Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSexonthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGCCTCTTCGTCGTACCCGAAGAAAGATCGCCGAGAGCTCACCTAGTTGGGCTGCTGAAGAGGATGCCTGTGACGTGGAGGTAGGGGAGCTGGAGGAAGCGGAGGTCAGGGGTATGGTCCCACATAAGAAGACCATTTTCGACAACGTGGATCGATGGAGGCAAGAGGACTTGGTTTTCAACCTGATCCACCATTTGTCTCATCAGCCGTTCACAGGCATGGTATGTCTTTTTGTATTTTCCTTTGATCTGTCCTTGGGCCATGCTCAGTACTTGTACTAATTTCCTATTTTTGTTGTGGACCGAGGACGCGACCATCCGAGTTTTTTGGTCATGATGGTGAAGTGAATGTATCTTAATAATTGAGATCTCTTTCTACTTATAGGAGTGTGCCAGTTATTACGAAATCGCTGGAAAAAGATAGTGTTTCACTTATTCTGAAACGGCAAAAGAACTTGCACGCAATAGGTGTCCAATAAATTTATTGTACATCAAAGTATTTTTACCTAGTTTTTGGTAACTTTTAACATGTTTTGATCGGTGAACTTTTATATTATAATTTATTTTTATGGATAAACATTTNGTTAGGTCTTGAAATTGAACGAGCTAGTATAAGATAGCCGCCCCCGAGATTGAATGTTAACTTTGTATTTTGAACATTTTAGTATGCCTCTTCGTCGTACCCGAAGAAAGATCGCCGAGAGCTCATCTAGTTGGGCTGCTGAAGAGGATGCCTGTGACGTGGAGGTAGGGGAGCTGGAGGAAGCGGAGGTCAGGGGTATGGTCCCACATAAGAAGACCATTTTCGACAACGTGGATGGAGGCAAGAGGACTTGGTTTTCAACCTGATCCACCATTTGTCTCATCAGCCGTTCACAGGCATGGTATGTCTTTTTGTATTTTCCTTTGATCTGCCCTTGGGCCATGCTCAGTACTTGTACTAATTTCCTATTTTTGTTGTGGACCGAGGACGCGACCATCCGAGTTTTTTGGTCATGATGGTGAAGTGAATGTATCTTAATAATTGAGATCTCTTTCTACTTATAGGAGTGTGCCAGTTATTACGAAATCGCTGGAAAAAGATAGTGTGTCACTTATTCTGAAACGGCAAAAGAACTTGCACGCAATAGGTGTCCAATAAATTTATTGTACATCAAAGTATTTTTACCTAGTTTTTGGTAACTTTTAACATGTTTTGATCGGTGAACTTTTATATTATAATTTATTTTTATGGATAAACATTTTAAAGGGTTACCTAGTTACTTTTATACGGAGTATGTAAGTAGTGATTTTGAAGGATAAATTTTATTAAAGCGGAAATTTTTGTAACTAATAAAAATAGATAACTTTTACATTATACGGGATAAATTTTAAACAATTTTGCTTAATTTTTTACTCTAATAATATACAACATTTGTTATACATCATCTTTAAATAAGAACGTGTGTTTTCATTATTGTCGTTGTTCGGTCGTTTTTTCTTGCATTTATGACAGTAGCAAGAGTAAAATTAAGTCTTTCAGATTACAATCTGTACTACCTAAATTTGTTTTCCAAGTTCTATTGAAGTATTGTATCAACAAATGTTAAGATCGAGTATAATCCACATGTTGGTATTGGACTAGTTATTCCATATTGGAGAATAGAGAGAGGTTGACTGACATATACAATTGGTGGGGGTACTCCAATTAATTTTAAAATAAAACCCCCGTCAAAATTATATGTGGTCCGTCTTTTTTCATATACGGGCTCGTATATGGCCCGCTGAATTTATCAACAAAGGAGAACTCATGAGAGGGATCCGGCCATGCACGAGAAACTCATGAGAGGGATCCGGCCATGCATGAGAATCACAAGATGACAGGTTCCAAACTTCCAACTATATGGACTACGTAAAACATATTATCTGTGTATTTTTTTAAGTTTTACTCATTCTTCGTTTTACATCTATACGTTTTTATATATTAGTTAATTAAGATCGATTTAGATTTTATTCTATCGTGCACACAATGCCTGATGCAGGAGATATGATGACGACGTTCCAATTAAACGATTCTCACAACGTAACGGCCAATTATTACATTATCTCTTAATTTCTATAAATAGGGCACTTCGATGAACAATATTTTCATCACCAAATTCTAATTTAATTATATTTCTAAAGTTATTTATTTAATTTGAAGTATGGGAGTTACAGGTAAGCTAGAAGTTGATGTTGAAATTTGATAGTTCAGTAGGAACACTTGACAAGAGGGGGGGTGAATTGTTTCTTGGGAACTTGAGTAAGTTTCTTGCGGAATTTAAACAATAAAGAGACTGAGAACAATGAGCGAAGAAAGATATAAAACGGAGGAACCTTCTTGACCCTAATCAAGAAGAACCTCACTACTCTTTTGTATTAATGCAATAACTCTATTACAAATACACTCTTTAACTCGAGTTCCTCTCGAACACGAGTTCCCCACAGCAATCCCCTTCGATTACTGTGCTACTCTTTCTCTCTCTGACTTAACTCTAAGTCGCTCCTTTTCTCTTTGACTTAACTCTAAGTCGCTGTTTCTCTCTTTGACTAAACTCTTAGTCGCTCTTTCTCTCTTTGACTTAACTCTAAGTCACTCAAGGATCACTCAATCCTTAAACCCAAAATACAATATGATAGATAGATTCTAGTACGTAATAAAGCTTATAATAATAAGGAACTCAAGGAACACTCTATTTTGCCAACTGATTCTTTTAAAACGTTTAAGCTCTTTAAGATAGATTTTGTAGAAATCAGTTGTGTTTTGAAAAGCCAAAACTCTTCTCCTTTTATAGGAGAGTTTTACTTAGGGTTGGGTACCCATGTTCTCCTCAACTACCCACTAACAGTTACTGCTCAGTAACATGGGCATAGTTGGAGAGAAACAAGGGAGACCAAATCAAAACACTAAATGTACGTTAAACAGAAATACGTGGGGAGAGTTTCAAGGAACATGGAAAATCTTTTACTTGAGAAACAAGGATAATAAATCAGAATCCTATGTTTCATTTATTAATTAAATTCATTTTATTTATTAAAAAGATTTTCCAAGTTAAAACTCTTTTATAATTACAGTTAACATATTTCATTTAAAACGTACCAAAATACTTAGGTTCCTTTCGTTCCAAATTACGTATAAACAATATTAAATACTTACATAAATCCTAAACATAAACTCATATGTTGTAGTCTTCATGTTGCACCTTTAGAAGCTTCACTCGAAAACTTCCCAATTTGTTCCTTCTCTGGAACATCGAGGATCCACATAATATATGAGGATCTCGCCTTAGGAACTCGCCTAAGGATCTCGCCTTGCTTAATGATTATTTCTTTCAATGTAGTGTCTGACATGGGTCAATTACTTGCTTATATTCCACGTTGCTTAGTTTATCCAACTCAGGATCTCCTTAACTTAGCATTATCCCTCTAAGGATCTCGGAACCTATTATGCAACATAACTTAACCAATTGTCAGGAGTTTGCTTTGTCATCATCAAAACTTTAGGGTCAACAAAATTAAGTCACAAGGAGATATTTTTCATGAACTCTTTGGGCAGAAGCCACACCATGTTGCTAATATCACCCCGGATAAAATCCATGCGTGTGACGTTCACGAGGGTCATTTTGGAAAGCCCGGCTCTATCATTTGTTGGGATTATACTTTTGGTAATTATTTCCCTAACACAATCCTCAATTAGCTAGATACTTTGTGTTTGTTATTATGTTGCAATATATTGTTATGTTGTTAAAATTATTCACTACAGAGAATTGTACCATTAACGACGGGAAATTATGTTGCGAACCCGTTATAAAAGGCGGCGTCATTGATGAAAAATTTCGTCGTTAGCATGTCGTAAAAGTCATTTATGACGGTTGTTCCTGTCTTTATTTAGTTGTTAGCCCTGTACAAAAAGGTTTTTGCAACGAGATTTTTGACCTGTCATTGTTGGGTTGTCATTAATGATCCAAATTCTAGTAGTGTTTTATTTATTTTATTTAGTAATTGCTTGCATTGTCAATTGAAAATATTCGACCACGTCCCTAAAAGCACACACAACCTTACATTTGACTTGGGTTAAATAATAATTGACAGAATAAATTGACTACAATGTTAACAGTGTCAAGGATTAAACATTTACCCACTTGACTTGGGTCGGATTCCTAACCCCAAGTCAAGGTTGTTTTGTGGGACAATACCGCACATTTGTCTCATGAATTTGCATTTTGGGCCCGTTACTTGAGGTTGTTTTTTCGGATATCAGATATGTGTGGCAACACACATATCAGCTAAAAGACAAATAGCTAAAAGACAAAAAAGGAAGTACCATTTATGTTAAAAAAGTACCATTCTGTAAAAAAAAGTACCATTCAGTTTAAAAAAGTACCATTTTTGTTTAAAAAAGTACCATTTAATTTCTTTTTTATCATTTTTCTTATTTTGTCTTTTACTATGATATGTATTTGCCCACACATATCTGATATCCGAAAATACTTCCTCCCGTTACTTTGCCCATTGCAGTTCTTTTGCTTTTTTCTTTATTTTTTATTTTTTGGATAGTTGTATTTTATTTATTTTATCAGATATTTGTGGGGTTTTTTTTTTTTTGGATATTTGTATTTAATTTACATTTGTGTTTTAACTAGTACTCGGTTATGTATTAAATTTCACATTATTGTATCTTTTAGAATATTATGTTTCTATATATGCATGTATAAGGTTATTTGTTACATTTTTATTTAATATATATGTTAATTTAATTTCAAAATTGTTAGTTTGTTAAAATTAATCATTGTATTGGGATGATTAATTTGAGTGGGATATATGTAAAAGTAAAAAGTAGGTAAGATAAATTAGCAACACTGAGTCAAGATTGTAGAAGAAAATGAAGAGATTTAAGCAAGAGGTATGTCAAGTTAGTGTAATTTGAGGTAGAAGAAGAAGAAGTACGAGAAAGAAATTATTTGTCAATTTCGGAGATCAATGATGCACATGGTCTAAACGGTAGTTATATTACTTATATATACGTACTTATTGTAGTTATATAGAGTTGGCCCGGTAAAAGAGAAAGTGTGTCGTGAGTTGACGAGGTGTAGGCGCTATTTAATTCATCTGGTTTTAGTTGAGCTGGAATTATTGATTTCAAAAGGTCTTGCGCGCACAAGGTGTACAATAAATTTATTGTACACCAAGATAACTTTTATGCAGTTTTTTGTAACTTTAACCTATTTTTCTGTAACTTTTGTATTATAAAATTAAAAAGTTGATAGACAAACATTTTAAAGGGTTAAACGATTAATTTATACATTATTAGTGATTTTGAAGAAATAATTTTTATTCAAATGAAAAAATTTATCATTAAAAAATAGATAACTTTTACATATATAAATGTAACTTTTAAGCATTTTGAGTCAACTTTTACTACGGTGTACAATATTTATTGTACACCCATTATAAATAAGAATTTGTGATTTGCTTACTGCTGAAAACAACTTGTTTTTACTCTCTCGTTAATGTTTTTATTGTTTGAAATTACTGGATTTTACTAACTAAAAATTGATTTAATTATTAGAACTGATTCATACTTCTTAAAACTAAATATTATCCATGGATCGCAGAAGGGAAGAAATGTGTAGTAAAGGAGTTAGTTGAAGAAATAGATGAAGAGAAACAATATATGAAATTCAAAGTCATTGAAGGAGATCTCCTTGAAGAGTTCAAGAGCTTGAACATTATTCTTCATGTTATTCCTAATGGTGAAACAACAATTGTGAAGTGGATTGCTGAGTTTGAGAGGTTTGCTGTTGATGGGCCCTATCCAACCAAGATCATGGACTTTGCTATTGGTATCACCAAGGATGTCGAGGCTCATCATCTAAATGAACAATAATATACTTCGTATATGTACTATTTTTGTTCTTCCTGTTTTAATTTTATTTTTCCGAAAAGAAAAAGTCAAAATAGAAAGAACAAAATTAAAGAGATTGATGGAATATTAATTTGTCATTGACATAAGTGCATGTTGTAATTGTGTGCTCGTATTTTGTATCTTATTGTGTGCCATTGGTATCACCAAGGATATCGAGGCTCATCATCTAAATGAACAATAATATTACTTCGTATATGTACTCTTTTTGTTCTTCCTGTTTTGATTTTATTTTTCCGAAAAGAAAAAGTCAAAATAGAAAGAACAAAATTATATAGACTGATGGAGTATTAATTTGTCATTGAAATAAGTGGATGTTGTAATTGTGTGCTCGTATTTTGTACTCCGTATCTTATTGTATGAGAAATAGTGATTTGTTATTGTGAAATGTTGTTTATGTTAGAACATCGAAGGATTTGGACTTTTGGAAATAAGAAGATTTGATATTTCTTTTAAGATTGTAAAATATCAATTTCTTAATACTTAATATGGACAACTTATAAACATACAATCGTGTAACACGATACAAATATTGAAACCTTTTATCAAATTGGCTACTTTTGACAAATTCATTTATAAAATACGGCTAATTTATATTTTAATTTCCAAACTAACTAAAATTTACTTAATTACTGAAATGAATATTGACTTTGAACCAAATACATATATAATATTGAACCTATATTTTTTTTTGGGTTTACATATTAGTTATTTACAAATAATCCTACACAAGCAATAAGAGGCATGTTGCCTTTGTTGGTGTTTTGTTCTTTTGAGGCTCGAGGGGTCCTTTCTAGAAGGTTTTCTCATTCTCAAGTACATTGTTTGGTGTTTGTTTGTGTTTGTGCAGAAGTGTGGACATGCATATGCTGGTGGAGAGCGTAAAGAATGTAGGGCTATTTAATCTAGGATAATTTGTTTTTTACCACCTAAAAAAATTAAAAAATTGTTTTTTACCACCTAAAAAACAAAAACTTGTATTTTACCACCTAAAAAAAATTTAAAAATTGTTTTTTACCACCTGAAATATGGAAAAATAGATTAAAATGTTATGTAGGGGGTCACAATAACGGTAATACTTCTAATATGTTCTATTCTTCCACAATTTCATGTATTTAACTCAATTTTCTTCCCCCGTTTCCTTATTTTCCATTAATTTACATAAATTTTCACCACCATTGATTCACAAAATTGACAAAATTTAATGGAAGTAAAGAGCAAAGGGTGAAAGAGTTAAAGAAAATCACACAAGGAATGTATAAAATTGGAAGGAAATTGAATTAGGTAGCCATACATAAAGGTTTCATCTATTTTTTGGTTTTTTAGGTGGTAAAAAACAAGTTTTAATTATTTTTTAGGTGGTAAAATACAAGTTTTAATTTTTTAGGTGGTAAAAAACAATTTTTTGATTTTTGTAGGTGGTAAAAAACAATTTGTCCTTTAATCTATATATTGATTGAGTACTGTTTAGAAGACATGCATGAAATTCCATATATAGGATTTTCAATGACAGATAATATTCTGTACTTATCAATCTTGAGAACTCCATAAAATCAAGTATTGTACAATTGAATAAAAGAGAATATAAAATATGCCTTTTCTTGTTTGCTTCTAAGTATCATATCAAAACATGGAAATCGGGAACTCCCTAATCACTAACTCCAAGTAAACAATTGAATGTAATTAAACATCAAAACTAACTTTATACAAAGAGAAAAAAATACATACTTTTCAATTTTCCAACGTAATAGTTTAGGAATGCCGACGTACTACTCCCCGTCAATTGAGTTGGAAATCGTTGAAGTAGCAATGTTGGTCGACTTCTCGTTCAAGATATAGCACGATAGGTACTAAAAAAAACCCGGCTGGTTCACTATTATTTAAAATAAAATAAAAAACCAAATTTAACCGGTTTATTGATTTTTGCTTAAATAGTCAGAATTTTAACTAGTTTGGAAATTAAAATTTAAAATTAGAGTAAATAAATTTGTCCAAGTATCCATTTTGGTAAACAAACCAAATATTGAGATATATACAAAAGAAAAGACAATTACTTGTACTCCTAAATCAATCAACTATTGTACAAGAATATATCTATAACATCAATATATACGCATACTAGATATCGATCATGCTCTAATTATTTATTTTTCAAACACGTACGAGGCTTAAGGCTTGGAGCTAATAATCTATCTATTTAATCTATAACCTTTTAAAAGCAAGGAGTATGATTTCACTATTCATTCAATAGTGTATTGCCTAAAAGACCCTTAAGTTTCTTATCATTTATCATTTGTGCCCTCCTCTAAATCTCGTGTTCACTCGGTGCCTCCCTTCTCCCTCCTCCCTACTTCCCTTCTTCTTTTCCTTTCACATGTGGTTCTGGATGGTTTTTCAGCAAACCGTAGCTCTTTACGCCCTCATTTCGTCTCTCCTCTCTTCTCCCTCCTTCTTTCTCTATCCATTTTTCTTCTCTGCTACATCTATCTCACTCCACAATAATTGAACATGGCGGTTGATATCCTTGATTGTGGCTAGGGTTTTCTCGTTCTTCTTCTTTCAAGGTTAACAGGAAGTAGACGAAGATAATGGACAAGGTAGTTTTCTTCTTTTCTCAATTTCTGAATTTTATAGGTCTAGGTATTTAAAATTCGATTCTTTTAGGGGTTTTAGTGTTTCAGATTCTAATTTCTCTTAATTTCTGCATTTTCTAAGTCTTGGTATTTAAAATTCGATTTTGTAGGGGTTTTAGGTGTTTCAGATTTCTATCTTTCTGAATTTTCTAGGTCTAGGTAATTTTAGGGGTTTTTGGTGTTCAGATTCTTATCATTTCTTAGTTTCTGAAATTTGTAAGAGTATGCATAAATAACTATCTTAGCCTCTGGATTTCTTATGAGAGTGTTAGGATTCTACTCTTTTCATAATTGCTTGATTTATGAATTTGTTCGATAGATTACCAGCCAAAGGAAGGAGATATGCCGAAACTGAGCTTGAAAAGCACTAAGATACTCTGGGCTGAGATGGCTCGAGCTGAGGTGACATTCTACTATTTTTTTCATCTACTATTCATTGTGACTATGGTTGGCAAACTATTGGTGTGTAAATGTGGATTATGTATTGCCAAATTCTATTTGGTTTCAGGCAGCTAAGAAACTCCGGGCTTATATAGTGAAGGATTTGCTTAAGATCCCAACAGGCGTAACATAAAATTTGACAAGAAGTTGCATTCCATTTTTCGTGTAGATACCATCAACAGGTTCCGGATGAATAAATCTCTCTATAAGCATGTATGGTCGCTTAGTCAGAAGAAGGTAATACTGATCTCCTGTTTTATGTTTTATGATCATCTTTCACGAGATATTGCCATTTCAAGTTCTGATTAACAACTGAATTATCTGTGTATGGCAAATGACTCTGATCCTAGGACAGGGGCTCTGATGCTCTATGATGGAAAACTTTTTGAGAAATTATAGATTATGCAAAATGGTCATAGTAACATTGTGGTAACATTTATTATCTTATAAAAAACTCTTCTGCTAGATTTCTATGGATGTTTTTCTTTGATCATCAATTTTCGTTCCTCCTTAACACACTGTTTCCTTTCCCATTGCTTGATAATGTGATTTTATTTCATATACCAGGTCTTGGAAGATAAGCCTGATCAATCAAAATGGACGCTGAAATATATAGCATTTGGCCGTGACATTGAGTTCTCTTTGCTTGCTCGAAATCTGCAGGTACCATCATTCTTTGGTTTTTCTATATTTTATCATTATCTGTTCACTTGAAAGTTGTCTCCTGGATATGGTTTAATTTGTACTATTTCTGGCGTCACTGCAGCCCATCCCAAACCAGAAAATTCATTGGAGATCTCTAGAAGGTCTTCCAATCAGGTGAGAATTATATGCAGCAGCAATGCTGAAGCTTGTACTTTCACTGCTTCGTCTATGTGTAGTTCTTTGGAATTCTTCATTACACTTTTGCCCATGTTTGCAATCCTCATTATAATCTTGTTGTACATGAAATTCTGTGGGCTCTAAAGGACCAGAAGTTATATAGTCAATTGACTTAATATCACTGTTGCTTTGCTTCGCCTTTTTTTCCATCTGAAATAAATGGGCATTGAAGCTGTGGTATTCACATCGGCATACTGCTAATGGTGCTCTAGACTTCTAAATTTTATCCTATAGGAGTATCAATTGGTTGTTGATGAAAAATATTCTTCCTTTGCAGTGGTGCTGTTCGATTTTACCCAAGAGGTACTTCATCATGTCTTGTAGAAGTAAGGACCCTCTCCCTGATGTGTCCAGTTTAATTTGTAATTGACCCTGCTTTGTTAAAACTTGATTTTTTTATTTTTATTTTTTATGATTCATTTGTCTCCAGTCCACTGCCTCCTTAGAAAATCCCTAACTAAAATATGTCTTAAAAAGCTTGGGTCCTGTGGTTCATAAATCTATATACATATGAACTGAATGATCAGTTTGTTTCAACAGATGAGCTGTTGTTGCTATTTTGGAGCTCTTTGATTAGTTTAAATAAGGTTAACAGGAAGTAGACGAAGATAATCGACAAGGCACTTTTCTTCTTTTCGATCTCAATTTCTGAAATTTCTAGGTCTAGGTATTTAAAATCCTATTCTTTTAGGGGTTTTGCCGTTTTGGTTTTTCAGATTCTTATTTTCTTCCAATTTCTGCATTTTCTAAGTCTTGGTATTTAAAATTTAATCTTTCAGGGGTTTTAGGTGTTTCAGATTTCTGTCATCTCTCAATTTCTGAATTTTCTAGGTCTAGGTAATTTTAGGGGTTTTTGGTGTTTAGATTCTACCCTCCAAAACCAGATTAATTGCAGGGCTACTGGCCACTTTAAACAGGTTAATTAAATTTGTTGTAAGCTGGGTTCATAAGTTTATCAATAATGTGTATTCTGCTGTTTTTACTTCTCATATGCATAATAACAGGTTGCTCCTTTTCACTCTTATGCATCAGCTTCTAAAGAATATTAGGGTGTAGAATTTTCAGAATTTGGCATTAGTGTAGCCTTTGCGTTTGTTATTATGATGTTGGGAGATCTTCTTTAATTTGTATGAACTGATGGAATGATTATGGAATTACAGAATGTGGCCTGATGGTCAGACTGCTGTTACTGCAGATTGGAAGCGCAGTGCTCACTTTTGAGCATACTTTACTGGTATCCCTTATGACCTTTTATGTGTCTCTCAACTGTCAAATTTGAAAGTACCAATTTCTTATTTACTCTGGTTATTATTAGTTCATTTCATATTATGTTAGGTTACTA ATGCCTCTTCGTCGTACCCGAAGAAAGATCGCCGAGAGCTCACCTAGTTGGGCTGCTGAAGAGGATGCCTGTGACGTGGAGGTAGGGGAGCTGGAGGAAGCGGAGGTCAGGGGTATGGTCCCACATAAGAAGACCATTTTCGACAACGTGGATCGATGGAGGCAAGAGGACTTGGTTTTCAACCTGATCCACCATTTGTCTCATCAGCCGTTCACAGGCATGGGGAGCTGGAGGAAGCGGAGGTCAGGGGTATGGTCCCACATAAGAAGACCATTTTCGACAACGTGGATGGAGGCAAGAGGACTTGGTTTTCAACCTGATCCACCATTTGTCTCATCAGCCGTTCACAGGCATGAAGGGAAGAAATGTGTAGTAAAGGAGTTAGTTGAAGAAATAGATGAAGAGAAACAATATATGAAATTCAAAGTCATTGAAGGAGATCTCCTTGAAGAGTTCAAGAGCTTGAACATTATTCTTCATGTTATTCCTAATGGTGAAACAACAATTGTGAAGTGGATTGCTGAGTTTGAGAGGTTTGCTGTTGATGGGCCCTATCCAACCAAGATCATGGACTTTGCTATTGGTATCACCAAGGATGAAGTAGACGAAGATAATGGACAAGATTACCAGCCAAAGGAAGGAGATATGCCGAAACTGAGCTTGAAAAGCACTAAGATACTCTGGGCTGAGATGGCTCGAGCTGAGGTGACATTCTACTATTTTTTTCATCTACTATTCATTGTGACTATGGTTGGCAAACTATTGGTGTATACCATCAACAGGTTCCGGATGAATAAATCTCTCTATAAGCATGTATGGTCGCTTAGTCAGAAGAAGGTCTTGGAAGATAAGCCTGATCAATCAAAATGGACGCTGAAATATATAGCATTTGGCCGTGACATTGAGTTCTCTTTGCTTGCTCGAAATCTGCAGCCCATCCCAAACCAGAAAATTCATTGGAGATCTCTAGAAGGTCTTCCAATCAGTGGTGCTGTTCGATTTTACCCAAGAGGTACTTCATCATGTCTTGTAGAAAATGTGGCCTGATGGTCAGACTGCTGTTACTGCAGATTGGAAGCGCAGTGCTCACTTTTGAGCATACTTTACTGGTATCCCTTATGACCTTTTATGTGTCTCTCAACTGTCAAATTTGAAAGTACCAATTTCTTATTTACTCTGGTTATTATTAGTTCATTTCATATTATGTTAGGTTACTA ATGCCTCTTCGTCGTACCCGAAGAAAGATCGCCGAGAGCTCACCTAGTTGGGCTGCTGAAGAGGATGCCTGTGACGTGGAGGTAGGGGAGCTGGAGGAAGCGGAGGTCAGGGGTATGGTCCCACATAAGAAGACCATTTTCGACAACGTGGATCGATGGAGGCAAGAGGACTTGGTTTTCAACCTGATCCACCATTTGTCTCATCAGCCGTTCACAGGCATGGGGAGCTGGAGGAAGCGGAGGTCAGGGGTATGGTCCCACATAAGAAGACCATTTTCGACAACGTGGATGGAGGCAAGAGGACTTGGTTTTCAACCTGATCCACCATTTGTCTCATCAGCCGTTCACAGGCATGAAGGGAAGAAATGTGTAGTAAAGGAGTTAGTTGAAGAAATAGATGAAGAGAAACAATATATGAAATTCAAAGTCATTGAAGGAGATCTCCTTGAAGAGTTCAAGAGCTTGAACATTATTCTTCATGTTATTCCTAATGGTGAAACAACAATTGTGAAGTGGATTGCTGAGTTTGAGAGGTTTGCTGTTGATGGGCCCTATCCAACCAAGATCATGGACTTTGCTATTGGTATCACCAAGGATGAAGTAGACGAAGATAATGGACAAGATTACCAGCCAAAGGAAGGAGATATGCCGAAACTGAGCTTGAAAAGCACTAAGATACTCTGGGCTGAGATGGCTCGAGCTGAGGTGACATTCTACTATTTTTTTCATCTACTATTCATTGTGACTATGGTTGGCAAACTATTGGTGTATACCATCAACAGGTTCCGGATGAATAAATCTCTCTATAAGCATGTATGGTCGCTTAGTCAGAAGAAGGTCTTGGAAGATAAGCCTGATCAATCAAAATGGACGCTGAAATATATAGCATTTGGCCGTGACATTGAGTTCTCTTTGCTTGCTCGAAATCTGCAGCCCATCCCAAACCAGAAAATTCATTGGAGATCTCTAGAAGGTCTTCCAATCAGTGGTGCTGTTCGATTTTACCCAAGAGGTACTTCATCATGTCTTGTAGAAAATGTGGCCTGA MPLRRTRRKIAESSPSWAAEEDACDVEVGELEEAEVRGMVPHKKTIFDNVDRWRQEDLVFNLIHHLSHQPFTGMGSWRKRRSGVWSHIRRPFSTTWMEARGLGFQPDPPFVSSAVHRHEGKKCVVKELVEEIDEEKQYMKFKVIEGDLLEEFKSLNIILHVIPNGETTIVKWIAEFERFAVDGPYPTKIMDFAIGITKDEVDEDNGQDYQPKEGDMPKLSLKSTKILWAEMARAEVTFYYFFHLLFIVTMVGKLLVYTINRFRMNKSLYKHVWSLSQKKVLEDKPDQSKWTLKYIAFGRDIEFSLLARNLQPIPNQKIHWRSLEGLPISGAVRFYPRGTSSCLVENVA Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo08508.1 vs. NCBI nr
Match: gi|902188397|gb|KNA11134.1| (hypothetical protein SOVF_137610 [Spinacia oleracea]) HSP 1 Score: 141.4 bits (355), Expect = 3.100e-30 Identity = 66/81 (81.48%), Postives = 74/81 (91.36%), Query Frame = 1
BLAST of Spo08508.1 vs. NCBI nr
Match: gi|902223825|gb|KNA19598.1| (hypothetical protein SOVF_059950 [Spinacia oleracea]) HSP 1 Score: 137.5 bits (345), Expect = 4.400e-29 Identity = 64/71 (90.14%), Postives = 66/71 (92.96%), Query Frame = 1
