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.ATAATTTTCCTCACCAAAAGGTTCTATGCTCATCAGACGACTTAACGACTCTACGAGCGTGATCAGTGTTCATGTTCACTGTTGAAGTGTTCAATCAGTGATACCCCCAATGGCCCAATCCCATTTGTGTGCCTAAATAACGACCAGAACAGTCTGGAATAAGAACCCAGCAAGAGGAGAGAGAAAAACATGGCCGCAACCTCAGCCATGGAAACCGTTCCAGCGGTGGCGCTTCGGTCTGTTCTCCAACGGGTCAGCCAAGCTGCCGAGCGGTCCGGTCGCCGCCCCGACCATGTGAAACTGGTCGCCGTCAGTAAAACCAAGCCTGTCTCTGTCCTCCGCGAGGTCTACGATGCCGGCCACCGTTGCTTCGGCGAGAATTACGTTCAGGAGATAATTGAAAAAGCTCCTCAGGTTAATCCTCTCTTTAGCGTTTTTTACTCAGTTGAAGAATCTTCTGTTTTTGAGCGTTTATGTTATCTGTAGTTGTTTTTGCGGTTAAGTTATTCCCAAAATTGATTTAATTTAATTTAGGAATGCATGACAAAATCATGCTTCAATTGGTGTTATCGATGTTTATAATACCGTTTTGTGTTTGGAATTTGGAAAAAACTGAAATGTGATATTTGAGGTTATAATTAGAAATTTATGAGTAGTTGTAAATTGTTTTGAGATAAATTTTTTGAATTTCTGTTAATTTTTCTGTGATGATCAACAACTGAGTACATGATGTTTAGGAGAATATTTGTATCAATTTCATTATGAATATCCGGATACATAGGATAGATTACAGTAGTTAACAACAACCTAGTAGATGAAGTGATGAACATAAGCTATATAATGAACTAGGAGCTGATACTATCTAAACAGCAGAAAAATGTTAATTTCAAGATAACCATTGACGGGTTTATCTCTATGATGTCCTCTCAAGATTAATGGTGGTAGAGGAAGTCTAGTCATGGGGACATTATCACATCAAGGTCTGAAACCGAGTAGGATTTAGGGGCTTCGTGACTCGTAAGTGCATCTGCTAGTTGTCATTATTTGAATTCATACAAAGCTTATCACTCTACATTTCCATGAACAATATTGTCAAGATCAAGAATCAAGATGCTTCATTTTTGGAATGAAATTTAGGGTTGGTTGCGACAAATGTTGTGGGAAACTCCAATATCAATATTTTCACAATAGATGGACATTGGAGTTGTGGGCAAGTGCCAAGTGACCAACCTCACTGAGATGATTCATATACCAATAATACCTAGCATGTTGTGGCTGCACTATTACGCTGCTTCAGTTGAGGACCGGGCTGAATTTCATTGATTCTTGGAGCTTCTCGACAAGGGCTTGCAGCTGAAATAAACTTGGAGCTTCTCAACCTATCACGGAGACATAACCATCCTTACTGCCAGCCCAATCTGCATCAGTGTAGGCATATGAGAGAAGTGGTGAGTTGGTGACCGGTGACTAGCGATACAAACATCATACAATGACAAATAGTCCACTAAAGTATGGAGGGGATGTTTGAGCGAGTCTAAAGAGAATCACAGTTTTCTGTGAAAGCAACATAATGCTGGGGGAGATATATACATTGGAGACTGCAACAAAATAGGATGTGGGGTTTGGGAGAGGGGTTTCTGTTTGATTGGACAATTCTGGATCGATAGCAATCCGGCTGGGAACTGGTTTTGCAGTGGTCATTAGATCTTTGAAAAGACCACCATAAATGTGTTCACATGGGTTTAGCAAGAGCCAAATGTTGTTAGGTATAACTTTGACACCAAGGAAGTATAATTGTCCATGAAATGTTTGCAACCGTGTCTATTAAGTGGTGGTAGAAGGAATTGATAATAAATGTCCTAGATATTTGAGTGAGAAGTGAACTAATTATTTGGTTATGAAGATATTCATAGTGGCGGAATTTGGTCTGGTAAGATAATATCATAATTTTAATCTATGACGGTTTGGTAGTTGGTCATTGCAATTTTGAAGCACTTGTCATTGGTAACCCCTAGGTGTAAGGGCTTTGCTAATTGGCGCAATATGGTTTGCACTGTTTTCTCTTGTATATGCATCGCTGTTTATCGTGCCTCATGATAGATAAACATATGTTTGGGAATTCGGACAATGTTTTCCATGCCTCGTGAATAATCTTAGATTGTTAGATGGGTTTAGCACGAGGAAGGGAGAGAGGGTCTGAACGAGTGCTCCAAAATGAGTTTGTTTTGACAAAGTTAAATTAATTCTCTCCCAGTTTTTTTAGGAATTACATCTTGGCCGACACAAAGATTAAGAAAGGTGAGTTGATTTTCTTATAATAATGATGCAAGTGGTGAATATATTAATTCTTTATTGTAAATATTTCATAGTGGGTGAATAATTTAATGTGAGAAACGATGATGTGAGTATGTGCAGAGACCATATGAGAGAGATAAATAATACTCCCTCCGTGTCGGAATACTCGAAACGGTTTGACTTTTTGCATTATTCACATAATTCACTTTGATCCTATTTTATTTCAAGTATATGAAAACAAATGTTAGTATATAATATATTGTTGGCTTCATCTTAATATATATTTCCAAAATATTAATATTTTATAAGTTTTTATAATATTTAGTTAAAGATATTGGTCGTCAAAGTTGTGCATTGGCAAGCGTGTTCAGTAAAAACTTGCAAGTATTCCGGGACGGAGGGAGTAAACATTAAGGGAGTGGGAACTTAAGTGTAATATTTTAAGGTAGAAGTTACAAAAAAGAAAATGTAACTTCTTAAAAAAAAGTCGAAAATGGTATATGTAACTCCTTAAGAAATACAAAGGGAGTATAAGATTGGTTTTGACACAAAGTTGTTTTCTTGAGTTTTTCCTGGTTTTTAGTAGAGCTGTCAATTCTCATAATCTCAACCCAAACCGTTGAACCCGCTTGGTTGGTCCGATCATTTAGAACCCATAACCGTTAATAACCTGCGTGCAGGAACTCAAAACCCGATCCAATCCGATTATATTCAACTCGAACTCGAACCGTCCCAAAAATATTAACCCGATTAAGATCCGAAACCCGATAACAAACCGTTATGCAGCAACCCTATCCTTTTCAGCCCGAACCGAATGGATGCTAAACCTCTTAATTGCCCAAGTTGTTTCAATCCGATTTAATCCGAACCGTTTATAACCCGAACTATTTCGACCCAATCCGTAACCCGTTTAATACGTACCATTACGACCATAACCCGTTTATTCCCGTTACTGATCTTATATAACATTTTTAAAAGTTAGTTATCACCATTGTCCCCCTAATTAAGGCCTCATAATTATTATTTATAAACGTATTAAATATTGTGATTTTAGTAATAAACCGATGTTGTGATTTTAATAACTTGAATTGACACGACCAAAGTACAACCCGCTACGTACTAGACCTGTCAAACGGGTCGGTCGGTTCGGGTTATAAAAATTTACTTTTGGGTTCGGGTTAATTTGGATCGGTCACTTATGGATTCGGGTTTACAAGTGCTTGTTCAAGATCCAAAACTTTCGGGTTCATGTCGATCCAACGGGTTGAGAAATTTTAAAACGCAATTTTCATAAATTTGGGTAATAAATATACAAAGAAGCGCACAAATTAACAAATTTTCATACAAAAGAATATATTTAGTCAAATTCAACCATAAAATGGAGTATGATTCAAATCAAAATCAAATTACACATAACAGCAGTAACAACAATATGTTTATTTTATTTAAAGTTCAATATAATCTTATTTATAACTACAAATACAATAATTTTCAATCGATCAGGCAAAAAATGGGTTCAATCAGGTTTTGACTCGTTACTTTTCAGGTTGTTCGGGTTCGGGTAAAATCGGGTTACGATCACAATATGTTTTCCAAGATATAGTATTTCGGGTCGGGTCGAATTTTGACGGGTCTACCCACTACCCATTTCATCCCACTACTGATTTATCCACATTGTATGAACCCAAACCAATAAGAACCAAATTAATAAGAACTCGAACCAATATGAACCTGAACCCAATGTAACCTGGCTAAACCTAATTAACCCGACCCATTTCAGATCGTTATCCGATGAACCCGACCCTATGTAAGTCCAACCTGATATGATCAAAACGTGTTACAATCCGGATAAAGCTGTTTACAACCCGACACGTTCCAACCTGACCCAACTTGACCCGACCCACGACCCAATTATAATCTGATCCGGTATGAACCCGTGCTTAATCAGCCGGAACTGACCTGACCTTTTAGTTTCAAACCCGATCTGATCCAACCCGTTAACAAAATAAACTCGTTTCAAGCTGAACTGATGAACCCGACTCGAACTGTTTGTCCGAATTGACACTCCTTGTTTTTGGTGAATATTGTTTGTGGATGTAAGTTTAATCAAGTTATTTAGAGAAATGAGGATGAATGGTTTAGAACACTCAATTTGGTTTGGATACTTAGGATTTTTGAATGTCATTGGACCCATGAGAGCAGCCTGAAAGGAGAATAAATGCATAATAGGTATTCTGGATGAGAAGGATCTAATACTCTAGAAGTGTAGATATTTCCATCAATAAGTGTACAGATACTTATACAGAGAGTGGACTACAGTAGTCAGCAACAACTTATATAGGAGATAGGCATAAGCTTTAAAACAAACTAGGATGGTATTATATAAAAAGCAGAAAAGATATTACCTTTGAAGATAAATCAAGAGAAATCGCTAAGATGTTTTATCTTTAGTACAAAGTATAAGGTAGTGAATGTATAGTTTGTGTTAAATTGTACACAGGGATGCAAATTTATTTGGCAACCATAACTTTTCTGTCATAACTTTATTGTTTTTTTCCCTATCTGGAATTAATAGTAGCTTTTATTAATCAAAACATCAATATTCATTCATAGCGACACTAAACAAAGAAATACTTAAAATTGCTTACTAAAGTTTATGATAACTAGCTTCAATAGTACCTTAGCGGCTTGTTTGGTAGGTGGTACTAAATGGTGGTAATGATGATGAGTTTGTAAGGAAAGTCCGCCAATGTCCTTGGTAAATTTTTATTACCACTCATTACCTTATAAGAGGGTGCTATAGAGTGGTAAATAAAAACTCAACTATAAGATGAAGAAGCATTATCGCGGACATTGACATGCGATATTTAATGCAAAGTTATCATTATCATTGCCTTTATTTTTCACCGTCTACCTAAGGCTTAGGATTCTGGCAAATGAGTTTTAAGAGTACAAGAAATCCGAAACCCAGATAATATTTTTATGAAATAAAGGCCTTTCGTGTTTTAATAAAAAGTTGTGAACCCAAATGAGCAATATATCTTCTTTATCAGAAGAATCTCATGCTCTGTTTTGTGTATTGTGTAGCTTCCGGAAGATATTGAGTGGCATTTCATTGGGAACTTGCAGAGCAACAAAGTTAAACCTCTTCTAAGTAAGGCACTCTTTCTCTTCCTGAGCTGTGTTCTGCAAGCACACACTGATGCAAAGATGTGTTCACTTTGGAATATAAGGGAGAGGACAACAATTGTGTGTAGATTGCAGTCGTGTAGACTGTATCATTTGAGTTGATTTGCTTCTTACAAACTCATCGATCTAGTTCATGCATGTCGGTACTCAAATCTTTATTTATTCTATCTACTAAAGTATTCTTCTTTTTTTCGTTTTGCAGCTGGTGTCCCAAATCTTGCCATGGTGGAGAGTGTGGATGATCAGAAGGTAAACACATAATTGGCAAGTTAAATTTTGTGATGAATGATGAATCAAGTTGCAATGTCTTGCACACACCTGATGTACAATAACAAATTATTGTACATCGGTTAGCTAGTTTTTGATAACTTTTAATATATTTTGAGTAACTTTTTATATTACGAAGTAACTTTGATGGATAAGCTTTTTACAGGGTTACCTTTATACATTATGAATAACTTTGAAAGGATAATTTTTATTGAAATTTTTTTTTGTCACTAAGACATAAATAACTTGTACTTATATCGAGGTAACGCTTAAGCATTTTGGGGTAACTTTACACCCGCTTTACAATATTTATTGTATACCGGTGTAATTAAGAATTTGTGATCAAGTTATGAATAGTCAGGAATTCATACTCACTTGATATATTTGGTGTTTTTTTTTTTTTAACTTATAAAAATTTATATCTCAGTCTTATAATTTAGTGCTCACCTTTTGCTCATAATATGCAAAAAATCATTAACTGATTTGCATGGTGCCATTATCCTCTACGGTGTGTTTTGATAACGAAATAGAAGGGAATGGAAGGGAAGGGAAAGGAAAGTGAGGGGGAAGGTGAGCTCCATGTTCCCTCCAAATCTCTCCAATTTTGGAGAGATGATACTTGTTAAATAAGGAAGAAAAACGTACCCTTCCCTCCCTCTCCTTTCCCCAACTTTTTATCCAAACAAGGGAGCTTGTTCCCCTCCCTTTCCTCCACATTTTTGCTTATCCAAACATAGTGCTAGTTTTGTTTCAGGTACTTTGTAAATTTTGTTGGCAGCGTATAGGAGTAGTTTTTAATCCAGCATTTGTATGTTCTGATCATATGTTTCTCTATTACTGAAGCATCATCAGCTAGTATATTAATGATATACGAACAATATATACGAACAAAAGTATGTTATGACATTCATTGGTTCGTCAGTTCTGCCAAGAGTTACAACTTAAAGGTCTTCTTTCTATTTGCAGATAGCCAATCATCTGGATCGTGCAGTGGGTAATCTTGGAAGAAAACCATTAAAAGTTTTGGTCCAAGTGAATACCAGTGGAGAAATATGTGAGTATCATGCCTTTCTTGTAAGATTTTAGAGTAATTCATATGCATCTCTCAAACATAACAAATTAACAATTAATTCTTTCATAACTCATGCCGAAATTTGGGTAGAAAAGGCCAATGCTTGTTCAATATGGTGCCTTACTGAGTTACTGATGTTAGGACATACTAAATGAAATTCATGGTTTTTGGTAGCACTGGGCTTTCACATTGCTGGGCTGTAAATATGCATAATATCCTTCCAACCAATATCTACAAAAGTTACGTCACATGCAAAGGGATGTGCTCGCTGCTGGCCAGTTATTGGTCAATGAAGACAATTGTGTGTACTGGATGGTTTGTTTGTTACAAAGTATTATATCATTTTTAATCCCCCACCGGTTCAACCCTCCCTTTGGTAATATGCAATAATTCTGGAATTTACCTGAAACCATTGAAGGTTGTACAAGACCTTAGTACTTCGGCAGCTTTTAATAAAACTTGGTTTCCACAACATTCATATGTAAGCTGAGTCATTCGTACATATCAAATTTAATGTACTAGGAAACAGTGTAGGATGGTTCGGTGCTCCTTTCTTTCCAAATTGGTTATCTATTCACATGCAACAAATTGAGTTTCCACGCTGATTTCCTTGTCCAATGTGCTTGCAGCAAAGTTTGGGGTTGAACCTTCAGAATGTGTAGATCTTGCAAAACACGTGTGCCTAAATTGTCCCAACCTTGAGTTTTGTGGCTTAATGACAATCGGGATGTTGGATTATACATCAACTCCTGAAAACTTCAAGGTATTCTGCTCAGCACGTAAGTTTGCCTTACTGCTCAAGACTTTTTGTGGTCTGAATAATTATTTTTCCTTGTAGACATTAGCAAACTGCAGAAATGAGGTTTGCAAGAGTCTTGGGATTAAAGAAGAACAATGCGAGTTATCTATGGGCATGTCTTCTGACTTTGAGCAAGCGGTAAGCAACTTATGACTAAATGAAATACTCTTTATTTGAACTTGTGATATGATGTTAGTTTTGGTTTAACTTATATTAGCATCTCGATCCTTGGGAATCTTGGGATATCATATGAGGTAATCCAAGTAAGTAAAATTTACTTGACAAGTTCATTTGTTGCAGATTGAGATGGGCAGCTCAGTTGTGAGAATCGGATCCACCATATTTGGGGCTAGAGAATATCCAAAGAAACAATAAAAATAGTATCTTCTCTTCAATTTAATTATCAAAATTTTCATTGTCAAGGGGTTTTATGGGATCAATTGTTTCAAAACCCCTGGCTTTGCCATGCCGCTATGTTCAAGGTTCACCAAATCATGTGTTGTATTCGTGGTTGAAAAACATACCCTATGCGCATGTTTAGTATTACAACACTTACACATATGATTGAACCTTGACATTGTATTGTTGTTAATAATTATGAAACAAACTATATTTACCTTGAGTGTTCCCTCATTGCAATAAGTGGTTTCAGATATGTTAGTTGTATTTAGCTTGAAGAAAATCTGGGTTTTATGGTTTTTAAACATTCATATTTTTATTGATGTAATCTGTTAAGACACTTAGACCTGGTTTATGGTAGATTTTGTTAGGGTTCTATTTGAAAATTTATCTAATGCCCTAACACTCCGTAGTTCAGTTTGTATACGTAACACACTATCCAAAATTTGTTTTCTGATGGGGATTTAGTTTATTGTTTGGTTATCGTGGTTACTACTTACTAGTAGTTTCAGGGTTTTGTGTATCTACACATTGATACAGAGTGCATTTGATTTTAGCGTTTCAAAGTCTGTGTATGGACTCGACTACTCGAGTAGTTAACATCTCTATCAGAACTAACTCCGGTAGAATCTACCTAGTGGAGCAATACAACTTACAAATGAAATGTTGATATTGCTTTAACTGTTGTGGATGCTAATGCAATACAACTTACAAATCAAATGTAAACTTGTCTACAATATGCTACTCCCTCCGTATTCAATTAAAACAAGTTTTCCTAATTTCCTTAATCGGTTGTGCTTAATTAAAAATACATTTTCAATTTTTGGCATGTTATGGTCCTCTCTTTCGATTATATTAAACTTTTTTTCCTTTAAACCCACTTAAAATCTTTACTGAACTATGACCAGCCGAGCCCTGAGCTTGTGGTCCTCCTTTGAGCGTGGGTTGTCTCATCCTTACTCACATTTTACTACAATAAATAATTCAGCCACTATCAATTTCTTACAATAAATAATAATTCAATACCTCACTTTCATCTTATTTTAATAAATTTAACTCACCT ATAATTTTCCTCACCAAAAGGTTCTATGCTCATCAGACGACTTAACGACTCTACGAGCGTGATCAGTGTTCATGTTCACTGTTGAAGTGTTCAATCAGTGATACCCCCAATGGCCCAATCCCATTTGTGTGCCTAAATAACGACCAGAACAGTCTGGAATAAGAACCCAGCAAGAGGAGAGAGAAAAACATGGCCGCAACCTCAGCCATGGAAACCGTTCCAGCGGTGGCGCTTCGGTCTGTTCTCCAACGGGTCAGCCAAGCTGCCGAGCGGTCCGGTCGCCGCCCCGACCATGTGAAACTGGTCGCCGTCAGTAAAACCAAGCCTGTCTCTGTCCTCCGCGAGGTCTACGATGCCGGCCACCGTTGCTTCGGCGAGAATTACGTTCAGGAGATAATTGAAAAAGCTCCTCAGCTTCCGGAAGATATTGAGTGGCATTTCATTGGGAACTTGCAGAGCAACAAAGTTAAACCTCTTCTAACTGGTGTCCCAAATCTTGCCATGGTGGAGAGTGTGGATGATCAGAAGATAGCCAATCATCTGGATCGTGCAGTGGGTAATCTTGGAAGAAAACCATTAAAAGTTTTGGTCCAAGTGAATACCAGTGGAGAAATATCAAAGTTTGGGGTTGAACCTTCAGAATGTGTAGATCTTGCAAAACACGTGTGCCTAAATTGTCCCAACCTTGAGTTTTGTGGCTTAATGACAATCGGGATGTTGGATTATACATCAACTCCTGAAAACTTCAAGACATTAGCAAACTGCAGAAATGAGGTTTGCAAGAGTCTTGGGATTAAAGAAGAACAATGCGAGTTATCTATGGGCATGTCTTCTGACTTTGAGCAAGCGATTGAGATGGGCAGCTCAGTTGTGAGAATCGGATCCACCATATTTGGGGCTAGAGAATATCCAAAGAAACAATAAAAATAGTATCTTCTCTTCAATTTAATTATCAAAATTTTCATTGTCAAGGGGTTTTATGGGATCAATTGTTTCAAAACCCCTGGCTTTGCCATGCCGCTATGTTCAAGGTTCACCAAATCATGTGTTGTATTCGTGGTTGAAAAACATACCCTATGCGCATGTTTAGTATTACAACACTTACACATATGATTGAACCTTGACATTGTATTGTTGTTAATAATTATGAAACAAACTATATTTACCTTGAGTGTTCCCTCATTGCAATAAGTGGTTTCAGATATGTTAGTTGTATTTAGCTTGAAGAAAATCTGGGTTTTATGGTTTTTAAACATTCATATTTTTATTGATGTAATCTGTTAAGACACTTAGACCTGGTTTATGGTAGATTTTGTTAGGGTTCTATTTGAAAATTTATCTAATGCCCTAACACTCCGTAGTTCAGTTTGTATACGTAACACACTATCCAAAATTTGTTTTCTGATGGGGATTTAGTTTATTGTTTGGTTATCGTGGTTACTACTTACTAGTAGTTTCAGGGTTTTGTGTATCTACACATTGATACAGAGTGCATTTGATTTTAGCGTTTCAAAGTCTGTGTATGGACTCGACTACTCGAGTAGTTAACATCTCTATCAGAACTAACTCCGGTAGAATCTACCTAGTGGAGCAATACAACTTACAAATGAAATGTTGATATTGCTTTAACTGTTGTGGATGCTAATGCAATACAACTTACAAATCAAATGTAAACTTGTCTACAATATGCTACTCCCTCCGTATTCAATTAAAACAAGTTTTCCTAATTTCCTTAATCGGTTGTGCTTAATTAAAAATACATTTTCAATTTTTGGCATGTTATGGTCCTCTCTTTCGATTATATTAAACTTTTTTTCCTTTAAACCCACTTAAAATCTTTACTGAACTATGACCAGCCGAGCCCTGAGCTTGTGGTCCTCCTTTGAGCGTGGGTTGTCTCATCCTTACTCACATTTTACTACAATAAATAATTCAGCCACTATCAATTTCTTACAATAAATAATAATTCAATACCTCACTTTCATCTTATTTTAATAAATTTAACTCACCT ATGGCCGCAACCTCAGCCATGGAAACCGTTCCAGCGGTGGCGCTTCGGTCTGTTCTCCAACGGGTCAGCCAAGCTGCCGAGCGGTCCGGTCGCCGCCCCGACCATGTGAAACTGGTCGCCGTCAGTAAAACCAAGCCTGTCTCTGTCCTCCGCGAGGTCTACGATGCCGGCCACCGTTGCTTCGGCGAGAATTACGTTCAGGAGATAATTGAAAAAGCTCCTCAGCTTCCGGAAGATATTGAGTGGCATTTCATTGGGAACTTGCAGAGCAACAAAGTTAAACCTCTTCTAACTGGTGTCCCAAATCTTGCCATGGTGGAGAGTGTGGATGATCAGAAGATAGCCAATCATCTGGATCGTGCAGTGGGTAATCTTGGAAGAAAACCATTAAAAGTTTTGGTCCAAGTGAATACCAGTGGAGAAATATCAAAGTTTGGGGTTGAACCTTCAGAATGTGTAGATCTTGCAAAACACGTGTGCCTAAATTGTCCCAACCTTGAGTTTTGTGGCTTAATGACAATCGGGATGTTGGATTATACATCAACTCCTGAAAACTTCAAGACATTAGCAAACTGCAGAAATGAGGTTTGCAAGAGTCTTGGGATTAAAGAAGAACAATGCGAGTTATCTATGGGCATGTCTTCTGACTTTGAGCAAGCGATTGAGATGGGCAGCTCAGTTGTGAGAATCGGATCCACCATATTTGGGGCTAGAGAATATCCAAAGAAACAATAA MAATSAMETVPAVALRSVLQRVSQAAERSGRRPDHVKLVAVSKTKPVSVLREVYDAGHRCFGENYVQEIIEKAPQLPEDIEWHFIGNLQSNKVKPLLTGVPNLAMVESVDDQKIANHLDRAVGNLGRKPLKVLVQVNTSGEISKFGVEPSECVDLAKHVCLNCPNLEFCGLMTIGMLDYTSTPENFKTLANCRNEVCKSLGIKEEQCELSMGMSSDFEQAIEMGSSVVRIGSTIFGAREYPKKQ Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo25142.1 vs. NCBI nr
Match: gi|902147034|gb|KNA05121.1| (hypothetical protein SOVF_193260 [Spinacia oleracea]) HSP 1 Score: 490.0 bits (1260), Expect = 2.500e-135 Identity = 244/244 (100.00%), Postives = 244/244 (100.00%), Query Frame = 1
BLAST of Spo25142.1 vs. NCBI nr
Match: gi|731352072|ref|XP_010687348.1| (PREDICTED: proline synthase co-transcribed bacterial homolog protein-like isoform X1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 447.6 bits (1150), Expect = 1.400e-122 Identity = 221/244 (90.57%), Postives = 232/244 (95.08%), Query Frame = 1
BLAST of Spo25142.1 vs. NCBI nr
