Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSexon Hold the cursor over a type above to highlight its positions in the sequence below.ATGGGTCGAGGAGGGAGAAAACGGGGGCGAGGTGGTGGCGACGGTGATGGAGTCGAGGAGGGAGAAGACGGGGGCGAGGTGGTAGCGGAAGAAGGGGCGGTAGCGGAAGAAGGGAGAGTAAGAAGATGGGTTAATTAGGAAAAATGGTAAATAGGTGGGTTAATTAGATGTTGATTGAGTTAATTAGGGATAATGACGTCATGCAAGGGTATTTGGGGTGTTAAGTCATTTGTGAGGGCTATTTTATGAATTATTGAAACTTGATGGGCGTTTTGGTGAATTATGACAAAACTCGGGGGTATTTCATGAAATTTCCGTAGATTAAATATTGTACACATACCATCATATTGTGAGATTATGGAATTTTTAAAATAAAAGTGTTTAAAATGTTTATCGCTAATTGAAATAGTGGTCTCCTGATTAGTCTGGGGGGAGATTGAATCGATCTATATATTTTCTCAGTTATTGGAGCGCNAGATTGAATCGATCTATATATATAATTAAAGTGGACATATTTTCTCAGTTATTGGAGCGCCACGTAGGAAATATTTTCCCAGTTAAAATATTTATCGCTAATTGAAATAGTGGTCTCCTTCTCCTTTCTCTCGATCTCACTCCCATGACAGAACCTTCACCACCCAATTTCTCTCTCCTCTGCGACAATGTTGCACGAGCTCACAAAAAAATATCACAGTTCACATTAAATTGGTTTAAATCAATCTTCGATCCCCTTCAACTTTGGCTCGTGCTTCGACTTTGTCAAAGTCGATCAACCTTGTCCTTCACCGCGACGCTCTGAATTCTCATCTTTTGGAGAGGATACGTTAGTCAGTAAGGAGGGTGTTAGGAGGGGTTTTCTCGTAGTGGTAATGGGATGGTGGTTGGTTGCGTGCAGTGGGTTCAAGGAGGAGGAGAGAGAAAGAGAGTGAGCGTGAGTGTGGATCTGGGTTGTAGGTCTAGCTGTAGGTGAGTGCGGGTGTGCCTGCGACGGTTGTTGGCTTGTTGTGGTGGTTTCAATTGGAAAATAGAGAAGAATTGTGGAGAGGAGGGAGATAAGCAAGGGCCAATTAAAATAAAAATAAAAATAAAAATAAGCATAACGAATTAGAGAAAATGGGCTACCATGGAGGAGATAGAACATGGGATTTCATGGGAGAAGTGGAGGAGCTAGAGGGCTGCCATGAGAGGAGGAGGAGAGAGATCAGGAAGTTATAGAAGAAATAAAAATAGATGAAGCATAACCCATTAGAGAGAGACACATGTCACGTTTACTCGTTATGCCGGTTACCAACCGGTCAAAGACTGTTTTTGAAAGACACCCCTTAAAGGTTATATTTTTCCATAATAATCCAAAAGTGGGACTGTTGTTAGAAGAACGGGAAAAGATTGGATTTTTTTTTTACAATCCTATTATAAAAACTTATAAAAATATTAATATTTTGAAAATATATATTAAGATGAAACCAACAATATATTATATACAAACATTTGTTTTCATATACTAGAAATAAAATAGGGTCAAAGTGAATTATGTGAATAGTGCAAAAAGTCAAAATGAGTCGAGTATTAAGGGACAGAGGGAGTATAAACTAATAATATGATATACCTTGGAAAAAGAGTCATTTTAACAAATAAGGATTGAGAAGGTAACAATTTTGTTACCATAGGGTTGAGAGAGGTAACAAATGGTGATAGTAGTTACCATTAAGAAATGGATTGTGTTATCATACCTCTTATACCAAATATTAGGAAATGTAAATAGTAAGTATTTTCATTTACATAATCCATACTTTAAAATCACTATACTATCATGCTCTAATTTTGTTTGAAAAGAGAAAATATAAGGGGTTATGGAAAGAATCCTCTCCATATGGAAAACAAAATCAGAGACGGCCCTAAAAAATGTGTACAGTAATATAAATGGACATAAATCCTTAAGATTGTGAATATAATTGAATTAATAAGGGTTAATATCAACATTAATGAAATTTCTTCGTGGTTTCCTTAATCATTCAATTTTTATGAAAAGTAAAAACAAATTTTATGAAATCATAAAAAATTTATAGTCATTTTCCAAATTTTAGTGATTAGTTCACTATGTATATTACGTGAAACAATCTATTACATTATACTAAAATAGACACCAGGAATGATATATGTCACTTCCTGGTGTAAAATTTTTCCGTTAAAAATTCTTTTCCTAAAAAAATATCTTTACTTCATATAATTTTTATTTCTTTCCTTTTGTATAAATTTTTATGTATGAAAAAAAAGATTATATAATATGACATTATTACACGATTTTGGTAATAGTTTAGTCAAATTGATATATCAATTATAGAAAATATATTTTGGTCAAATTAACATTAATCACATCGAAGATTTTTTTTCATACTATCATATTCACCATATAAAGTACTTCGTATGTAATAAACAGTAGGGCGAAATTTTCATAATAAATGAATATGTTAAATTTTTTTAATTACACATTAGATTTAAGGGATAAATATTTTAGTTAAATATTTTATAAAAAATATGGTCAAAAAATAATTTTTGAATATCCGTGCTTTCACGAGACCTAATCTAGTATGTATATATTTTGTAGCTTTTGAAACCTTAAAAGAAAAGTATCAAAATTATAAATTAAACTAGTGTAATCCTATTTGTAACTATAGTTATTTTTATTGCTTTTAATTTTCATATAGTCTGTATCATATTTGCAGTAATTATTCAAAATTCAAGCTTGATTGTGTTTTTTCATATATATATTTTTTGATTTTAAAAAAGTATGTTGCAATCAATAACAGTCGCGCCGCTAAGGGAATAAAAAAATAGGAGGGACCTTATCAAACATGACATTAGACGCACACACGTTGTCGTTGCAGATGGACAATAAAACACGCGTTAAAGTTTTATATAACCCAAATTATGAATAAAGGAGGGGAGTGGTTTCACACTATTAATGATCATATTGTTTAGATTGTGAAATCCGTGTTTGTCATTGCTTTTTAACGAGGATAGTAAGCTCTTGTGTTTTCTCATTCTCCTCCGCAAGAATTAGCTTAGAAATGCTTGTTCATAAGAAAATTGTAGCTTAAAACAACACATTAAACACCCACATGTCCCCACCATTAAAAAAAATAAAATAAAATAAACGATTCCCCCTCAAACCCCATTTCAGGTTGATTATAAAATGAGAAGATGACTAATTCTATAGGAGTAATACAGAGTACTCCTTTTCTTACCATAACGACTCATGTTTCCTGCATGACTTCCCCACCCGAAACACTCTTCTTCTTCATTATTATTATTATTATTATTTCTTAAACTTCATCTCCTTCTTATTATAATAATAATAATTATTATTTCTGCTTGTTGTTCTAATTAGTTAAACTCCCATGGAAACACAACCCCCTAACATCTCAAAAATGGATTCCACCAAAAACCCATATTTTCATTCCTTAAAAAATGTCTCCCTTCTCCTTCTCCTTCTCCTAATCGCCGGAGTTATTTCTCTGTCCTTCCTCTCTTCTACCTCCTCTAAATCCCTCTTCACTTCAAAATTACTCCAATGCCCCTCTGTTTCCCATCAGAATGAGAATGAGGTAAAGCATCATATATGGTATATGTTAATTTGTTTTGTATTTTAAGTTTAATTTTGTCATTAATTGGTTTGTTTGTTGCGTTCCACAGACAACAACATTGCATCAAGACGAGCTAGAAGAAGCATTAGAGAAAGCATCAATGAAGAACAATAAAACAGTAATAATCGCGGTGATAAATAGAGCGTATGTGGAAGGTGAAGTAATGCCGAACATGCTTGATTTGTTCTTAGAGGGGTTTTGGGCAGGGGAAGGAACAAGGGAGCTTGTCAAACATCTTATGATTGTGGCTGTTGATCAAACGGCGTACGAACGCTGTGTTTATCGTGGCCTTCATTGTTATCGTCTTGAAACGGACGGTCTTGATTTCATGGGGGAGAAAGTTTTCATGTCTGCTGATTTCATCAACATGATGTGGAGAAGGACTCTGTTTTTGACTCATATCCTTCAAAAAGGATACAACTTCATTTTTACGGTACGTGCATTTATTTCTTAAACGTTATTATTTCATTTTATGCGATTTATTTCCATAAATGTTTGGATTCTGATTCTGATTTTGCTTTTGATTTTCTCAACTAGGGACCTAAATATATAGTTACATTCCGATTAACAATACAAATTTTTGCAATCACTTGACAATTTTACTAATTATTAGATCACCACATGTTATGTCACATGTCTTTTATCCAGCTAATATACTACTCCCTCCGTTCCTAAATACGTGTCCAGTTCCCTTTTATGTGTCCACTTTCCATTTTTGGACATATACCTTTCCCACTTTTCTATACACTTTTCCATACATTTTTCCCACTTTTCCATACATCATTATTACCTTTTCTTACACATTCTACACTTTTTCCACTTTTCAATCACCACATCCACTTTTATTTATACTTTATCAATAAACAATTATCTACTTTTTCCTTTCCCAAAAAAAAAAACATTCTCAATCATTACCTATTACACACCATTCAATTTTATTAATTACCGTGTACGTGTACAAAGTGGACACGTATTTGGGAACGGAGGGAGTACGAAATATTAGTCATGATGACAATTAAGTTAATATCAGCACAATTTGAAAGGAAAGTAGCTGATTTAGTTTACTCACATTATATTTGGAATTGAAACTCACACATATCATTTCCATACAAATAAAGAATCACAAAATCCCCCCTAGTTAAACAAGTTAACAAGGAATGCCGTGGGTATTAAAAACTTGTAAAAAATTGTTGATTGCACTTTTGGGGTAAAACAATATAACTTTCTTGTGAGATCCAAAGATATTGTCATAGTTTTGGAGTAGCAATAAATGTGGTATTCTAAAAAAAATTAAATTAACGGTTTTTTCATGAAATATCCCGAGTTTTGGCGGAATTTACCAAATACTTATCAACTTTCAATAATACATAAAGGCCTTGTTTGGTAGCTAGAGAAAGTTTTGAGAAGATTTTAGAGGTTTGGACCACTATAAGAAGTTTTGACTAGTTAAACCTCTAACAATGGTGTTTGGTAAACAGAGGATTTAAATGAAGGTTTGGTCCAAATACCCCAAAAACCAATGTACCACCCGAAAATCGAACTCCACCCACCCGAAATCAACCAATACCCACATGAAATCCAACCTCACTGGCTCACCACCCAAATTAATCTGGATTGCGACGAACAACGAGCAGATTCCTCCACACCACCACGCCCACCACCACAACGAGCTGAATCAAAATCCCTATTATATTAGCCCAAAGCAATAACCACAACAACGAATACCTAACCCAACAACTTCTGAATCCTCTTCTCCTACTTCTTCGAGTAATTCGATTAGTTTTCTGGGGTTATGGGGTTTTGGGGGTAGAAGTTGGTTGGATTCTGAAGATTTTTTCGTCGTTGAATTTAGTTGATTATTTCATCTTCTTCTAATGGATTAAAAGATTGAGCAAATTTCGATTAATATTGACTGAAATTGAGTGAAAGAGTTTATCTCCTCTTTAATTGATTTCAAAATTTTGATAAATTGATGGTGATAAGGAAAATTATTGATTATGAGTGTAGAAGGAGGAGTTACGAGAATGGAGGAATGCAGCCATGAAAGATGATAATGGAAAGGGGTGGGGGAAAGGGAAAAGGGAAAAAAGCAAAAAAAAAAAAAAAAGTTTAATGGTCGGGTTAATTAGATGTTGGCAACATGTGGTTTATGTAGGGGTGTTCAAAAATACCCGACCCGTATTATTCGACCGTTGACCCACTGATCCGGTACAAATAAAGCGGGTATTTTTCTGAAATTTTAAAAATAAATGGGCCGGGTATCCGACCCGGTAAAATTTCCGGGTACCGGGTCGGGTCATGGGCCACTTTTTGACTAAACGGGTACCCGAATACCCGTTTAAAAAAAAATTGTGTGTGTTGGGCCTTGGCAGCTGAGAGAATTTATTCAATTTAGTCACTATACTACTCCGTAGTTTAGAACTTTATACTTAGGGTTTCTCAAACATCACTCCGCCGCTCTTCTCAATCTCTCACCTCCTTGGTCTCCTCTCTCAGTCTCACCCCCTCTCCGACAGTCTTGCTCACTCGTTCATGCCAACAGCAGTCCACCTCCAGTCCACCGGCGCAACAGTCCACATTCAAGGCAATATTTTCGATTTTTTTGCTCAAGAATAGCCTTTAACTCCTGAAAGTCTTGACTCGATTTTACTAAATTTGTTACTCCAATCAAACTTGACATTCAATACAACCGCTTGGTAGGTTCTTGTTAGGTTCTTAGTTTTTTTTTTATTTGCTCGAGAAATGCAAAGGTTCAATGGTAGGTTTCCGTTAGGTTCTAAGCTTGTTAGATTCTAGAAAGATTTAGTTTTGATATGATTTGTTGTCTTAATTGGAATTGTATCAGCCTTTCCTTGTAGTTCTTTTGTAAATGCGAATTTGTAGGATGAAATATTGTAAGTGGTATGGGAACTCCATAAACTACATAGTTAGTTTGTTTATTATAATTTAGTCAGTTTATCAAATTTAGTCAGTTTAGTAAATTTAGTGATTTTATCAAACTTAGTCCGTTTATCAAATCAAATTTACTAATTGGAATTGCTTTGTACTCCCACTCTGTAAATCATTAATTGCTTCCTACTAAATGTTACTACATAATGGAATTTAGTGAGATTTTTTTATAAAGAAACCGGGTGCCCGGTTACCCGACCCGGTATAATCGGGTACCCGGTTATCCCGGGTTGGGGCATGGGCCGACAAAATGACTACCCGGAAATCCGGGTACCCGCATTTCCGGGTACCCGTTTAGCCGGGTACCCGGTAATGAACACCCCTAGGTTTATGCATCCAGCCTCCAGGTGTACAGTGCTCACCGTACATCATGTTTTTAAATGAAAGAACATAAGAGATGATTACAAAGAACATAGATAATAGGAAGAACATAAAAGAAAAAATACAAAGAACATAATAAAATATAATAATTTATCCCATAAATTTAGCATACTTTTTTGAAAAAAAATCATCAACAAGTCTTCAAACTTATCATCAACTTCATGAATAAAACAAAGAATTCGTAAACAAGTGGATAGAATTTATAGTTCAAACTCATAGAACATATACTGATATACACCCATAGAATATATATACCCATAGGACATCACCCATGGTCCATGGGACATATACACCGACATCACCCATAGAACATATATATCCATAGGACATCACCCATGGGACATATACACCGACATCACCCATAGAACATATACACCCATAGAACATATAGCTAAATATTCAATGAACACATGAATATTCAATCCAACAATAATAATGCATATGACTGTAGTACCTGTGGTGGACAAGTGGGTTCAATTAAGCAAAATTGATTAAAATTAAAAATCGAAAATAATTAAAAAAATGAGAGAATTTGAGTGATATTACAAAAGATGTGACGTTTATATATATATATATATATAATATATATATATATATATATATATATATATATATATATATATTATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATTAGTTTGTGCAGTAAAGGAATAGAAATTTAACCTTTTAAAATTTTTATCAATTAATTTTTTTCCCTGTAATATAAAAGTTAAACAAAACATATCATTTATTTTAAAAAAAACTACGCAAAAAATATTTTGATGTACAATAAATTTATTGTACACCTTATGCGTACAAATCTTTGTATATGGTATTTACATATTCCTTTATGTTGTGTCGAAATTTTTATATCATTACAGATAATATAACAAAAAATTTAAATTACATAACCTATTACACGGGATAAAATCTAGATTGTCGTTTATTAACACCATTGTGTAGTTAGGGACGGCCCATGGTCTCAATAAATAAATATTGAAATACTTGTATTAGATTGATCATAAATAAATACCTTCAGGAAAAATTAAAAATAGATTGATAAATAAATAAGTATATTTCTAAAGAACTTCACCTTCATTATTTTTGACATTTTCCATGAGTTTATATCTTACCAAAAAAAATTATTTCTTATGTGATTTTGCCTTTTTCACGTGTATTATTAGAAACGAAACACAAGTTTGTAAAGTTGGTGGAAAATCCATCTTGTAACTTAGAGGTTACAGGGGTCGAGCTCCATACTTGTGAAATATTTGGAAGTAACTCAAGCCTATAATATGTAGCTACGCTGGCTAACATGTGAAGTTGTGATAGGTACTAGTTCAATAGGGTTCATCTTTTACCTAATTAAAAAAGTGAATTATTAGTACTCATTAATAGAGAGGTTATTATATATCTTTGTCATTTTTATGATATTTGAAGTCATATGATTTGAGTTTAGTGATGTATAATTTTTTGTTTTCATATTTTTGGTTTTAGTTTTCTCAAAAAACGGAAAACTAAAAGAATAAAAAACCGATATTGAAAACACTTTATTTTGTGGCAATTTGTCTTTATACTACATACTCCCCTCGTCCCACATTTCTTGTTACATTTTCATTTTTCCTCCATCCAATATTACTTTTTACACTTCTAAATTAGGAAGGACCGACAATTATTATATTGTCTCTCTCTCTCTTCCCGCTAAACAAAATTGGTCCCCACACCCTCTCTCAGCTCATTCAATTAAAAAGGTACTCGACTAACTCTTATCACATATACTTTTTCAATAAAATAACAATAATGATAACCAAACAACCACTTATCCCTAAAACTTTGTGCAAAGGTAAGTGTAACGAGTAATTTGGGACGGAGGAAGTATTTAAATCCATTATATTGAACTTAAACTTTGAAGGAGCACACTTTGAATTTTAACCTTCTTTTATTTATTATTTTTATAGGTTTTTCTTACAGTTACAAAATGGGTTATCGAGTGATACATAAATATATCTCTATCTCTCTATTTGTATAAGCCAACTCTGTGAAAATTGATGTCCAAAATATACTCTTACAAGCAATACCATTTTTATCTTCTTATATAAGAAGTATATTTTATATACTCTTTTAAATAATGAAATATAAATATAATATTGCAATGTTGTTATATTATGAATTATCATACATGTGTTTGTGAAATTAAGCAGATGAGTATCCGGAGAAGAGTGAGTTTTTTTTTGTGGGGTTTGAGGGTTTGGCAATGTAGTGAACTAATGAAAAGTGTATGTGAATGTTATGAACCAGGATACAGATGTGATATGGCTAAGGAACCCCTTCAAAGTTCTAACCACAAATGAGACGGGAGATTTCGACATCCAATTTAGCACTGACATTTACAATGACAACGCATTTTCTACCCGAAACCTAATCAACACCGGCTTTTACTTTGTAAAATCCAACAATAAAACTATCAGGTTGTTTGAAAAATGGTACGGACTGAAGGAAAACTCTACCGGGCTAAAGGAGCAAGATGTTTTACAAAGAATGATATGGCAAGATGTACTTACCAATATGGGTATCAAGTCTAGGTTCCTTGATACCCGATTTTTTAGTGGGTTTTGTCAACTAAGTCGAGATATTCCATCTGTTATCACTGTCCATGCCAATTGTTGTCGGTTTATTAGTGCCAAGGTGGCCGACTTGGGGAGGGTCCTTCATGATTGGGCTTGGTTCAAAGTAGCTCCAACTAATGTAACTAGTTCTCTTCAATGGTCCCCACATATTGAATGCATAAAGTCGTGGCATAAGAATGGTTAA ATGGGTCGAGGAGGGAGAAAACGGGGGCGAGGTGGTGGCGACGGTGATGGAGTCGAGGAGGGAGAAGACGGGGGCGAGGTGGTAGCGGAAGAAGGGGCGGTAGCGGAAGAAGGGAGAACAACAACATTGCATCAAGACGAGCTAGAAGAAGCATTAGAGAAAGCATCAATGAAGAACAATAAAACAGTAATAATCGCGGTGATAAATAGAGCGTATGTGGAAGGTGAAGTAATGCCGAACATGCTTGATTTGTTCTTAGAGGGGTTTTGGGCAGGGGAAGGAACAAGGGAGCTTGTCAAACATCTTATGATTGTGGCTGTTGATCAAACGGCGTACGAACGCTGTGTTTATCGTGGCCTTCATTGTTATCGTCTTGAAACGGACGGTCTTGATTTCATGGGGGAGAAAGTTTTCATGTCTGCTGATTTCATCAACATGATGTGGAGAAGGACTCTGTTTTTGACTCATATCCTTCAAAAAGGATACAACTTCATTTTTACGGATACAGATGTGATATGGCTAAGGAACCCCTTCAAAGTTCTAACCACAAATGAGACGGGAGATTTCGACATCCAATTTAGCACTGACATTTACAATGACAACGCATTTTCTACCCGAAACCTAATCAACACCGGCTTTTACTTTGTAAAATCCAACAATAAAACTATCAGGTTGTTTGAAAAATGGTACGGACTGAAGGAAAACTCTACCGGGCTAAAGGAGCAAGATGTTTTACAAAGAATGATATGGCAAGATGTACTTACCAATATGGGTATCAAGTCTAGGTTCCTTGATACCCGATTTTTTAGTGGGTTTTGTCAACTAAGTCGAGATATTCCATCTGTTATCACTGTCCATGCCAATTGTTGTCGGTTTATTAGTGCCAAGGTGGCCGACTTGGGGAGGGTCCTTCATGATTGGGCTTGGTTCAAAGTAGCTCCAACTAATGTAACTAGTTCTCTTCAATGGTCCCCACATATTGAATGCATAAAGTCGTGGCATAAGAATGGTTAA