BLAST of Spo08508.1 vs. NCBI nr
Match: gi|731336783|ref|XP_010679443.1| (PREDICTED: uncharacterized protein LOC104894811 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 135.2 bits (339), Expect = 2.200e-28 Identity = 62/71 (87.32%), Postives = 65/71 (91.55%), Query Frame = 1
BLAST of Spo08508.1 vs. NCBI nr
Match: gi|720047772|ref|XP_010270916.1| (PREDICTED: uncharacterized protein LOC104607099 [Nelumbo nucifera]) HSP 1 Score: 127.5 bits (319), Expect = 4.600e-26 Identity = 59/71 (83.10%), Postives = 62/71 (87.32%), Query Frame = 1
BLAST of Spo08508.1 vs. NCBI nr
Match: gi|596113597|ref|XP_007221562.1| (hypothetical protein PRUPE_ppa011210mg [Prunus persica]) HSP 1 Score: 126.7 bits (317), Expect = 7.800e-26 Identity = 57/71 (80.28%), Postives = 63/71 (88.73%), Query Frame = 1
BLAST of Spo08508.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QV57_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_137610 PE=4 SV=1) HSP 1 Score: 141.4 bits (355), Expect = 2.100e-30 Identity = 66/81 (81.48%), Postives = 74/81 (91.36%), Query Frame = 1
BLAST of Spo08508.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RJF0_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_059950 PE=4 SV=1) HSP 1 Score: 137.5 bits (345), Expect = 3.100e-29 Identity = 64/71 (90.14%), Postives = 66/71 (92.96%), Query Frame = 1
BLAST of Spo08508.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CDK9_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_5g122330 PE=4 SV=1) HSP 1 Score: 135.2 bits (339), Expect = 1.500e-28 Identity = 62/71 (87.32%), Postives = 65/71 (91.55%), Query Frame = 1
BLAST of Spo08508.1 vs. UniProtKB/TrEMBL
Match: A0A067H7D4_CITSI (Uncharacterized protein OS=Citrus sinensis GN=CISIN_1g024198mg PE=4 SV=1) HSP 1 Score: 126.7 bits (317), Expect = 5.500e-26 Identity = 58/86 (67.44%), Postives = 70/86 (81.40%), Query Frame = 1
BLAST of Spo08508.1 vs. UniProtKB/TrEMBL
Match: V4U1B3_9ROSI (Uncharacterized protein OS=Citrus clementina GN=CICLE_v10022090mg PE=4 SV=1) HSP 1 Score: 126.7 bits (317), Expect = 5.500e-26 Identity = 58/86 (67.44%), Postives = 70/86 (81.40%), Query Frame = 1
BLAST of Spo08508.1 vs. ExPASy Swiss-Prot
Match: KIRO_ACTDE (Kirola OS=Actinidia deliciosa PE=1 SV=1) HSP 1 Score: 68.6 bits (166), Expect = 1.600e-10 Identity = 34/81 (41.98%), Postives = 50/81 (61.73%), Query Frame = 1
BLAST of Spo08508.1 vs. ExPASy Swiss-Prot
