

|
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.TCAACTTGAGATAAACTTTGGTTTTTCCGGCCGAGCTTGGTTGAACAATGAACTCATTTCCAATCGAGGTCGAATAACGTATGAACTAGGTGGTCTCATTAACACCCTAGACCCCACCACCAAAAAAAAATGAGAGTAAAATTTCCCCCAATTCTTCTGTTAAAAAGGCATGAGTTATTTCTCCTTCCTCTGTTGAAGCCGCTTTCTCTCTCTTTCTCCCTGTCTCAAACTATAGACATAGACAGTGACTGAGAATTAAAACCCAGAGTGAGAAGTTCTCAGTGCTTCAGTTTCCCAATTCTCCACCTGCCCAGCCAAACAAGCCCCAATCTCTTTAATTACAGAGATAATCTTCTCTTCCCTTCTTTAAATTATTCATTTCCTTTTGAAAAAAAAAATAGTTCTTCATCATAAAATCAGATAATTTGTCCACTTCGTGTTGTCTCTTTCTCACTTTCTCTCTCATCTACTACTTAAAATTCGAAGAAGTTTGTTGTTCATACCCATAATTCTTCTTCATTTGGGTTTGTTCTGTTCATGTCATTTTCTTTTTTTCTCCTTTTCAAAAGAACAATTAAAAGTGGCATTTAATTACTTTTGGGGAATAATTGTTGGGTAGTTGAACATAACCCTCTACAAATTTAATTGTTCTTCGTAAACGTAAATCCCCCATTTCCTCCCTTTTCAGAAAAAAAAGAAGTTGACCGTGAGATTTGTCTCTTTCTGTAACTGATTTCCTTCTTTTTTTTGGGGTTACTTTTTGAGAATTCTGGGAACGAACTTTGTTTCTTTTAAGGAGGAAAAGAACAGTTTGAGTTTTGAAGTGAGTGAGTAGCGGAAATGACAGAGGTGGTGAAGCAAGTGGAAGCAGCAGCCATGGTGAGTCAGACTGATGATGATCAGGGAGTTGTTCACGGTGGTGGTGGCGGTGGTGTTGAGGAGAGAGAAAATGTAGGAGGTGAAGTTGATGAAGAGAACCAGAAATTCAGTTTCAAGAATTTTTTATGGCATGGTGGTTCTGTTTATGATGCTTGGTTCAGTTGTGCTTCCAATCAGGTACTCATATTTTCTAACTTATTTTTGTTGGTAAAGTGTTGAGGGATGGTATCCAAGACCTGGGATCGAATCCCGTCTAAATCATTTGTCGAAAAAAGTATTGTTTTTTTCAAATTATTTTACTAAACGGGGTTTAAGAGTGATGGTATTTAACAAGTAGGTGAAAAATGGAAGTGCAGGTGGCTCAAGTGCTGTTGACGCTGCCATATTCATTCTCACAGATGGGGATGTTATCAGGGTTGATACTGCAGGTGTTTTATGGTGTGCTTGGAAGTTGGACAGCTTATCTCATCAGTGTTCTCTATATTGAATATCGTAGTAGACGAGAAAAAGAAGGTGCCAGCTTCAAGAACCATGTTATTCAGGTCTCTTTCATACTATATTTTCCTACTCTACTTTTTTTTTTTTGTATGTAAACCCAAATTTGCTCTAATTTGTGAAACTTTGTAATCTTTTATGCTAATTTGAATTTCTTGTGAGGTAACTCTTGTATTACACATAACAAACTAGGATCTCTTAGTCGATTCTTAGGATTCGATTTCAAAATTAACATCTTACCCCAGTTACCCCGGAAATGGAGTAAAAGTCTAGCCCTTGCGCTATTGGGAGTGTTTTACTAGTGCTTACAAACTTGTGTTAGAAAATATGTCAAGTATTATGGCTTTCTTACTATTACTAGCAACAAAGAGTAGTTCAAAATCTTTGTTGGTAGCACTCTACAAGGTCTTTTGTTGTTAAATGCATTCTTAAACAGAAAATTTCCTGGTTTTTTTAAGTTCTTCCCTTGTTTTTCTTTATCATTTTTCTGTCCTTTTTTGCTACTTGGTAGAGTTGCTACTACCTGGTTGCACAGACTTGTGGGGCCATGATCATGGCAAATCATAAATTCAAGTTCAAGCTTTGTTGCTGAATTATTCGAGTTTTGTCCTAGACAATTATGCTAAAAACAACCCATGCTTATTTCCTAATGATTGTTTAATTAAAAGTTTTTGACCACTTTGTTCGCGAATTCAAGATCTAAACAGCCCTTGGTAAATTTGAATGAGAGGTTTCACTCTCATCTCACTCTCACTATCGCTCTCACTTGTTTTTTAAGATAATGTCAAACACAAATCTTTTCATTTCTACACTTTTAGGCCTAATATTCTTGTGTCAAATCCTCGTTTAGGTAAGAAGTTTACTTTTTTTTTGACCGAGGCCTAATATTGATTAGTGATGTTTGCCCGAGTTTCAAAAGTTGTTTAACAAGTTAGTGATTGTCTTATAATTTTCTCATCACTCTTTGAATATTTAGGCTTTATGTTGACATAAAATTGAGCATATCTTAAAAAAAGTAATTTATATTTATAAAAATCACCCTAGGAATGTAACTGCTTAAGGGCGAAAGCAAGCTCACACTAATACATTATGAGACATTAGGGTAATAACTAATAAGTCTAGTTATGAAACCGTCTGATGCAAGATTCTATCTTAATTAAATGTTCCCTTACCACTACCTTATGTTTTAAATTCCTTTTCTTCATGTTCTGATTCTTGTACTTTTTGGTTAACAGTGGTTTGAGGTGCTAGATGGCCTGCTAGGGCCGTTTTGGAAGGGAATTGGATTGGGTTTCAACTGCACATTCTTGCTCTTTGGATCTGTGATACAGCTTATAGCTTGTGCAAGGTTAAATTACAATAGTTGTTCTTCCACATTTGTCCTTACAAATTGATGCCAATTCTTTTGTTGGTGTACCCCTTCAGTTCGAGGTTATAATATTTTTTTTTTTTGGATTTGATTGCAGTAACATATACTACGTAAATGATCATTTAGACAAACGGACATGGACATACATATTTGGGGCATGTTGTGCCACAACTGTGTTCATACCTTCCTTTCACAACTATAGAATTTGGTCCTTTCTTGGCCTGGGAATGACCACTTATACTGCTTGGTATATGACCATTGCTGCCCTTGCTCATGGCCAGGTAAATTTTTTCCCTCTCCCTTTTTTATCCGGGGTTTAATTTTTCTGCGTATGAAAGAAAGGGAGATACAAACAGTCCTAATAACGATATCAGAATGCAAAAATTTTCAAGCCACTAATTTGAAATCCGTAATCAACTTTAAATATCTTTTACTGTACGAAATTTGACACTTATGTCCTAATTCATTGTTTTGAAGGATCTTCTAGGATATTTTTGCTTAATAGAAGCAAAATGTTAGGTGCATATCCAATTTACACTGTTTGAGTGTGTACTGCACTACTATGATGCTATAACTATACCTTCTTTTTCGACCTCATCTATTTCAATAAACAACTTTTATGTTGCTTGTCGTTTACAATTGTTTAGGAAGAGTTGGTTACTACATTGCTTTCAAAAATTGCAAAACAACAATGCGAAGAAGAACTAATAATGTATCAATAGTTCAAATCATGGATACAAGTTTATTGAGTGGTTATATAATGTGACCATTTGTAACAAAGTATTACTCCCTACTCCTTAGATGTTGGGTAACATAGACTCGTCACTTCGCCCAATAATTATAAGAAATCTTTGAAAAAACCCGTCTGATACTGAATTATGAGGTATTAGGACAATGCGACTATTATTCTCAAAAGTATTAGTCATCACTCAGTTCCTCCTCTTCCCTAAAATCCGTTTTTTTGTCTGTTTTGGAAAATTTAATAGATTTCTTAATGGAAGTAAAAGTGAGAATTTGAAAGTTTTCATGTGGAAAAACAATATTACAGGCCCCAGGTGTGATCCACTCTGGTCCAAAAAAGTTGGTGCTATATTTCACAGGAGCAACCAATATCCTCTACACTTTTGGTGGACATGCTGTAACTGTGTAAGTGCAAATCCTCTCTTCTTTCACTCTGCCTTCCATCATTTATTTTCTGCTTAATCTCAATATTCATCACTTTCTTCTTGCAGCTTTTGTTTCCCTGTTTTAAGGATTTCATGGTAGACAATCATCATTATGTTGGATACATGCATTGTTTAATGGCCGTTTAGCTTTATTTCTCACTCAATAATTATGGTCCTTTCTTAATTAATTTGTTAATCACTCGTGTTTCGGCTAATTTCAATCCTTTTTTGTTAATGGCCTTTTACCTAATAAAAGACGAATATATGTCACTTTCTGCAGTTCTGTGCATAAACTAATGCTAATTTAGGGCCAGTAAATTAAACATCTCATGTTTATTTATAGGTTCTTAATTTCATAGGGAACTTTTTTAAAAGTTTGAGCTTTTCTTATGTATACTTTTTTCTTTTTGAGGATATAAAATTTGACTTTATATTTGTTTAGATTGAGCAATGATATGTTATTAGTGACTATTTGTTTCTATAATCCAATAAACGTGGGGAACCACTTAGTATCCATAACTCCTTTTTTCTTCTTTTTTTCACCATTGGTTAGGTAATTGTCACTTTAAGGAGTCATGCGCGTAAAAAGTGTTTTTCCCCGCTAATATTTGGTTCAATATAGATCATCCTTTCAAATCATTTATTTTATGGATTTTACTATTTGGAAGTGTTCAACCCTAGTTTTAGCATCTTATGTAATTCTAATTTTGAGGATTGATAGATTTGGATTGATGTGAAGTGAAGTGTGAAACGTGTTGTCCCTCACTGAAATTTGGTTAAATGATTCAATAACCGCTCCTTACCAACTCATTTCTTTTTATAGATTTATAATTTGGAAGTCTTCAACGCTACTTTAGCATCTTATGTAATTCTAGTTGTGAGGATTGCTGGATAGATGTGAGTATAACGCTATGCTATGTTTATCTTTTTTCCAATTATTTCAGGAAACCAAATAAGTTCAATTAAGTTGAGAAAAATTAAGGGTTACCCAATTATAATTTACAACTAAAATAAGTTCAGATAAGATCAGTTCAAATAAGATAAGTTCCTCTATCAAGACTATCACTAAGCTACAAAGGAACAACAGGCGACTACTTTAAAAGTTTTTATAAATCTTTTGTTAGTGTTTTAAGCGTTATAAAGTCACATGAAGTATCTGTTTTGAAAAAATTCACCTCCAAAATCGTTTAACTTTTTAATATTAAATAAAAGTAAAATCAAACAGAAATGTTGAATTTTGCTAGTTTTACATCTTGAATTTGAGGTTCTCCAGCTATGATATTAGTAGTAAGTGTAAAAGTTTTGTTTTATCGTACCAACTCCCTTTACAATAAAGTGATAAATCCAAAATAAAAAGTGGAAATTGTTTTAGTTTGCCTCTTTATCTATTTTCTGAAAAGAAATTAACTATGATGATACTTGTGCTTCATGCTCTGGTCCATACTCCATAACAAATGATGGCTGACCATACTTTCAATAGCATACTTGTAATAATTGATATATATTGTACTCAAGAATGAATTTATCCATTATAATTCAATTTGTGGGTCCTTATTATTGATGATAATTATTATTATTATCAGGGAAATCATGCATGCTATGTGGAAGCCACAAAAATTCAAGTACATTTATCTACTTGCAACTGTTTATGTTTTCACCCTTACACTCCCTTCTGCTGCTGCTGTCTACTGGGCCTTTGGTGATGAACTCCTCAACCATGCCAATGCTTTCTCCCTTCTCCCCCGTAATGGCTTCCGTGATGCTGCTGTCATCCTGATGCTCATCCATCAGGTCTAATTCTCGAAATTCCCTCTCTTTTCTTAACTATAATTTACCTAATTACTTGTGAACATTCGACGTGCATTACTAGTTCATATTACACTATCTGCTAAATTCGGACAGAGGGGGTATACACGAAAAGCGAAATATCTAACGTTACAAAATCCTGTGGCTAGTTTTGAGGATCAAAAGTACCTCTCTAACTTTATTTTTTTTGTTTCCATGGAACAGTTTATTACATTTGGATTTGCATGCACACCTCTCTACTTTGTGTGGGAAAAAGTGGTGGGTGTACATGACACCAAGAGCTTATGTTTAAGGGCAGTGGCTAGACTACCAGTGGTGATACCAATCTGGTTCCTAGCAATTATATTTCCCTTCTTTGGGCCCATTAACTCTACTGTGGGGGCCTTCTTAGTCAGCTTCACTGTTTATATTATACCAACTATGGCCCACATGCTTACCTTCAGATCGGCCCAAGCCCGAAAGGTATTGTTCTGGACCCATCTCTATTTTGCTCTTTTCTGCTTTATTAATAAATTGTATATTGTTCTTTTCAGATTTGGTCTTATTACTTGCTAGATTTCCTTAGCTAAGTTAAAGGCTGGATTTTTTTTGACAAGACAACATGTAGTATGAAACAATTATGGGTCCAGTAGAGTTCAAGATAAAAGTCAGGGAAAATAATACCTAACTTGGATTTTCTTGAGGACCCTAACTAGATTTCCCCCCCTTTCGACCCTCCTGCATGTGTATTTGTCAGTGACAGAAAATTTGACAATTTATCCATATTGTTTCCTGAGGTTTAGATCACAACGTTTTCTTTGGAGAAAGGTTGGAAAACTTAGTTACATAACTAGTCTCCACTTGCACGCGTAAATGAAAGAGTGAGGTTAAATGGCTTTAATTCTTTAAATACTCGAGTTGAAACCTTCATTTAATTTTTGAACTATGCTATGCTATTCTGATCCTTCATTACAGCTTATGTTACTTTGTCGAAGCCACCCTTAACCCTTCATATTAGACTGAAAACAGATATTTTTTCCTCATAGAATCATTGAACATGACATGTACTTGAGTCTTGGTAGTACAAGATTATATGCAAACCAAGTTAATGAAATTTGTATTGAAAAATGCAGAACGCTGCTGAGAAACTTCCCTTCTTCTTCCCAAGCTGGACAGTAATATATGTGTTCAACGCATTCATAGTGGTGTGGGTATTTATTGTTGGTTTTGGATTTGGAGGGTGGGCAAGCATGGTGAACTTCATCAGGCAAGTTAATACTTTCGGTCTTTTTGCTAAATGCTATCAGTGTAAGCCGCCTCCAGCAGCCCCTGCACTACCACATCACTGAAGGCTTGCTATATTGAGTGTTGGGTTTGATGCTTTGATCAAATGGGCAAGTGAATACTTTTGGTGTTTTTCGGTGTTTTTGCTAAATGCTATCGGCTCCAGCCCTCCCATGCACCACTAAATGACTGAAGTCTTGCAATATAGAGTGTTGGGTTTGATACTTTTGATCGATCATCAAACACACCTCAGTAATCAGCGTTGTTTTTGTATTTTGTGGGTGAATACTAGTATTAGTAAGTAACGTTTTGGCGAAGCCTAGCTTTAGTTTTTGTGAAATTTCAGCTGGAATTGTAATGTCCTAAATTGAAGTTTGTCAAAAATTCCTTAAGTTTCTGGGTACATATAGTATGATTTAATGTTGGGTCATTTGTGGATGTGGGAAAATGCATGGGCTATATTGGTCCTCACATCATGTGTAACACATTTGACTCTTTTAAGTTATATTGGAAAAAAATTTGCTCTAAATGTTACTCGTAATTTGCATGATAATATTCATCAACATCAATATCAACTTGAGATAAACTTTGGTTTTTCCGGCCGAGCTTGGTTGAACAATGAACTCATTTCCAATCGAGGTCGAATAACGTATGAACTAGGTGGTCTCATTAACACCCTAGACCCCACCACCAAAAAAAAATGAGAGTAAAATTTCCCCCAATTCTTCTGTTAAAAAGGCATGAGTTATTTCTCCTTCCTCTGTTGAAGCCGCTTTCTCTCTCTTTCTCCCTGTCTCAAACTATAGACATAGACAGTGACTGAGAATTAAAACCCAGAGTGAGAAGTTCTCAGTGCTTCAGTTTCCCAATTCTCCACCTGCCCAGCCAAACAAGCCCCAATCTCTTTAATTACAGAGATAATCTTCTCTTCCCTTCTTTAAATTATTCATTTCCTTTTGAAAAAAAAAATAGTTCTTCATCATAAAATCAGATAATTTGTCCACTTCGTGTTGTCTCTTTCTCACTTTCTCTCTCATCTACTACTTAAAATTCGAAGAAGTTTGTTGTTCATACCCATAATTCTTCTTCATTTGGGTTTGTTCTGTTCATGTCATTTTCTTTTTTTCTCCTTTTCAAAAGAACAATTAAAAGTGGCATTTAATTACTTTTGGGGAATAATTGTTGGGTAGTTGAACATAACCCTCTACAAATTTAATTGTTCTTCGTAAACGTAAATCCCCCATTTCCTCCCTTTTCAGAAAAAAAAGAAGTTGACCGTGAGATTTGTCTCTTTCTGTAACTGATTTCCTTCTTTTTTTTGGGGTTACTTTTTGAGAATTCTGGGAACGAACTTTGTTTCTTTTAAGGAGGAAAAGAACAGTTTGAGTTTTGAAGTGAGTGAGTAGCGGAAATGACAGAGGTGGTGAAGCAAGTGGAAGCAGCAGCCATGGTGAGTCAGACTGATGATGATCAGGGAGTTGTTCACGGTGGTGGTGGCGGTGGTGTTGAGGAGAGAGAAAATGTAGGAGGTGAAGTTGATGAAGAGAACCAGAAATTCAGTTTCAAGAATTTTTTATGGCATGGTGGTTCTGTTTATGATGCTTGGTTCAGTTGTGCTTCCAATCAGGTGGCTCAAGTGCTGTTGACGCTGCCATATTCATTCTCACAGATGGGGATGTTATCAGGGTTGATACTGCAGGTGTTTTATGGTGTGCTTGGAAGTTGGACAGCTTATCTCATCAGTGTTCTCTATATTGAATATCGTAGTAGACGAGAAAAAGAAGGTGCCAGCTTCAAGAACCATGTTATTCAGTGGTTTGAGGTGCTAGATGGCCTGCTAGGGCCGTTTTGGAAGGGAATTGGATTGGGTTTCAACTGCACATTCTTGCTCTTTGGATCTGTGATACAGCTTATAGCTTGTGCAAGTAACATATACTACGTAAATGATCATTTAGACAAACGGACATGGACATACATATTTGGGGCATGTTGTGCCACAACTGTGTTCATACCTTCCTTTCACAACTATAGAATTTGGTCCTTTCTTGGCCTGGGAATGACCACTTATACTGCTTGGTATATGACCATTGCTGCCCTTGCTCATGGCCAGGCCCCAGGTGTGATCCACTCTGGTCCAAAAAAGTTGGTGCTATATTTCACAGGAGCAACCAATATCCTCTACACTTTTGGTGGACATGCTGTAACTGTGGAAATCATGCATGCTATGTGGAAGCCACAAAAATTCAAGTACATTTATCTACTTGCAACTGTTTATGTTTTCACCCTTACACTCCCTTCTGCTGCTGCTGTCTACTGGGCCTTTGGTGATGAACTCCTCAACCATGCCAATGCTTTCTCCCTTCTCCCCCGTAATGGCTTCCGTGATGCTGCTGTCATCCTGATGCTCATCCATCAGTTTATTACATTTGGATTTGCATGCACACCTCTCTACTTTGTGTGGGAAAAAGTGGTGGGTGTACATGACACCAAGAGCTTATGTTTAAGGGCAGTGGCTAGACTACCAGTGGTGATACCAATCTGGTTCCTAGCAATTATATTTCCCTTCTTTGGGCCCATTAACTCTACTGTGGGGGCCTTCTTAGTCAGCTTCACTGTTTATATTATACCAACTATGGCCCACATGCTTACCTTCAGATCGGCCCAAGCCCGAAAGAACGCTGCTGAGAAACTTCCCTTCTTCTTCCCAAGCTGGACAGTAATATATGTGTTCAACGCATTCATAGTGGTGTGGGTATTTATTGTTGGTTTTGGATTTGGAGGGTGGGCAAGCATGGTGAACTTCATCAGGCAAGTTAATACTTTCGGTCTTTTTGCTAAATGCTATCAGTGTAAGCCGCCTCCAGCAGCCCCTGCACTACCACATCACTGAAGGCTTGCTATATTGAGTGTTGGGTTTGATGCTTTGATCAAATGGGCAAGTGAATACTTTTGGTGTTTTTCGGTGTTTTTGCTAAATGCTATCGGCTCCAGCCCTCCCATGCACCACTAAATGACTGAAGTCTTGCAATATAGAGTGTTGGGTTTGATACTTTTGATCGATCATCAAACACACCTCAGTAATCAGCGTTGTTTTTGTATTTTGTGGGTGAATACTAGTATTAGTAAGTAACGTTTTGGCGAAGCCTAGCTTTAGTTTTTGTGAAATTTCAGCTGGAATTGTAATGTCCTAAATTGAAGTTTGTCAAAAATTCCTTAAGTTTCTGGGTACATATAGTATGATTTAATGTTGGGTCATTTGTGGATGTGGGAAAATGCATGGGCTATATTGGTCCTCACATCATGTGTAACACATTTGACTCTTTTAAGTTATATTGGAAAAAAATTTGCTCTAAATGTTACTCGTAATTTGCATGATAATATTCATCAACATCAATA ATGACAGAGGTGGTGAAGCAAGTGGAAGCAGCAGCCATGGTGAGTCAGACTGATGATGATCAGGGAGTTGTTCACGGTGGTGGTGGCGGTGGTGTTGAGGAGAGAGAAAATGTAGGAGGTGAAGTTGATGAAGAGAACCAGAAATTCAGTTTCAAGAATTTTTTATGGCATGGTGGTTCTGTTTATGATGCTTGGTTCAGTTGTGCTTCCAATCAGGTGGCTCAAGTGCTGTTGACGCTGCCATATTCATTCTCACAGATGGGGATGTTATCAGGGTTGATACTGCAGGTGTTTTATGGTGTGCTTGGAAGTTGGACAGCTTATCTCATCAGTGTTCTCTATATTGAATATCGTAGTAGACGAGAAAAAGAAGGTGCCAGCTTCAAGAACCATGTTATTCAGTGGTTTGAGGTGCTAGATGGCCTGCTAGGGCCGTTTTGGAAGGGAATTGGATTGGGTTTCAACTGCACATTCTTGCTCTTTGGATCTGTGATACAGCTTATAGCTTGTGCAAGTAACATATACTACGTAAATGATCATTTAGACAAACGGACATGGACATACATATTTGGGGCATGTTGTGCCACAACTGTGTTCATACCTTCCTTTCACAACTATAGAATTTGGTCCTTTCTTGGCCTGGGAATGACCACTTATACTGCTTGGTATATGACCATTGCTGCCCTTGCTCATGGCCAGGCCCCAGGTGTGATCCACTCTGGTCCAAAAAAGTTGGTGCTATATTTCACAGGAGCAACCAATATCCTCTACACTTTTGGTGGACATGCTGTAACTGTGGAAATCATGCATGCTATGTGGAAGCCACAAAAATTCAAGTACATTTATCTACTTGCAACTGTTTATGTTTTCACCCTTACACTCCCTTCTGCTGCTGCTGTCTACTGGGCCTTTGGTGATGAACTCCTCAACCATGCCAATGCTTTCTCCCTTCTCCCCCGTAATGGCTTCCGTGATGCTGCTGTCATCCTGATGCTCATCCATCAGTTTATTACATTTGGATTTGCATGCACACCTCTCTACTTTGTGTGGGAAAAAGTGGTGGGTGTACATGACACCAAGAGCTTATGTTTAAGGGCAGTGGCTAGACTACCAGTGGTGATACCAATCTGGTTCCTAGCAATTATATTTCCCTTCTTTGGGCCCATTAACTCTACTGTGGGGGCCTTCTTAGTCAGCTTCACTGTTTATATTATACCAACTATGGCCCACATGCTTACCTTCAGATCGGCCCAAGCCCGAAAGAACGCTGCTGAGAAACTTCCCTTCTTCTTCCCAAGCTGGACAGTAATATATGTGTTCAACGCATTCATAGTGGTGTGGGTATTTATTGTTGGTTTTGGATTTGGAGGGTGGGCAAGCATGGTGAACTTCATCAGGCAAGTTAATACTTTCGGTCTTTTTGCTAAATGCTATCAGTGTAAGCCGCCTCCAGCAGCCCCTGCACTACCACATCACTGA MTEVVKQVEAAAMVSQTDDDQGVVHGGGGGGVEERENVGGEVDEENQKFSFKNFLWHGGSVYDAWFSCASNQVAQVLLTLPYSFSQMGMLSGLILQVFYGVLGSWTAYLISVLYIEYRSRREKEGASFKNHVIQWFEVLDGLLGPFWKGIGLGFNCTFLLFGSVIQLIACASNIYYVNDHLDKRTWTYIFGACCATTVFIPSFHNYRIWSFLGLGMTTYTAWYMTIAALAHGQAPGVIHSGPKKLVLYFTGATNILYTFGGHAVTVEIMHAMWKPQKFKYIYLLATVYVFTLTLPSAAAVYWAFGDELLNHANAFSLLPRNGFRDAAVILMLIHQFITFGFACTPLYFVWEKVVGVHDTKSLCLRAVARLPVVIPIWFLAIIFPFFGPINSTVGAFLVSFTVYIIPTMAHMLTFRSAQARKNAAEKLPFFFPSWTVIYVFNAFIVVWVFIVGFGFGGWASMVNFIRQVNTFGLFAKCYQCKPPPAAPALPHH Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo25373.1 vs. NCBI nr
Match: gi|902177062|gb|KNA08884.1| (hypothetical protein SOVF_158660 [Spinacia oleracea]) HSP 1 Score: 1004.2 bits (2595), Expect = 7.900e-290 Identity = 492/492 (100.00%), Postives = 492/492 (100.00%), Query Frame = 1
BLAST of Spo25373.1 vs. NCBI nr
Match: gi|731315094|ref|XP_010689866.1| (PREDICTED: auxin transporter-like protein 2 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 921.8 bits (2381), Expect = 5.100e-265 Identity = 451/495 (91.11%), Postives = 468/495 (94.55%), Query Frame = 1
BLAST of Spo25373.1 vs. NCBI nr
Match: gi|357505879|ref|XP_003623228.1| (auxin influx transporter [Medicago truncatula]) HSP 1 Score: 827.8 bits (2137), Expect = 1.000e-236 Identity = 395/487 (81.11%), Postives = 435/487 (89.32%), Query Frame = 1
BLAST of Spo25373.1 vs. NCBI nr
Match: gi|37651177|dbj|BAC98948.1| (AUX1-like auxin influx carrier protein [Pisum sativum]) HSP 1 Score: 825.9 bits (2132), Expect = 3.800e-236 Identity = 395/485 (81.44%), Postives = 441/485 (90.93%), Query Frame = 1
BLAST of Spo25373.1 vs. NCBI nr
Match: gi|702238651|ref|XP_010030821.1| (PREDICTED: auxin transporter-like protein 4 [Eucalyptus grandis]) HSP 1 Score: 825.1 bits (2130), Expect = 6.500e-236 Identity = 396/490 (80.82%), Postives = 435/490 (88.78%), Query Frame = 1
BLAST of Spo25373.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QNP7_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_158660 PE=4 SV=1) HSP 1 Score: 1004.2 bits (2595), Expect = 5.500e-290 Identity = 492/492 (100.00%), Postives = 492/492 (100.00%), Query Frame = 1
BLAST of Spo25373.1 vs. UniProtKB/TrEMBL
Match: A0A0J8D1T4_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_2g024010 PE=4 SV=1) HSP 1 Score: 921.8 bits (2381), Expect = 3.600e-265 Identity = 451/495 (91.11%), Postives = 468/495 (94.55%), Query Frame = 1
BLAST of Spo25373.1 vs. UniProtKB/TrEMBL
Match: G7L6K2_MEDTR (Auxin influx transporter OS=Medicago truncatula GN=MTR_7g067450 PE=4 SV=1) HSP 1 Score: 827.8 bits (2137), Expect = 7.000e-237 Identity = 395/487 (81.11%), Postives = 435/487 (89.32%), Query Frame = 1
BLAST of Spo25373.1 vs. UniProtKB/TrEMBL
Match: Q76DT1_PEA (AUX1-like auxin influx carrier protein OS=Pisum sativum GN=PsAUX1 PE=2 SV=1) HSP 1 Score: 825.9 bits (2132), Expect = 2.700e-236 Identity = 395/485 (81.44%), Postives = 441/485 (90.93%), Query Frame = 1
BLAST of Spo25373.1 vs. UniProtKB/TrEMBL
Match: A0A059DC10_EUCGR (Uncharacterized protein OS=Eucalyptus grandis GN=EUGRSUZ_A00514 PE=4 SV=1) HSP 1 Score: 825.1 bits (2130), Expect = 4.600e-236 Identity = 396/490 (80.82%), Postives = 435/490 (88.78%), Query Frame = 1
BLAST of Spo25373.1 vs. ExPASy Swiss-Prot
Match: LAX2_MEDTR (Auxin transporter-like protein 2 OS=Medicago truncatula GN=LAX2 PE=2 SV=1) HSP 1 Score: 827.8 bits (2137), Expect = 6.300e-239 Identity = 395/487 (81.11%), Postives = 435/487 (89.32%), Query Frame = 1
BLAST of Spo25373.1 vs. ExPASy Swiss-Prot
Match: LAX4_MEDTR (Auxin transporter-like protein 4 OS=Medicago truncatula GN=LAX4 PE=2 SV=1) HSP 1 Score: 808.5 bits (2087), Expect = 4.000e-233 Identity = 386/485 (79.59%), Postives = 430/485 (88.66%), Query Frame = 1