Match: gi|255554799|ref|XP_002518437.1| (PREDICTED: proline synthase co-transcribed bacterial homolog protein [Ricinus communis]) HSP 1 Score: 413.7 bits (1062), Expect = 2.300e-112 Identity = 201/240 (83.75%), Postives = 221/240 (92.08%), Query Frame = 1
BLAST of Spo25142.1 vs. NCBI nr
Match: gi|747079656|ref|XP_011087040.1| (PREDICTED: proline synthase co-transcribed bacterial homolog protein, partial [Sesamum indicum]) HSP 1 Score: 412.9 bits (1060), Expect = 3.800e-112 Identity = 200/243 (82.30%), Postives = 222/243 (91.36%), Query Frame = 1
BLAST of Spo25142.1 vs. NCBI nr
Match: gi|1009108329|ref|XP_015884186.1| (PREDICTED: proline synthase co-transcribed bacterial homolog protein [Ziziphus jujuba]) HSP 1 Score: 409.8 bits (1052), Expect = 3.300e-111 Identity = 202/244 (82.79%), Postives = 222/244 (90.98%), Query Frame = 1
BLAST of Spo25142.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QF24_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_193260 PE=3 SV=1) HSP 1 Score: 490.0 bits (1260), Expect = 1.700e-135 Identity = 244/244 (100.00%), Postives = 244/244 (100.00%), Query Frame = 1
BLAST of Spo25142.1 vs. UniProtKB/TrEMBL
Match: A0A0J8ELG3_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_8g189600 PE=3 SV=1) HSP 1 Score: 447.6 bits (1150), Expect = 9.800e-123 Identity = 221/244 (90.57%), Postives = 232/244 (95.08%), Query Frame = 1
BLAST of Spo25142.1 vs. UniProtKB/TrEMBL
Match: B9RXG8_RICCO (Proline synthetase associated protein, putative OS=Ricinus communis GN=RCOM_0903650 PE=3 SV=1) HSP 1 Score: 413.7 bits (1062), Expect = 1.600e-112 Identity = 201/240 (83.75%), Postives = 221/240 (92.08%), Query Frame = 1
BLAST of Spo25142.1 vs. UniProtKB/TrEMBL
Match: A0A022R4Y6_ERYGU (Uncharacterized protein OS=Erythranthe guttata GN=MIMGU_mgv1a011838mg PE=3 SV=1) HSP 1 Score: 409.5 bits (1051), Expect = 3.000e-111 Identity = 201/242 (83.06%), Postives = 221/242 (91.32%), Query Frame = 1
BLAST of Spo25142.1 vs. UniProtKB/TrEMBL
Match: W9RHF7_9ROSA (Uncharacterized protein OS=Morus notabilis GN=L484_014173 PE=3 SV=1) HSP 1 Score: 407.1 bits (1045), Expect = 1.500e-110 Identity = 202/244 (82.79%), Postives = 221/244 (90.57%), Query Frame = 1
BLAST of Spo25142.1 vs. ExPASy Swiss-Prot
