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.AAAAATAAATCATACAAGTAACGCCACGAAAGCACGACGACACTCTGGTCTCCTTCCTTCCATATCCCCTTTGTCTCTCTCTCCTCTGGTTAGCGATCTACTCTCAATCTCCAATCTCACATTCTTCATCATCTGGATAATTTTGTTCATATTAATTTGTATCTTAATTTGTTTTTGTTAATCTTTGAAGTTCAAAATTTCTGCATAACCTATGACGATCGATCATGCCGAACTCACCACTGACCAGGTTTGATTTCTCCTGAAATTTCGTTCTTCAATTTATTTTCACAATCATTGGTCTATTGACTATGTTTAATTGTTTTGCTCGATTATTGGTTATAATTTGTCTGTTTATTTGTTTGATCTAAATTTCCAGTTCATTGATTACAAAGGGTTATCATCAAAATTGTAGTCTTTTTCAATTTTTCGGCGAGGGTTTTGTTTTTATTTTTTGTTTGCTTGATCTGAATTGAATTTCATGCTAATTTGTTGCTCAAATTTCGGGGGATAATTAGTTAATGCCATTAATTTGTTGCTTAGGAAAATTTAGGAAGTTACCCATGTTTTAGCAGATTGCCATTGTTTAGATGGAACTAATTGTGTCTCAATTGATCCACATTACGGATTTCCGGGTGAACTCGATCGAAATATTAGGGAATAATTAGTTAATTCCATTAATTTATTGTTTTGGAGAATTTAGGAAGTTACCCATGATTTAGCAGATTGCCATTGTTTAGATGGAACTGAGTTTGTCTCAATTGATCCACATTATGAATTTCTGGGCGAACTCGATCAAACCAGCCGCCACAATCATGATCCGTAAGCCAACTCTAGGAGAGCTAATATCTGATTGACTTTGGAGTGGGGAATAGGCTAATTATTTAATGTCAATTGGTGAAGTTCAATGATAGATTATCAAAAAAAAAAAAAAGTTCAATGATAGATGATAATGCTTGAATTGCAATATACCAAACATATTTACAATACTTACAATCCAATAGTGCGAATTTGAGATGATTTTTCTTGAAAGATGTATTTGAAACCCAATGGTGCAATATTATTTGAATTGACTAGATAATAGTTAATATCATAATTTTGTAAGTATTTGAAACCCAACTGTTTTAGAAACACTGACTACCAAAACAGATTTACCATTTTTTGATGCTCGAGGTAATGTGTTGTACTTTTCATTTTATATTAAGGTATCATAAAAGGTTTATTGATTGTAATACTTGTTTGTCTGTCTAGAGTTAGACTATGCGTAGATGTCCCCTGAAGCTGAATGTGAGAACTTATGTTGCTTCCTTTGTTTTCCTGACATCCTGTATAATTCTGGTTGATTAGTACTATGTATAAATGTATAATATTTGGTCTACTGGATTGTTGTGAACTAATTTGTTTTTGTATTTTTCCTTTCATTCTTTCTTCCTCTGTCTTTTTTCAAGGTTCTCAAAAGGGACATTCCATGGGAGACATACATGACGACCAAGTTGATCACTGGGACAGCCCTTCAACTTTTAAGGCGTTATGACAAGAAGCCTGAGAACCAGAGAGCTTCCTTGCTGGATGATGTAATTTTCATCTTTGCTTCTTTCTCAAAGTGGCGGCTGTTTTTGAATTTTAGCTACAGTCTTTCTGTCAAATGCATCCAGTGACACATAATCTCTTTTAATTTTGTTGTGATCTGTCATGGCCTACCCCGTTCCTCTAACTATAAAATTTCTATTGAATGTTCGTATGATTGTTCAGCATAGATTCATAGAAGAGGCTTCATTACTCTGTTAATTATTATCGGAATCAACCTATTCGATATTGAAACCTTTATTCACCTTCTAATTGTGGCTTTAAATTTTTTTGTACCTTATTATATCACGATACATATTTTCATTCATCACATGATGGGTTCCTAACTTCCTATCGTTCCAGTTTCTGCTCACTCAGTTAATATTTCGATTGGTCTGTTTTTTACTAAATCTGTTTAATCTTATTTTTTATGGATGTCCGGTAGTAAATTTATTTACCTGATACCAAACTTTCAAAGTTGTCGTCTTTGTTATCCTTCTTCATGTGCCTTGTTGAGTGTGTGTACACTAGACAATGGTCTACATCTTGAGTCCTTTCAGATAATGGATCTTTACCAATTTTCATAGTTCTAATTGGTGATTGTACTTGTAACAGGATGGCCCATCCTACGTTCGAGTATTTGTGAGCATTCTACGTGATATTTTCAAAGAAGAGACTGTGGAATATGTCCTTTCTTTGATCGATGAAATGCTCACTGGTAAATGCAGATACACCTAGTCATCTGGTTTTGTATAACTTATTGTTGGCCCATTTTCTGATTTTTTTCCCTCTCTGCAGCAAACTCCAAAAGGGCCCGGCTGTTTCACGATAAATCACTGGCAAGCGAGGATATCTATGAACCGTTTGTAAGGTAAGAATACGAAGACTCTTGTCAGATAATTACTTTTCTCAAACAAATTGGATTTGGATCCTTGTCTAATTGTCTTTTAAGAAATAGAATTGCATAATCTGATAATTTTTTGTTTGAGATGATTGTTTTGGGAAACTTTAACAGTACAAGAATTGCGTCCAAATAAATCATATATTCTTATTAATGTTGAATTTCAACTTAGTAGATTTGAAGTTCCCAGTTCAACTTTGTGAATGTGTATTGGTTGATCTCAGCTCTGGTGAGGGGAGGGTATGGAAAGGGACTTGAGAGAAATCATATTGAACCCGAAGTGTGTGGTTGAATGTGAGTGATTCATGTTGAGCATGACCAAAGAAAATGCAAAGTGTTTGGAACGTGTTAGACTGAAGTTCTGCTTGGATTAATGGTCAAATGGGGATTCAGTAGGCAGAGGGACTTTTAAAAGAATTACCGTTGTGAAATAACGAACGGTGGGAAGACTGGCATACAAGTAATCAGGTATAGTGGCGTGATTAAGGTTATTGTAACATGCAAGGAACTGGTCCTGAGGCGGGGGGTACAATGGGAAGTTCGTTATAGTTCAGTTATGAGAAGCTTATGAAGGAAGACAGTTAGTTTGTTATAGACTTATAAATATTGGAGGGTCGACAGAGAAAATTGTGATGGGTAAAGCTTGTAGATTATAACAATTTTCTCTGTTCAATCATATCTTTACCTCCTACTGTATTAGCGTTCATCTGTCCTTAGTCACGACTTGCTAAGAATAAATTTCTTAACTGAATATATGGAGTAAATTCATGGATTTTCCGCTATGGTGCTACCACTAAGATCCAAAGACTGCAAGTGAAAACAGCAAGTTGTTCTATGTGATGGTCAATTGGTACAGTTGGTGGATTTCATGAGGTTAAAGTTTAAAGTGGCATTCTTACTTTCTTAGGCTTAGATTCCTTGTATCCAATGTGAGCTCTCTTTTTGGCTTTTAGCTTGTTAACATTTGCGACTCTTTTGACCACCTTGTAGCCCTTCCGAGAGTAGTCTTTTCTTTGGCTTTTAAATTTACGACAAGGATAGAAAGGGTAGCATCTGAAAGACTCTGAACGGGTTGGATTGGCTTGGGGCTGAGGTTGCTTTTAAATCAACTTGATTGTTGTTGTTATTGAAAGAAAGAGTAACAAAAAATTAGGGAAGTTTCTCTTATCTACGGTTACCCAAATGCTTCCTGTGGGGCTTGCACCAAGGTGGGGAGTGATACAGGGGTTAAATGTCAATACAATTTCCATGAGGCTCTTATCCTTACCTCTGCAACGAGGCTGTTACTACATCACATTCTATTATTGTTATTTCTTTGCAATATGTCGATCCAAAATATGCTTGACATGCATACACATGCCTCTTGTTTGTCACGATTCTGCTATAACATTCGTCTATGGATTTTCAGATTGCTATGGAAAGGAAACTGGTTCATACAAGAGAAGAGTTGCAAAATACTTGCATTAATCGTTAGGTATTGAAATATAATCTGCTAACTAATAATTGGATGCATGGCTTTGTCGACGTACCTGCAAGTTATTAAATTATATCTGTTCATTGTAGCGCACGACCCAAAAACCAGTATAGTGGAGCTGTGAATGGTGAGGCCTCAGATTCAAAAAGCAAATTGACCACCATAGATGATGTCTTAAAAGGATTAGTGGATTGGCTTTGCACACAGGTTTGAGCATAGTTTTTTTTCCTTATATAAAGTATCATTTCGTCTTGGGTACCTGTTTGCTTCAGTATGATGCTGAACTTTCAATTTTATTGACAAATTTGGTGACATTTGTTCACAATTTATTTATTTATACTTATTATTAATATGGTATGGATGTCTACTTGTCCTTATTTTTGTTAACGTTCTTTAATTTGTGACAATACTACTCTATGTTTGACTTTTTTAGTTTTTGAAATCTAGTGAGGTGAAGGCTTCTAGATGTTTTAGGTATGTCTTAGTGAATAACGACTTCGGTTATGAATACCCTGCAGCTAAGGAATCCTTCTCATCCCACTCGTGGTATCCCTTCTGCTGTAAATTGCCTTGCTACCTTGTTGAAAGAACCTTTGGTCAGATCATCATTTGTTCAAGTTGATGGGGTGAAGTTACTCATTCCATTGATTAATCCGGTATCTAATCAATCTACACCATTGGCGTCTTCGCAGTCCACTCAGCAATCTATGCAGGTAATTCTTGCTTTGTTCCTTCAAGAAAAATCTATTTTTCCTGTCAGTTCATCATATTTTCCTTCTGATGGCATTTTGGTTCCATTATTAGTGGCATATCTGTAAAATTCTTTCAGCACCTTACGTGGGTGGGTGTTCCTTTTATATTTCAACAGCTTCTTTATGAAACCTGTCTCTGTATCTGGCTATTGTCATTCTACGAACCTGCACTTGAGTACTTGGCTACTTCCAGATGCCTGCCACGGCTGACAGAGGTGGTGAAGAGTTCTACTAAGGAGAAGGTAATAATATATAGCGCTTAATTTTCAAACTTTTAGCCATGCTTCATAATTGGAGCATGTGTCAAGTATACACATACAATTATGGTATTATGGTACACACATACAATTATGTATACTTATTACAGGGGCTGTATTTCTTGTAGGTTGTTAGGGTTATTGTTATGACCTTCAAGAATTTGCTACCAAAAGGGACCTTTGGCCCCCAGATGGTGGACCTTGGAATGCCTCAGATTGTACAAAACTTGAAAGCTCAAGCCTGGAGTGATGAGGTGAGATATGACCAATCCTTTATGTTTAAGAATATTTTCACAATTGGGAGTCAATGACTTACAAAATGTATTCCTCCATTCCATAAATATCGCACAATTTTGTTTTTTACAATATTCACATTTGACCTTTGGTCATCTTTTGTGATTCATACCTAATAAAAATTGTAGTCATATGAGATCTTATTAGATTCATATTGACATATATTTTCTAAATATCAACTTTTGATAAGTTTTAGTTATACATAATTCGATATATTAAGAGTCAAAATATGTGTTCAGAAGCGTAAAGTCAACCATGATGCAATATTTAAGGAACGGAGGAAGTATATATAAAATCTGCATTACATTTAGCTTGTCTCTTTGGAATTATTTTTGACACTTGTCCTATTCATTAGAAATGTTAAAGTTATTCGCTTTCCCTTCCGTAAATTGTAACTTTTCTGCTTGTTATCCTTCATTGAATTCCAGGACCTTGTGGAGACCTTAAATCAACTAGAAGAAGGACTGAAGGACAATGTCAAACAAATGAGTTCATTTGAAAAGTATAAACAGGAAGTATTTCTTGGCCATCTTGACTGGTCCCCAGTTCACAAAGACGCTTTCTTCTGGCGAGAGAATATCACCAACTTTGAGGAAAATGATTTCCAGGTGAAATTCCCCTTCTCTTTAGCCTGAGTGATACTGCACATTATACGCATATTTGAAGCCTCCATTAAACTTCTTTCAATGACGGGTACCTCACTGGAGTCACTGCCCATTTGGTAGCCGGTAATAAATGACGGAAATGAGAATGAATTGAAGTGTAATTTTGAAAAAAGAAATGTAACATCATAATACCTCAAGTACTCGTAGATCCGACACTCGGACATGAGTACGGACACTGGACACCATTTTGGAACAAAATCATGAATTTTTTTCACAAAATAACCTAGTCGGACACTTGGATATACCCGTGTCCGACATGGGTACCCGAGTTCGAGTAACATAGATCATAAGCTCATCCTAAACTTGTGTTTTTTCATTCCCACTCAATTCAACCCCGAGGCTATAATGGATGGTAATGAAGATTAATAAAGAAAATGAGGTACTTGAGGTGAATTAGCATTACCATCTATGTTACTCAGATTCGGGTACGAGCGTCAGACACTGGTGCGTGTCCAAGTGTACGACACAGCTAAATTATGAAAATTTTCCTTGATTTTAGACCAAAATGAAGTGTCCATCCATACCCATGTCTGAGTGTCGAGGATCCGATACGGGTACTTGAGGTAAAACAAAGAGTCAGTCGGAGTAACATAGATTACCATGGGGATTTTAGTACATGACTTTCTTCACGAATTTACAACACACCATTTGTTACCGCCTACCAATCCGTCACCTGAACTTTGACTAAGAAATTGACCTCTCGTGAATGCAGGTCTTGAGAGTCCTCATCACTATTTTGGACTCCTCAAGCGACCCGAGATCCCTTTCCGTGGCTTGCTTTGATCTCTCACAGTTCATTCAACATCATCCATCTGGGAGAGTTATAGTTAAAGATCTCAAAGCTAAGGAACGCGTGATGAAACTGATGAATCATGAAAACGCCGAGGTTACCAAGAACGCTCTACTCTGCATCCAAAGGCTCTTCTTGGGAGCCAAGTACGCGAGCTTTTTGCAAGTTTGAAACGTATTTATTGGAGAAATGATGCAGATATCAGCGGATTTCACTATCTCGTAGATGTTCATGATATGTTTCAATGATTGATTTGTTGTTCAATATCCCCTAATAAACAGTATGCATGTCAAAGCTTGTTGAGGCTCGCGATATGGCATAGACAAATGAATGAGGCTACCTATAGACGGGTGTAAATTTTTTCTTTTTTACCTTTGTGACGAGGTTTTGCTCATGTATTTTCACCATTTGGTAGGCTGATGGATGTATTGTTTCATAATTCCCATACACAGCCTGGAAAACAAAATAAACCCTAGTTATTTATTTATTTTCTTGTATCTGCACATTATATTTATATTTTTTTGAGTAGATGAATGCCGTACCTTGGTACAACCTTCTTGTTTTTTATTCAGTAGATTAACCTTTGATTAGTGCATAATCTTTTTTTTTCTTTTTTTTGACATAAGCTTAATCAAAAGTTTACAAGATGCCATGACAATGCACAGAGATGTCAAAAAAAAACTGACCTGATCTACCTGACATCCGACAAAAACTAAAGTAACCAAAAAACAAATATTCACACATTCAATCTGCATGAACACGATAACCCTGCACAAAACATTATCCGATTATGCCATGAACCAATTATACCCAATTTGGTAACCGACAGTTGACCCGATTTGTCAGCCCTTAATCCCTTATTGTCAATTCCCCAACCACGATGGCACAATGCCAAGATTTCAAAACGGAAAGTGAATAAAACAAAGAAAACCCCGAAAAAAATACATCAAACCAAGCTATATCCTTGAGTTTAAGATGGAGTATGCCACAAGCAACTATGTGTTACCTCATAAATAAAACCATCATTTCTGGTTTGTTCTGGTCACATTGACGATCTCCTATGACGATTTTAG AAAAATAAATCATACAAGTAACGCCACGAAAGCACGACGACACTCTGGTCTCCTTCCTTCCATATCCCCTTTGTCTCTCTCTCCTCTGTTCAAAATTTCTGCATAACCTATGACGATCGATCATGCCGAACTCACCACTGACCAGGTTCTCAAAAGGGACATTCCATGGGAGACATACATGACGACCAAGTTGATCACTGGGACAGCCCTTCAACTTTTAAGGCGTTATGACAAGAAGCCTGAGAACCAGAGAGCTTCCTTGCTGGATGATGATGGCCCATCCTACGTTCGAGTATTTGTGAGCATTCTACGTGATATTTTCAAAGAAGAGACTGTGGAATATGTCCTTTCTTTGATCGATGAAATGCTCACTGCAAACTCCAAAAGGGCCCGGCTGTTTCACGATAAATCACTGGCAAGCGAGGATATCTATGAACCGTTTGTAAGATTGCTATGGAAAGGAAACTGGTTCATACAAGAGAAGAGTTGCAAAATACTTGCATTAATCGTTAGCGCACGACCCAAAAACCAGTATAGTGGAGCTGTGAATGGTGAGGCCTCAGATTCAAAAAGCAAATTGACCACCATAGATGATGTCTTAAAAGGATTAGTGGATTGGCTTTGCACACAGCTAAGGAATCCTTCTCATCCCACTCGTGGTATCCCTTCTGCTGTAAATTGCCTTGCTACCTTGTTGAAAGAACCTTTGGTCAGATCATCATTTGTTCAAGTTGATGGGGTGAAGTTACTCATTCCATTGATTAATCCGGTATCTAATCAATCTACACCATTGGCGTCTTCGCAGTCCACTCAGCAATCTATGCAGCTTCTTTATGAAACCTGTCTCTGTATCTGGCTATTGTCATTCTACGAACCTGCACTTGAGTACTTGGCTACTTCCAGATGCCTGCCACGGCTGACAGAGGTGGTGAAGAGTTCTACTAAGGAGAAGGTTGTTAGGGTTATTGTTATGACCTTCAAGAATTTGCTACCAAAAGGGACCTTTGGCCCCCAGATGGTGGACCTTGGAATGCCTCAGATTGTACAAAACTTGAAAGCTCAAGCCTGGAGTGATGAGGACCTTGTGGAGACCTTAAATCAACTAGAAGAAGGACTGAAGGACAATGTCAAACAAATGAGTTCATTTGAAAAGTATAAACAGGAAGTATTTCTTGGCCATCTTGACTGGTCCCCAGTTCACAAAGACGCTTTCTTCTGGCGAGAGAATATCACCAACTTTGAGGAAAATGATTTCCAGGTCTTGAGAGTCCTCATCACTATTTTGGACTCCTCAAGCGACCCGAGATCCCTTTCCGTGGCTTGCTTTGATCTCTCACAGTTCATTCAACATCATCCATCTGGGAGAGTTATAGTTAAAGATCTCAAAGCTAAGGAACGCGTGATGAAACTGATGAATCATGAAAACGCCGAGGTTACCAAGAACGCTCTACTCTGCATCCAAAGGCTCTTCTTGGGAGCCAAGTACGCGAGCTTTTTGCAAGTTTGAAACGTATTTATTGGAGAAATGATGCAGATATCAGCGGATTTCACTATCTCGTAGATGTTCATGATATGTTTCAATGATTGATTTGTTGTTCAATATCCCCTAATAAACAGTATGCATGTCAAAGCTTGTTGAGGCTCGCGATATGGCATAGACAAATGAATGAGGCTACCTATAGACGGGTGTAAATTTTTTCTTTTTTACCTTTGTGACGAGGTTTTGCTCATGTATTTTCACCATTTGGTAGGCTGATGGATGTATTGTTTCATAATTCCCATACACAGCCTGGAAAACAAAATAAACCCTAGTTATTTATTTATTTTCTTGTATCTGCACATTATATTTATATTTTTTTGAGTAGATGAATGCCGTACCTTGGTACAACCTTCTTGTTTTTTATTCAGTAGATTAACCTTTGATTAGTGCATAATCTTTTTTTTTCTTTTTTTTGACATAAGCTTAATCAAAAGTTTACAAGATGCCATGACAATGCACAGAGATGTCAAAAAAAAACTGACCTGATCTACCTGACATCCGACAAAAACTAAAGTAACCAAAAAACAAATATTCACACATTCAATCTGCATGAACACGATAACCCTGCACAAAACATTATCCGATTATGCCATGAACCAATTATACCCAATTTGGTAACCGACAGTTGACCCGATTTGTCAGCCCTTAATCCCTTATTGTCAATTCCCCAACCACGATGGCACAATGCCAAGATTTCAAAACGGAAAGTGAATAAAACAAAGAAAACCCCGAAAAAAATACATCAAACCAAGCTATATCCTTGAGTTTAAGATGGAGTATGCCACAAGCAACTATGTGTTACCTCATAAATAAAACCATCATTTCTGGTTTGTTCTGGTCACATTGACGATCTCCTATGACGATTTTAG ATGACGATCGATCATGCCGAACTCACCACTGACCAGGTTCTCAAAAGGGACATTCCATGGGAGACATACATGACGACCAAGTTGATCACTGGGACAGCCCTTCAACTTTTAAGGCGTTATGACAAGAAGCCTGAGAACCAGAGAGCTTCCTTGCTGGATGATGATGGCCCATCCTACGTTCGAGTATTTGTGAGCATTCTACGTGATATTTTCAAAGAAGAGACTGTGGAATATGTCCTTTCTTTGATCGATGAAATGCTCACTGCAAACTCCAAAAGGGCCCGGCTGTTTCACGATAAATCACTGGCAAGCGAGGATATCTATGAACCGTTTGTAAGATTGCTATGGAAAGGAAACTGGTTCATACAAGAGAAGAGTTGCAAAATACTTGCATTAATCGTTAGCGCACGACCCAAAAACCAGTATAGTGGAGCTGTGAATGGTGAGGCCTCAGATTCAAAAAGCAAATTGACCACCATAGATGATGTCTTAAAAGGATTAGTGGATTGGCTTTGCACACAGCTAAGGAATCCTTCTCATCCCACTCGTGGTATCCCTTCTGCTGTAAATTGCCTTGCTACCTTGTTGAAAGAACCTTTGGTCAGATCATCATTTGTTCAAGTTGATGGGGTGAAGTTACTCATTCCATTGATTAATCCGGTATCTAATCAATCTACACCATTGGCGTCTTCGCAGTCCACTCAGCAATCTATGCAGCTTCTTTATGAAACCTGTCTCTGTATCTGGCTATTGTCATTCTACGAACCTGCACTTGAGTACTTGGCTACTTCCAGATGCCTGCCACGGCTGACAGAGGTGGTGAAGAGTTCTACTAAGGAGAAGGTTGTTAGGGTTATTGTTATGACCTTCAAGAATTTGCTACCAAAAGGGACCTTTGGCCCCCAGATGGTGGACCTTGGAATGCCTCAGATTGTACAAAACTTGAAAGCTCAAGCCTGGAGTGATGAGGACCTTGTGGAGACCTTAAATCAACTAGAAGAAGGACTGAAGGACAATGTCAAACAAATGAGTTCATTTGAAAAGTATAAACAGGAAGTATTTCTTGGCCATCTTGACTGGTCCCCAGTTCACAAAGACGCTTTCTTCTGGCGAGAGAATATCACCAACTTTGAGGAAAATGATTTCCAGGTCTTGAGAGTCCTCATCACTATTTTGGACTCCTCAAGCGACCCGAGATCCCTTTCCGTGGCTTGCTTTGATCTCTCACAGTTCATTCAACATCATCCATCTGGGAGAGTTATAGTTAAAGATCTCAAAGCTAAGGAACGCGTGATGAAACTGATGAATCATGAAAACGCCGAGGTTACCAAGAACGCTCTACTCTGCATCCAAAGGCTCTTCTTGGGAGCCAAGTACGCGAGCTTTTTGCAAGTTTGA MTIDHAELTTDQVLKRDIPWETYMTTKLITGTALQLLRRYDKKPENQRASLLDDDGPSYVRVFVSILRDIFKEETVEYVLSLIDEMLTANSKRARLFHDKSLASEDIYEPFVRLLWKGNWFIQEKSCKILALIVSARPKNQYSGAVNGEASDSKSKLTTIDDVLKGLVDWLCTQLRNPSHPTRGIPSAVNCLATLLKEPLVRSSFVQVDGVKLLIPLINPVSNQSTPLASSQSTQQSMQLLYETCLCIWLLSFYEPALEYLATSRCLPRLTEVVKSSTKEKVVRVIVMTFKNLLPKGTFGPQMVDLGMPQIVQNLKAQAWSDEDLVETLNQLEEGLKDNVKQMSSFEKYKQEVFLGHLDWSPVHKDAFFWRENITNFEENDFQVLRVLITILDSSSDPRSLSVACFDLSQFIQHHPSGRVIVKDLKAKERVMKLMNHENAEVTKNALLCIQRLFLGAKYASFLQV Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following exon feature(s) are a part of this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following three_prime_UTR feature(s) are a part of this mRNA:
Homology
BLAST of Spo11980.1 vs. NCBI nr
Match: gi|902208542|gb|KNA15974.1| (hypothetical protein SOVF_093460 [Spinacia oleracea]) HSP 1 Score: 920.2 bits (2377), Expect = 1.400e-264 Identity = 465/465 (100.00%), Postives = 465/465 (100.00%), Query Frame = 1
BLAST of Spo11980.1 vs. NCBI nr