BLAST of Spo25373.1 vs. ExPASy Swiss-Prot
Match: AUX1_ARATH (Auxin transporter protein 1 OS=Arabidopsis thaliana GN=AUX1 PE=1 SV=1) HSP 1 Score: 806.6 bits (2082), Expect = 1.500e-232 Identity = 379/447 (84.79%), Postives = 416/447 (93.06%), Query Frame = 1
BLAST of Spo25373.1 vs. ExPASy Swiss-Prot
Match: LAX1_MEDTR (Auxin transporter-like protein 1 OS=Medicago truncatula GN=LAX1 PE=2 SV=1) HSP 1 Score: 794.7 bits (2051), Expect = 5.900e-229 Identity = 380/459 (82.79%), Postives = 413/459 (89.98%), Query Frame = 1
BLAST of Spo25373.1 vs. ExPASy Swiss-Prot
Match: LAX1_ORYSJ (Auxin transporter-like protein 1 OS=Oryza sativa subsp. japonica GN=Os01g0856500 PE=2 SV=2) HSP 1 Score: 793.9 bits (2049), Expect = 1.000e-228 Identity = 388/495 (78.38%), Postives = 429/495 (86.67%), Query Frame = 1
BLAST of Spo25373.1 vs. TAIR (Arabidopsis)
Match: AT2G38120.1 (Transmembrane amino acid transporter family protein) HSP 1 Score: 806.6 bits (2082), Expect = 8.500e-234 Identity = 379/447 (84.79%), Postives = 416/447 (93.06%), Query Frame = 1
BLAST of Spo25373.1 vs. TAIR (Arabidopsis)
Match: AT5G01240.1 (like AUXIN RESISTANT 1) HSP 1 Score: 787.7 bits (2033), Expect = 4.100e-228 Identity = 383/498 (76.91%), Postives = 423/498 (84.94%), Query Frame = 1
BLAST of Spo25373.1 vs. TAIR (Arabidopsis)
Match: AT2G21050.1 (like AUXIN RESISTANT 2) HSP 1 Score: 743.8 bits (1919), Expect = 6.800e-215 Identity = 350/454 (77.09%), Postives = 398/454 (87.67%), Query Frame = 1
BLAST of Spo25373.1 vs. TAIR (Arabidopsis)
Match: AT1G77690.1 (like AUX1 3) HSP 1 Score: 736.9 bits (1901), Expect = 8.300e-213 Identity = 348/449 (77.51%), Postives = 391/449 (87.08%), Query Frame = 1
BLAST of Spo25373.1 vs. TAIR (Arabidopsis)
Match: AT1G08230.2 (Transmembrane amino acid transporter family protein) HSP 1 Score: 73.6 bits (179), Expect = 3.900e-13 Identity = 122/486 (25.10%), Postives = 192/486 (39.51%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo25373.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo25373.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo25373.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo25373.1 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
|