTTACAATTCATAAAATTTGTTTTTCATGTTTTGATTTTCTTAGATTTGTTTTAGTACTAGGTGAATTGATATCTAAGGACAATGATCTATGGTTTTGTTTTGTTAGATTTCTTGTGATCACACAACCTTACATATGTTCTCACTGTTTTATGCACTTAATATTTCCTAGTCTAGTGTCATACTTATCTTCATTTCGAATGGCAAAGAGAGTTAATCCTATTACAGAACTCGTCAACTCTCGCAGTTCATGTCTAAAACTCAAAACCAACAGAAATTAGAAGATATGTAACCAAGTTAAGGAACTTCAATATTGAGTTAACTTCGCAGCTCACCGATACTTAACATATTCATGAAGTTACAGGGAGATGAATATTTTCTGTTTCGTGACAGAAATAGTGATGGTTTATAAACCTTATTAAGGGTGGTTGTTGCAGGATAACTGGGCCTCAGTGTTATTCGCAATGGCAGGTGGAGTAGTCCTCTCTATCGGGAACCTATCCACACAATATGCTTGGGCACTAGTAGGTTTATCAGTAGTAGAGGTGGTCTCTGCTAGCATTACTGTTGTAATAGGTAATTTCCTGAAAGTTCATGAATAAGGTTATCAGTAGAAGTGGATTTTTGTTACTGAGGTGTTCACTATGGTGTGCTTTCGGTATTTTCAGGCACCACATTGAACTATTTCCTGGATGACAAAATTAACAAGGCTGACATCCTTTTCCCTGGTGTCGCGTGTTTTCTTGTTGCTGTCATTTTGGGTTCACTTGTTCACTCATCTAATGCGTCTGACAACAAGAAAAAACTCGGTGATCTGCCAACTGGTTCTGAAGACAAGGCAGAGTACACTTCTTTTCTTGTATTGTTTTTCATCTTACAAAAACATATTCATTACCATGAAACAGAATGACTATTTTCATTCTAAGACAAAACAATCAAATTTGACAGTAAAAAATCAGCTACGATGGATCCTGAAAACGGTGAAATGACCAAGGTAGAAGGGGCACAGTTCGGGACTGCAGAATTCCTCATCGAACTTGAGAATAAGAGATCCATAAAGGTATATTACTTCATCAACTGCAACAAAATTCCAGAAATGACCTATTAAGGTTGTTTTCAGCAATTAGCAGTAATTTGCAGCTTAGTTGACATATAACATCAGATACTATCACAAGATTTACCACTGATACTTAGCATCTAGACATTTCAGTAGCAAATTTGACTAGCCTTCTTTTAGTTCTTATGTTGTATACAACAGTTATCTATCAGTTGATTTCAATTCCATCACTTGTAGGTGTTTGATAGGAGCATTTGGCTTGGACTTGCTATAACTTTCTTTTCCGGGATCTGCTTCTCTCTCTTCTCACCGTTCTTCAACCTAGCAACAAACGATCAATTCCACCTCCTAGAGAAAGGGGTTCCTCATTTGGTGGTTTACACTGCTTTCTTCTACTTCTCAGTGTGTTGTTTCGTGGTTGCAATTGTTTTGAACATCATATTCCTATACCGTCCTATTTTGAACTTGCCAAAGTCATCATTTAAGGCCTACTTAGCAGACTCGAAAGGAAGAGGATGGGCCTTACTTGCAGGTTTACTTTGTGGTTTTGGGAATGGCCTTCAGTTCATGGGAGGTCAGGCTGCTGGTTATGCTGCAGCTGATGCTGTTCAGGTATAACTTATAAGCATAACTTGTTTCCATTTTTGGAAGTTAATTGTCATATATCTAATTAACTTGTTTCCATTTTTGGATGTTATTTTCAGGCACTTCCTCTAGTGAGCACATTTTGGGCCATACTGTTATTTGGAGAGTACAGAAAATCATCAAGACGAACATATATATTATTAGTTAGCATGTTGCTGATGTTCATTGTAGCTGTTGGTGTCCTCATGGCATCTGCAGGACACAGGAAATGATTTAGCTTCAAAGAAATGTAAATATTATTAGTAGGCCTTTCCTAATGCAAAAGTGCAGATTTTATGTTTCG TTGTATATCTTAAGGATTCCATGAATCTCTGCTGTAAACCATATTAGTTCATTGTAAGAATCTGAGCTTTTAATACAAGTTACTGTCAGATTGTTGTGTTCTTCCCAGAAGTCTGCAGCTGTGTTCTTTTCTCCAATCATCTTCTTCAACAATTGGTGGGACTGAAGATGTATGTGGTAGAGAGTAAAACAGGAGCTATACTGTGCATGCTTCTCTCTCTAATCTTCTTAGGGACATGGCCTGCTGTTTTGGCTTACCTTGAAAGGCGTGGCCGCCTTCCTCAACATACTTATCTTGATTATGCTCTTACTAATCTCCTAGCTGCCGTGTTTATAGCACTCACATTAGGTGAGATTGGAGAGACCAAACCAGGCATGCCAAATTTCTTAACTCAACTCTTTCAGGTTCAAGAGAATTGGCCTTCGGTGTTGTTTGCAATGGCTGGAGGAGTTGCTCTTAGTGTAGGGAATCTATCTATACAGTATGCTATGGCTTTAGCTGGGTTATCAGTTGTTGAGGTTGTAAGTGCTAGCATTACCGTTGTCATAGGAACCACAGTAAACTATTTCCTGGATGACAGAATAAATAAGGCAGAAATCCTTTTCCCTGGAGTAGGTTGTTTTCTGATTGCAGTGTTCGTGGGCTCGGCTGTTCACAAATCTAATGATGCTGATAATACTGCAAAACTCAAAAATTTGGAAAGTAAACTAGAAGAACAGGAAAGGAAATCCGATATTTCAGCCTCAGATGGAACATCTGCTCATAAAGGTTGAGGAATTAGGACATTTTGTGTTACATATAGGGCATGTCCATCTCTAGGTTAGGACTAGGAATAGAATATCTCAACCTCCACTTTACTTTCAGTTTCTATCGACCTTGAAAAGACAAATGAACCTACAAAGGAGCCGGAGTTTGGAACTGCAAAGTTCCTCATTCAGCTTGAGGAAAAAAGATCCATAAAGGTGTTTGGCAGGAGTATTTGGATCGGTTTAGCAATAACATTTTTTGCTGGAATTTGTTACTCCTTTTTTTCTCCACTATTCAATATAGCAACCAATGACCAGTTTCACCGTTTGAGGAAAGGAGTGCCTCATTTGGTTGTTTATACCGCTTTCTTCTACTTTTCCATCTCCTCTTTTGCAATTGCACTCATCTTGAATGTCACCTTCCTATTTCACCCTATTTTGGGATTGCCAAAGTCATCATTTGATGCCTACTTTAAGGACTGGAATGGTCGAGGATGGGCCCTTTTGGCTGGCTTACTCTGTGGATTTGGAAATGGTCTTCAGTTTATGGGAGGTCAGGCTGCAGGATATGCTGCAGCTGATGCTGTTCAGGCACTTCCATTGGTGAGCACCTTTTGGGGAGTAGTTGCTTTTGGAGAATACAGGAAATCAACAAGAAAAACATACACACTACTTGAGGAAGGAAGCCCAATAATAAGAGTGATAGAGAAGATAACAAAGAGGATTTTGTCAAGTGGTTTAGAAATGTTTGTGGTTGAAAGCAAAGGAGGAGCAATAGTATGTATGCTCATGTCTTTGCTGTTCTTGGGTACATGGCCTGCTGTGTTAGCCTTCCTCGAAAGGCGTGGCCGTCTTCCTCAACACTCTTATCTTGATTACTCCATTACCAATCTCTTGGCTGCTGTTATCATTGCTCTTACTCTTGGTCAGATGGGAGATGCTAAACCTGGCATGCCTAATTTCATCACCCAACTTTATCAGGATAACTGGGCCTCAGTGTTATTCGCAATGGCAGGTGGAGTAGTCCTCTCTATCGGGAACCTATCCACACAATATGCTTGGGCACTAGTAGGTTTATCAGTAGTAGAGGTGGTCTCTGCTAGCATTACTGTTGTAATAGGCACCACATTGAACTATTTCCTGGATGACAAAATTAACAAGGCTGACATCCTTTTCCCTGGTGTCGCGTGTTTTCTTGTTGCTGTCATTTTGGGTTCACTTGTTCACTCATCTAATGCGTCTGACAACAAGAAAAAACTCGGTGATCTGCCAACTGGTTCTGAAGACAAGGCAGATAAAAAATCAGCTACGATGGATCCTGAAAACGGTGAAATGACCAAGGTAGAAGGGGCACAGTTCGGGACTGCAGAATTCCTCATCGAACTTGAGAATAAGAGATCCATAAAGGTGTTTGATAGGAGCATTTGGCTTGGACTTGCTATAACTTTCTTTTCCGGGATCTGCTTCTCTCTCTTCTCACCGTTCTTCAACCTAGCAACAAACGATCAATTCCACCTCCTAGAGAAAGGGGTTCCTCATTTGGTGGTTTACACTGCTTTCTTCTACTTCTCAGTGTGTTGTTTCGTGGTTGCAATTGTTTTGAACATCATATTCCTATACCGTCCTATTTTGAACTTGCCAAAGTCATCATTTAAGGCCTACTTAGCAGACTCGAAAGGAAGAGGATGGGCCTTACTTGCAGGTTTACTTTGTGGTTTTGGGAATGGCCTTCAGTTCATGGGAGGTCAGGCTGCTGGTTATGCTGCAGCTGATGCTGTTCAGGCACTTCCTCTAGTGAGCACATTTTGGGCCATACTGTTATTTGGAGAGTACAGAAAATCATCAAGACGAACATATATATTATTAGTTAGCATGTTGCTGATGTTCATTGTAGCTGTTGGTGTCCTCATGGCATCTGCAGGACACAGGAAATGATTTAGCTTCAAAGAAATGTAAATATTATTAGTAGGCCTTTCCTAATGCAAAAGTGCAGATTTTATGTTTCG ATGGGAGGTCAGGCTGCAGGATATGCTGCAGCTGATGCTGTTCAGGCACTTCCATTGGTGAGCACCTTTTGGGGAGTAGTTGCTTTTGGAGAATACAGGAAATCAACAAGAAAAACATACACACTACTTGAGGAAGGAAGCCCAATAATAAGAGTGATAGAGAAGATAACAAAGAGGATTTTGTCAAGTGGTTTAGAAATGTTTGTGGTTGAAAGCAAAGGAGGAGCAATAGTATGTATGCTCATGTCTTTGCTGTTCTTGGGTACATGGCCTGCTGTGTTAGCCTTCCTCGAAAGGCGTGGCCGTCTTCCTCAACACTCTTATCTTGATTACTCCATTACCAATCTCTTGGCTGCTGTTATCATTGCTCTTACTCTTGGTCAGATGGGAGATGCTAAACCTGGCATGCCTAATTTCATCACCCAACTTTATCAGGATAACTGGGCCTCAGTGTTATTCGCAATGGCAGGTGGAGTAGTCCTCTCTATCGGGAACCTATCCACACAATATGCTTGGGCACTAGTAGGTTTATCAGTAGTAGAGGTGGTCTCTGCTAGCATTACTGTTGTAATAGGCACCACATTGAACTATTTCCTGGATGACAAAATTAACAAGGCTGACATCCTTTTCCCTGGTGTCGCGTGTTTTCTTGTTGCTGTCATTTTGGGTTCACTTGTTCACTCATCTAATGCGTCTGACAACAAGAAAAAACTCGGTGATCTGCCAACTGGTTCTGAAGACAAGGCAGATAAAAAATCAGCTACGATGGATCCTGAAAACGGTGAAATGACCAAGGTAGAAGGGGCACAGTTCGGGACTGCAGAATTCCTCATCGAACTTGAGAATAAGAGATCCATAAAGGTGTTTGATAGGAGCATTTGGCTTGGACTTGCTATAACTTTCTTTTCCGGGATCTGCTTCTCTCTCTTCTCACCGTTCTTCAACCTAGCAACAAACGATCAATTCCACCTCCTAGAGAAAGGGGTTCCTCATTTGGTGGTTTACACTGCTTTCTTCTACTTCTCAGTGTGTTGTTTCGTGGTTGCAATTGTTTTGAACATCATATTCCTATACCGTCCTATTTTGAACTTGCCAAAGTCATCATTTAAGGCCTACTTAGCAGACTCGAAAGGAAGAGGATGGGCCTTACTTGCAGGTTTACTTTGTGGTTTTGGGAATGGCCTTCAGTTCATGGGAGGTCAGGCTGCTGGTTATGCTGCAGCTGATGCTGTTCAGGCACTTCCTCTAGTGAGCACATTTTGGGCCATACTGTTATTTGGAGAGTACAGAAAATCATCAAGACGAACATATATATTATTAGTTAGCATGTTGCTGATGTTCATTGTAGCTGTTGGTGTCCTCATGGCATCTGCAGGACACAGGAAATGA MGGQAAGYAAADAVQALPLVSTFWGVVAFGEYRKSTRKTYTLLEEGSPIIRVIEKITKRILSSGLEMFVVESKGGAIVCMLMSLLFLGTWPAVLAFLERRGRLPQHSYLDYSITNLLAAVIIALTLGQMGDAKPGMPNFITQLYQDNWASVLFAMAGGVVLSIGNLSTQYAWALVGLSVVEVVSASITVVIGTTLNYFLDDKINKADILFPGVACFLVAVILGSLVHSSNASDNKKKLGDLPTGSEDKADKKSATMDPENGEMTKVEGAQFGTAEFLIELENKRSIKVFDRSIWLGLAITFFSGICFSLFSPFFNLATNDQFHLLEKGVPHLVVYTAFFYFSVCCFVVAIVLNIIFLYRPILNLPKSSFKAYLADSKGRGWALLAGLLCGFGNGLQFMGGQAAGYAAADAVQALPLVSTFWAILLFGEYRKSSRRTYILLVSMLLMFIVAVGVLMASAGHRK Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo10370.1 vs. NCBI nr
Match: gi|902236278|gb|KNA24308.1| (hypothetical protein SOVF_016680 [Spinacia oleracea]) HSP 1 Score: 887.9 bits (2293), Expect = 7.700e-255 Identity = 462/462 (100.00%), Postives = 462/462 (100.00%), Query Frame = 1
BLAST of Spo10370.1 vs. NCBI nr
Match: gi|731339151|ref|XP_010680698.1| (PREDICTED: ureide permease 1-like isoform X3 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 690.6 bits (1781), Expect = 1.800e-195 Identity = 363/407 (89.19%), Postives = 377/407 (92.63%), Query Frame = 1