Match: gi|731326131|ref|XP_010673864.1| (PREDICTED: V-type proton ATPase subunit H [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 860.5 bits (2222), Expect = 1.300e-246 Identity = 425/464 (91.59%), Postives = 447/464 (96.34%), Query Frame = 1
BLAST of Spo11980.1 vs. NCBI nr
Match: gi|29170386|gb|AAO65974.1| (putative vacuolar ATPase subunit H protein [Suaeda salsa]) HSP 1 Score: 844.3 bits (2180), Expect = 9.800e-242 Identity = 419/464 (90.30%), Postives = 443/464 (95.47%), Query Frame = 1
BLAST of Spo11980.1 vs. NCBI nr
Match: gi|26986110|emb|CAD27445.1| (putative vacuolar ATPase subunit H [Mesembryanthemum crystallinum]) HSP 1 Score: 769.2 bits (1985), Expect = 4.000e-219 Identity = 394/470 (83.83%), Postives = 428/470 (91.06%), Query Frame = 1
BLAST of Spo11980.1 vs. NCBI nr
Match: gi|590639446|ref|XP_007029672.1| (Vacuolar ATP synthase subunit H family protein isoform 2 [Theobroma cacao]) HSP 1 Score: 765.8 bits (1976), Expect = 4.400e-218 Identity = 381/464 (82.11%), Postives = 422/464 (90.95%), Query Frame = 1
BLAST of Spo11980.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RAD9_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_093460 PE=4 SV=1) HSP 1 Score: 920.2 bits (2377), Expect = 9.800e-265 Identity = 465/465 (100.00%), Postives = 465/465 (100.00%), Query Frame = 1
BLAST of Spo11980.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CMF0_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_4g074640 PE=4 SV=1) HSP 1 Score: 860.5 bits (2222), Expect = 9.200e-247 Identity = 425/464 (91.59%), Postives = 447/464 (96.34%), Query Frame = 1
BLAST of Spo11980.1 vs. UniProtKB/TrEMBL
Match: Q84T90_SUASA (Putative vacuolar ATPase subunit H protein OS=Suaeda salsa PE=2 SV=1) HSP 1 Score: 844.3 bits (2180), Expect = 6.900e-242 Identity = 419/464 (90.30%), Postives = 443/464 (95.47%), Query Frame = 1
BLAST of Spo11980.1 vs. UniProtKB/TrEMBL
Match: G4XKY2_9CARY (Vacuolar proton pump ATPase subunit H OS=Suaeda corniculata GN=VHA-H PE=2 SV=1) HSP 1 Score: 844.3 bits (2180), Expect = 6.900e-242 Identity = 419/464 (90.30%), Postives = 443/464 (95.47%), Query Frame = 1
BLAST of Spo11980.1 vs. UniProtKB/TrEMBL