Match: MLP34_ARATH (MLP-like protein 34 OS=Arabidopsis thaliana GN=MLP34 PE=2 SV=1) HSP 1 Score: 67.8 bits (164), Expect = 2.700e-10 Identity = 34/88 (38.64%), Postives = 56/88 (63.64%), Query Frame = 1
BLAST of Spo08508.1 vs. ExPASy Swiss-Prot
Match: MLP31_ARATH (MLP-like protein 31 OS=Arabidopsis thaliana GN=MLP31 PE=2 SV=2) HSP 1 Score: 65.9 bits (159), Expect = 1.000e-9 Identity = 34/88 (38.64%), Postives = 54/88 (61.36%), Query Frame = 1
BLAST of Spo08508.1 vs. ExPASy Swiss-Prot
Match: MLP43_ARATH (MLP-like protein 43 OS=Arabidopsis thaliana GN=MLP43 PE=1 SV=1) HSP 1 Score: 64.3 bits (155), Expect = 3.000e-9 Identity = 35/88 (39.77%), Postives = 54/88 (61.36%), Query Frame = 1
BLAST of Spo08508.1 vs. ExPASy Swiss-Prot
Match: MLP28_ARATH (MLP-like protein 28 OS=Arabidopsis thaliana GN=MLP28 PE=1 SV=1) HSP 1 Score: 64.3 bits (155), Expect = 3.000e-9 Identity = 31/88 (35.23%), Postives = 56/88 (63.64%), Query Frame = 1
BLAST of Spo08508.1 vs. TAIR (Arabidopsis)
Match: AT1G02475.1 (Polyketide cyclase/dehydrase and lipid transport superfamily protein) HSP 1 Score: 115.9 bits (289), Expect = 4.900e-26 Identity = 53/86 (61.63%), Postives = 68/86 (79.07%), Query Frame = 1
BLAST of Spo08508.1 vs. TAIR (Arabidopsis)
Match: AT4G01883.1 (Polyketide cyclase / dehydrase and lipid transport protein) HSP 1 Score: 110.5 bits (275), Expect = 2.100e-24 Identity = 50/80 (62.50%), Postives = 64/80 (80.00%), Query Frame = 1
BLAST of Spo08508.1 vs. TAIR (Arabidopsis)
Match: AT1G02470.2 (Polyketide cyclase/dehydrase and lipid transport superfamily protein) HSP 1 Score: 93.6 bits (231), Expect = 2.600e-19 Identity = 40/71 (56.34%), Postives = 55/71 (77.46%), Query Frame = 1
BLAST of Spo08508.1 vs. TAIR (Arabidopsis)
Match: AT5G28010.1 (Polyketide cyclase/dehydrase and lipid transport superfamily protein) HSP 1 Score: 69.3 bits (168), Expect = 5.200e-12 Identity = 36/88 (40.91%), Postives = 57/88 (64.77%), Query Frame = 1
BLAST of Spo08508.1 vs. TAIR (Arabidopsis)
Match: AT1G70850.1 (MLP-like protein 34) HSP 1 Score: 67.8 bits (164), Expect = 1.500e-11 Identity = 34/88 (38.64%), Postives = 56/88 (63.64%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo08508.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo08508.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo08508.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo08508.1 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
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