Match: PROSC_MOUSE (Proline synthase co-transcribed bacterial homolog protein OS=Mus musculus GN=Prosc PE=1 SV=1) HSP 1 Score: 216.5 bits (550), Expect = 3.300e-55 Identity = 123/241 (51.04%), Postives = 165/241 (68.46%), Query Frame = 1
BLAST of Spo25142.1 vs. ExPASy Swiss-Prot
Match: PROSC_DICDI (Proline synthase co-transcribed bacterial homolog protein OS=Dictyostelium discoideum GN=prosc PE=3 SV=2) HSP 1 Score: 214.9 bits (546), Expect = 9.600e-55 Identity = 119/245 (48.57%), Postives = 162/245 (66.12%), Query Frame = 1
BLAST of Spo25142.1 vs. ExPASy Swiss-Prot
Match: PROSC_BOVIN (Proline synthase co-transcribed bacterial homolog protein OS=Bos taurus GN=PROSC PE=2 SV=1) HSP 1 Score: 214.5 bits (545), Expect = 1.300e-54 Identity = 126/253 (49.80%), Postives = 166/253 (65.61%), Query Frame = 1
BLAST of Spo25142.1 vs. ExPASy Swiss-Prot
Match: PROSC_HUMAN (Proline synthase co-transcribed bacterial homolog protein OS=Homo sapiens GN=PROSC PE=1 SV=1) HSP 1 Score: 214.5 bits (545), Expect = 1.300e-54 Identity = 124/253 (49.01%), Postives = 165/253 (65.22%), Query Frame = 1
BLAST of Spo25142.1 vs. ExPASy Swiss-Prot
Match: PROSC_PONAB (Proline synthase co-transcribed bacterial homolog protein OS=Pongo abelii GN=PROSC PE=2 SV=1) HSP 1 Score: 207.2 bits (526), Expect = 2.000e-52 Identity = 122/253 (48.22%), Postives = 161/253 (63.64%), Query Frame = 1
BLAST of Spo25142.1 vs. TAIR (Arabidopsis)
Match: AT1G11930.1 (Predicted pyridoxal phosphate-dependent enzyme, YBL036C type) HSP 1 Score: 374.4 bits (960), Expect = 5.300e-104 Identity = 188/232 (81.03%), Postives = 203/232 (87.50%), Query Frame = 1
BLAST of Spo25142.1 vs. TAIR (Arabidopsis)
Match: AT4G26860.2 (Predicted pyridoxal phosphate-dependent enzyme, YBL036C type) HSP 1 Score: 355.5 bits (911), Expect = 2.600e-98 Identity = 176/251 (70.12%), Postives = 206/251 (82.07%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo25142.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo25142.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo25142.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo25142.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 2
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
|