Match: Q8GUB3_MESCR (Putative vacuolar ATPase subunit H OS=Mesembryanthemum crystallinum GN=vha-H PE=2 SV=1) HSP 1 Score: 769.2 bits (1985), Expect = 2.800e-219 Identity = 394/470 (83.83%), Postives = 428/470 (91.06%), Query Frame = 1
BLAST of Spo11980.1 vs. ExPASy Swiss-Prot
Match: VATH_ARATH (V-type proton ATPase subunit H OS=Arabidopsis thaliana GN=VHA-H PE=1 SV=1) HSP 1 Score: 698.0 bits (1800), Expect = 7.100e-200 Identity = 343/462 (74.24%), Postives = 399/462 (86.36%), Query Frame = 1
BLAST of Spo11980.1 vs. ExPASy Swiss-Prot
Match: VATH_ORYSJ (Probable V-type proton ATPase subunit H OS=Oryza sativa subsp. japonica GN=Os07g0549700 PE=2 SV=1) HSP 1 Score: 691.0 bits (1782), Expect = 8.700e-198 Identity = 335/462 (72.51%), Postives = 399/462 (86.36%), Query Frame = 1
BLAST of Spo11980.1 vs. ExPASy Swiss-Prot
Match: VATH_HUMAN (V-type proton ATPase subunit H OS=Homo sapiens GN=ATP6V1H PE=1 SV=1) HSP 1 Score: 228.4 bits (581), Expect = 1.600e-58 Identity = 128/453 (28.26%), Postives = 252/453 (55.63%), Query Frame = 1
BLAST of Spo11980.1 vs. ExPASy Swiss-Prot
Match: VATH_MOUSE (V-type proton ATPase subunit H OS=Mus musculus GN=Atp6v1h PE=1 SV=1) HSP 1 Score: 227.3 bits (578), Expect = 3.600e-58 Identity = 128/453 (28.26%), Postives = 250/453 (55.19%), Query Frame = 1
BLAST of Spo11980.1 vs. ExPASy Swiss-Prot
Match: VATH_PIG (V-type proton ATPase subunit H OS=Sus scrofa GN=ATP6V1H PE=2 SV=1) HSP 1 Score: 223.8 bits (569), Expect = 3.900e-57 Identity = 125/453 (27.59%), Postives = 250/453 (55.19%), Query Frame = 1
BLAST of Spo11980.1 vs. TAIR (Arabidopsis)
Match: AT3G42050.1 (vacuolar ATP synthase subunit H family protein) HSP 1 Score: 698.0 bits (1800), Expect = 4.000e-201 Identity = 343/462 (74.24%), Postives = 399/462 (86.36%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo11980.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo11980.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo11980.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo11980.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 1
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
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