ATGGGTCGAGGAGGGAGAAAACGGGGGCGAGGTGGTGGCGACGGTGATGGAGTCGAGGAGGGAGAAGACGGGGGCGAGGTGGTAGCGGAAGAAGGGGCGGTAGCGGAAGAAGGGAGAACAACAACATTGCATCAAGACGAGCTAGAAGAAGCATTAGAGAAAGCATCAATGAAGAACAATAAAACAGTAATAATCGCGGTGATAAATAGAGCGTATGTGGAAGGTGAAGTAATGCCGAACATGCTTGATTTGTTCTTAGAGGGGTTTTGGGCAGGGGAAGGAACAAGGGAGCTTGTCAAACATCTTATGATTGTGGCTGTTGATCAAACGGCGTACGAACGCTGTGTTTATCGTGGCCTTCATTGTTATCGTCTTGAAACGGACGGTCTTGATTTCATGGGGGAGAAAGTTTTCATGTCTGCTGATTTCATCAACATGATGTGGAGAAGGACTCTGTTTTTGACTCATATCCTTCAAAAAGGATACAACTTCATTTTTACGGATACAGATGTGATATGGCTAAGGAACCCCTTCAAAGTTCTAACCACAAATGAGACGGGAGATTTCGACATCCAATTTAGCACTGACATTTACAATGACAACGCATTTTCTACCCGAAACCTAATCAACACCGGCTTTTACTTTGTAAAATCCAACAATAAAACTATCAGGTTGTTTGAAAAATGGTACGGACTGAAGGAAAACTCTACCGGGCTAAAGGAGCAAGATGTTTTACAAAGAATGATATGGCAAGATGTACTTACCAATATGGGTATCAAGTCTAGGTTCCTTGATACCCGATTTTTTAGTGGGTTTTGTCAACTAAGTCGAGATATTCCATCTGTTATCACTGTCCATGCCAATTGTTGTCGGTTTATTAGTGCCAAGGTGGCCGACTTGGGGAGGGTCCTTCATGATTGGGCTTGGTTCAAAGTAGCTCCAACTAATGTAACTAGTTCTCTTCAATGGTCCCCACATATTGAATGCATAAAGTCGTGGCATAAGAATGGTTAA MGRGGRKRGRGGGDGDGVEEGEDGGEVVAEEGAVAEEGRTTTLHQDELEEALEKASMKNNKTVIIAVINRAYVEGEVMPNMLDLFLEGFWAGEGTRELVKHLMIVAVDQTAYERCVYRGLHCYRLETDGLDFMGEKVFMSADFINMMWRRTLFLTHILQKGYNFIFTDTDVIWLRNPFKVLTTNETGDFDIQFSTDIYNDNAFSTRNLINTGFYFVKSNNKTIRLFEKWYGLKENSTGLKEQDVLQRMIWQDVLTNMGIKSRFLDTRFFSGFCQLSRDIPSVITVHANCCRFISAKVADLGRVLHDWAWFKVAPTNVTSSLQWSPHIECIKSWHKNG Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following exon feature(s) are a part of this mRNA:
Homology
BLAST of Spo06589.1 vs. NCBI nr
Match: gi|902165688|gb|KNA07136.1| (hypothetical protein SOVF_174650 [Spinacia oleracea]) HSP 1 Score: 585.9 bits (1509), Expect = 4.600e-164 Identity = 280/301 (93.02%), Postives = 288/301 (95.68%), Query Frame = 1
BLAST of Spo06589.1 vs. NCBI nr
Match: gi|731361591|ref|XP_010692439.1| (PREDICTED: uncharacterized protein At1g28695 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 505.0 bits (1299), Expect = 1.000e-139 Identity = 238/292 (81.51%), Postives = 264/292 (90.41%), Query Frame = 1
BLAST of Spo06589.1 vs. NCBI nr
Match: gi|870847551|gb|KMS99898.1| (hypothetical protein BVRB_1g017460 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 505.0 bits (1299), Expect = 1.000e-139 Identity = 238/292 (81.51%), Postives = 264/292 (90.41%), Query Frame = 1
BLAST of Spo06589.1 vs. NCBI nr
Match: gi|922395693|ref|XP_003590102.2| (nucleotide-diphospho-sugar transferase family protein, partial [Medicago truncatula]) HSP 1 Score: 377.1 bits (967), Expect = 3.200e-101 Identity = 181/293 (61.77%), Postives = 227/293 (77.47%), Query Frame = 1
BLAST of Spo06589.1 vs. NCBI nr
Match: gi|697095702|ref|XP_009612619.1| (PREDICTED: uncharacterized protein At1g28695-like [Nicotiana tomentosiformis]) HSP 1 Score: 376.7 bits (966), Expect = 4.200e-101 Identity = 178/291 (61.17%), Postives = 229/291 (78.69%), Query Frame = 1
BLAST of Spo06589.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QKQ0_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_174650 PE=4 SV=1) HSP 1 Score: 585.9 bits (1509), Expect = 3.200e-164 Identity = 280/301 (93.02%), Postives = 288/301 (95.68%), Query Frame = 1
BLAST of Spo06589.1 vs. UniProtKB/TrEMBL
Match: A0A0J8BIR2_BETVU (Glycosyltransferase OS=Beta vulgaris subsp. vulgaris GN=BVRB_1g017460 PE=3 SV=1) HSP 1 Score: 505.0 bits (1299), Expect = 7.100e-140 Identity = 238/292 (81.51%), Postives = 264/292 (90.41%), Query Frame = 1
BLAST of Spo06589.1 vs. UniProtKB/TrEMBL
Match: G7I606_MEDTR (Nucleotide-diphospho-sugar transferase family protein (Fragment) OS=Medicago truncatula GN=MTR_1g044340 PE=4 SV=2) HSP 1 Score: 377.1 bits (967), Expect = 2.200e-101 Identity = 181/293 (61.77%), Postives = 227/293 (77.47%), Query Frame = 1
BLAST of Spo06589.1 vs. UniProtKB/TrEMBL
Match: A0A072TKI2_MEDTR (Nucleotide-diphospho-sugar transferase family protein OS=Medicago truncatula GN=MTR_8g007405 PE=4 SV=1) HSP 1 Score: 360.1 bits (923), Expect = 2.800e-96 Identity = 175/293 (59.73%), Postives = 223/293 (76.11%), Query Frame = 1
BLAST of Spo06589.1 vs. UniProtKB/TrEMBL
Match: A0A072TL60_MEDTR (Nucleotide-diphospho-sugar transferase family protein OS=Medicago truncatula GN=MTR_8g007400 PE=4 SV=1) HSP 1 Score: 359.8 bits (922), Expect = 3.700e-96 Identity = 176/293 (60.07%), Postives = 223/293 (76.11%), Query Frame = 1
BLAST of Spo06589.1 vs. ExPASy Swiss-Prot
Match: Y1869_ARATH (Uncharacterized protein At1g28695 OS=Arabidopsis thaliana GN=At1g28695 PE=2 SV=1) HSP 1 Score: 311.6 bits (797), Expect = 1.000e-83 Identity = 164/299 (54.85%), Postives = 203/299 (67.89%), Query Frame = 1
BLAST of Spo06589.1 vs. ExPASy Swiss-Prot