BLAST of Spo10370.1 vs. NCBI nr
Match: gi|731339145|ref|XP_010680695.1| (PREDICTED: ureide permease 1-like isoform X1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 688.7 bits (1776), Expect = 6.900e-195 Identity = 363/414 (87.68%), Postives = 378/414 (91.30%), Query Frame = 1
BLAST of Spo10370.1 vs. NCBI nr
Match: gi|590699243|ref|XP_007045875.1| (Ureide permease 2 isoform 1 [Theobroma cacao]) HSP 1 Score: 598.6 bits (1542), Expect = 9.300e-168 Identity = 315/441 (71.43%), Postives = 362/441 (82.09%), Query Frame = 1
BLAST of Spo10370.1 vs. NCBI nr
Match: gi|590699255|ref|XP_007045877.1| (Ureide permease 2 isoform 3 [Theobroma cacao]) HSP 1 Score: 596.3 bits (1536), Expect = 4.600e-167 Identity = 308/418 (73.68%), Postives = 355/418 (84.93%), Query Frame = 1
BLAST of Spo10370.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RXX2_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_016680 PE=4 SV=1) HSP 1 Score: 887.9 bits (2293), Expect = 5.400e-255 Identity = 462/462 (100.00%), Postives = 462/462 (100.00%), Query Frame = 1
BLAST of Spo10370.1 vs. UniProtKB/TrEMBL
Match: A0A0J8C9K6_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_6g136550 PE=4 SV=1) HSP 1 Score: 690.6 bits (1781), Expect = 1.300e-195 Identity = 363/407 (89.19%), Postives = 377/407 (92.63%), Query Frame = 1
BLAST of Spo10370.1 vs. UniProtKB/TrEMBL
Match: A0A061EBF9_THECC (Ureide permease 2 isoform 1 OS=Theobroma cacao GN=TCM_011542 PE=4 SV=1) HSP 1 Score: 598.6 bits (1542), Expect = 6.500e-168 Identity = 315/441 (71.43%), Postives = 362/441 (82.09%), Query Frame = 1
BLAST of Spo10370.1 vs. UniProtKB/TrEMBL
Match: A0A061EHG1_THECC (Ureide permease 2 isoform 3 OS=Theobroma cacao GN=TCM_011542 PE=4 SV=1) HSP 1 Score: 596.3 bits (1536), Expect = 3.200e-167 Identity = 308/418 (73.68%), Postives = 355/418 (84.93%), Query Frame = 1
BLAST of Spo10370.1 vs. UniProtKB/TrEMBL
Match: A0A0D2W4E0_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_013G093800 PE=4 SV=1) HSP 1 Score: 587.0 bits (1512), Expect = 2.000e-164 Identity = 299/408 (73.28%), Postives = 351/408 (86.03%), Query Frame = 1
BLAST of Spo10370.1 vs. ExPASy Swiss-Prot
Match: UPS2_ARATH (Ureide permease 2 OS=Arabidopsis thaliana GN=UPS2 PE=1 SV=2) HSP 1 Score: 559.7 bits (1441), Expect = 3.000e-158 Identity = 286/398 (71.86%), Postives = 332/398 (83.42%), Query Frame = 1
BLAST of Spo10370.1 vs. ExPASy Swiss-Prot
Match: UPS1_ARATH (Ureide permease 1 OS=Arabidopsis thaliana GN=UPS1 PE=1 SV=1) HSP 1 Score: 550.4 bits (1417), Expect = 1.800e-155 Identity = 287/396 (72.47%), Postives = 335/396 (84.60%), Query Frame = 1
BLAST of Spo10370.1 vs. ExPASy Swiss-Prot
Match: UPS5_ARATH (Ureide permease 5 OS=Arabidopsis thaliana GN=UPS5 PE=1 SV=1) HSP 1 Score: 516.2 bits (1328), Expect = 3.800e-145 Identity = 270/408 (66.18%), Postives = 329/408 (80.64%), Query Frame = 1
BLAST of Spo10370.1 vs. ExPASy Swiss-Prot
Match: UPS4_ARATH (Ureide permease 4 OS=Arabidopsis thaliana GN=UPS4 PE=2 SV=2) HSP 1 Score: 513.1 bits (1320), Expect = 3.200e-144 Identity = 266/401 (66.33%), Postives = 323/401 (80.55%), Query Frame = 1
BLAST of Spo10370.1 vs. ExPASy Swiss-Prot
Match: UPSA3_VIGUN (Probable ureide permease A3 (Fragment) OS=Vigna unguiculata GN=A3 PE=2 SV=2) HSP 1 Score: 478.4 bits (1230), Expect = 8.800e-134 Identity = 250/376 (66.49%), Postives = 296/376 (78.72%), Query Frame = 1
BLAST of Spo10370.1 vs. TAIR (Arabidopsis)
Match: AT2G03530.1 (ureide permease 2) HSP 1 Score: 559.7 bits (1441), Expect = 1.700e-159 Identity = 286/398 (71.86%), Postives = 332/398 (83.42%), Query Frame = 1
BLAST of Spo10370.1 vs. TAIR (Arabidopsis)
Match: AT2G03590.1 (ureide permease 1) HSP 1 Score: 550.4 bits (1417), Expect = 1.000e-156 Identity = 287/396 (72.47%), Postives = 335/396 (84.60%), Query Frame = 1
BLAST of Spo10370.1 vs. TAIR (Arabidopsis)
Match: AT1G26440.3 (ureide permease 5) HSP 1 Score: 516.2 bits (1328), Expect = 2.200e-146 Identity = 270/408 (66.18%), Postives = 329/408 (80.64%), Query Frame = 1
BLAST of Spo10370.1 vs. TAIR (Arabidopsis)
Match: AT2G03520.1 (ureide permease 4) HSP 1 Score: 513.1 bits (1320), Expect = 1.800e-145 Identity = 266/401 (66.33%), Postives = 323/401 (80.55%), Query Frame = 1
BLAST of Spo10370.1 vs. TAIR (Arabidopsis)
Match: AT2G03600.4 (ureide permease 3) HSP 1 Score: 391.0 bits (1003), Expect = 1.000e-108 Identity = 216/352 (61.36%), Postives = 259/352 (73.58%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo10370.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo10370.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo10370.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo10370.1 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
|