Match: Y4597_ARATH (Uncharacterized protein At4g15970 OS=Arabidopsis thaliana GN=At4g15970 PE=2 SV=1) HSP 1 Score: 204.5 bits (519), Expect = 1.800e-51 Identity = 114/299 (38.13%), Postives = 169/299 (56.52%), Query Frame = 1
BLAST of Spo06589.1 vs. ExPASy Swiss-Prot
Match: RAY1_ARATH (Beta-arabinofuranosyltransferase RAY1 OS=Arabidopsis thaliana GN=RAY1 PE=2 SV=1) HSP 1 Score: 58.5 bits (140), Expect = 1.600e-7 Identity = 59/204 (28.92%), Postives = 93/204 (45.59%), Query Frame = 1
BLAST of Spo06589.1 vs. ExPASy Swiss-Prot
Match: AGTA_DICDI (UDP-galactose:fucoside alpha-3-galactosyltransferase OS=Dictyostelium discoideum GN=agtA PE=1 SV=1) HSP 1 Score: 56.2 bits (134), Expect = 7.900e-7 Identity = 45/172 (26.16%), Postives = 74/172 (43.02%), Query Frame = 1
BLAST of Spo06589.1 vs. TAIR (Arabidopsis)
Match: AT1G28710.1 (Nucleotide-diphospho-sugar transferase family protein) HSP 1 Score: 327.8 bits (839), Expect = 7.900e-90 Identity = 166/298 (55.70%), Postives = 208/298 (69.80%), Query Frame = 1
BLAST of Spo06589.1 vs. TAIR (Arabidopsis)
Match: AT1G28700.1 (Nucleotide-diphospho-sugar transferase family protein) HSP 1 Score: 312.0 bits (798), Expect = 4.500e-85 Identity = 155/289 (53.63%), Postives = 197/289 (68.17%), Query Frame = 1
BLAST of Spo06589.1 vs. TAIR (Arabidopsis)
Match: AT1G28695.1 (Nucleotide-diphospho-sugar transferase family protein) HSP 1 Score: 311.6 bits (797), Expect = 5.900e-85 Identity = 164/299 (54.85%), Postives = 203/299 (67.89%), Query Frame = 1
BLAST of Spo06589.1 vs. TAIR (Arabidopsis)
Match: AT5G44820.1 (Nucleotide-diphospho-sugar transferase family protein) HSP 1 Score: 235.3 bits (599), Expect = 5.300e-62 Identity = 122/292 (41.78%), Postives = 182/292 (62.33%), Query Frame = 1
BLAST of Spo06589.1 vs. TAIR (Arabidopsis)
Match: AT2G02061.1 (Nucleotide-diphospho-sugar transferase family protein) HSP 1 Score: 228.4 bits (581), Expect = 6.500e-60 Identity = 124/290 (42.76%), Postives = 175/290 (60.34%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo06589.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo06589.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo06589.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 4
BLAST of Spo06589.1 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
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