Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AATACACCATCCATAGACTTCCATTAAAAAAAAGTTAACAAAAATTATAATCTCCAAATTGCATCTCCTTTGGCTTTGATAGAGGAGTAGAGAGTAGAGAAGAAGAGAGTAATTTGGTAGAGCATCAATGCAATGCAATCCCATCCTATGCTGAGATATTACACCACTAGAACTGCAGTAGCAGCTGCACTACTCCCTTTTTACGCCTTTAAACCCACCATACTAACCCCCTTTTCTTCTTCTGCGCACCTCGCCGCCATGAAACCCACCACCACCGTCACCGCACAACAACCCTCTCCTTCCGTGCCTCTCTCCTTTGCCGCCTCACCCAAATGCTTCTCCGCCGCCGGTTCTTTCAACTCGGAACTCGCCGCTGTTGACTCTGTAGAGCCTGCTTCCCAGCTTGTCGTCGTCTCCTTTTACAAGTTCGCCGATTTCCCTGACCACGCCGATTTCCGCAACCCCATCAAGCAGCTCTGTGAGGAATTGGTAATTCTAATCCTAATTTCCTGAATTTGATTTTTTTTCGCTTTTGCTATCAATTTTAGGGGTTTTCGCTATATTCCATTTTGATATTGTATGTCGAACATTCAGCATTTCAAGTTTCCCGCAGATATGAATCATAGTATGACTTAATTTTTCCTTTTAGATTTTTGGCACAAATTGGGGCATAATGTTGGTATTAGTATTGGACTCATTGTGTTATCGTAAACTGCATGTAGTTTTTAGGCTGTGCAATGTATTGTTTGTATTACCTTAATACATTTACTGCCCGTTTGGTAGCCGGCCATAAATGGTGGAAGTGGGAATAAATCTAAGTGTTATTTGGCAAGAAAAATAACATTTTAATGTCCTTGGTAATGAAACCTATCTCAAACATGTTGTTTTTCTTCATAAATTTGCATTCCCACCCAATACCCTCCCTAAATAGTAATGGATGGTAATGAAAATTTATGAAGAAAAATAGATAATTTTGAGTTAAGTAGCATTACCATGGGAATGAATGTTGATTTTCCTTATAAATTTACATATAAATTCATTCCCATCGGCACCATTTATGGCCGGCTACCAAATGAGCTGTTATGGGTTTTTCAATTCTTTGAAAGCCAATTTTCATTGTGTGTTGCAATTTCTTGTAGACTTTGCCTCTTTGGCTCTTTATTGGGGGCAACGAAAGAAAGAGCAGCGGTGGTGAGTGAGTTGAGGGGAATGGAATATCCTCAAATTATAGCAATTAGTATGAAAAGTTACAGCAAAGTATTGGGTTCAATCATGAATTTGGGTATATTATCGATGTTCAATGGGGGCCTGGGGGTAGCGATACATCCGAATTCCAGAATCTAGTCAGGTTGCTAAATGCTAAGTAAAACTGTAGTTCAATGTTCAATCAGAGGAGTCGTTTTTACTTCTTGAGCTGAGTAAGAAAATCAGAGGTAGGTTGTGGTGAAAGGAGGGAAACACTCCCATGTGATTGTTGTTTTTGAATCTTTAATATTGAATTATTGATGGTGCTCTGTAAGTATTACAGTTTAGGTTTAGGGAAAAGCTGCTACACCAGTTTGTCATTCAAGGGCTTTGGATGGGAAACAGAATATTTTAGGTGTAAGCGGACTTCAAAAATCTGCGTGTAGAGAGGTTATTTCTATTGAATCTTTGATTGGACAAACGTAGATAAGAAGCAGCAGATAGCATAGTCTGACGTTTGGTTCTTAACGCTGGGATGCAGAACTAGAAAACGGTGGGAAATTGATACAAAAAGTTTTGGTCTTGTTTTCAAATTTACTGGAGAATTTTGTGCTAGTGAATACCTCTTAAATTTGGATTGCTTACCCAGCAAAACAATTCACAAGCGAGTGTTGTTACTAACTTGTGAAGAATGTGGATTATTTCTGTAGAACATTTGATGTAATCGCAATGTTATTGATATTGTTTGATATGGACGTCAGAAGATATGAGAAAGAACATGGGTGAACAATCATTTTTTTTGCCTTACATTTCCAAAAAGTTGCTCTATGTTGTGATATAGAACACTTGAATATTTTGGTATTAACTGCGGTCGAATGGGAAAATCGACGGCCTTACCACTTGGGTGTAAAATTTGAATCATACCTAATTCATACTTTTGTTGCTCCTGATTTGGGAGCCACGGTGGCATATCTATCGCACCCTAGGCCTTTCTTTCCCAACCTGAATATTTTCTTCAAAATTATAGATTGATTTTAAAAGAGCTGGAAATATAATGTCAATACTCCCTCCGTCCTTTAATACTCGCACCGCTTTCCTTTTCGGGCCGTCCTTCACCGCTTCTATAAATAGATTTTTTTTACCAATATTATATTTTTTCTCACACTTACCTACTAACCCACTCCCTACAAAAAATCATTTAAAAATTCACACCCCCACTATCCCCTTACACATTTCCCATTAACTATATTAAAAACATACCACACTATCAACTACCAACCATTAAATTAATAAGTCTATTCAAGTGTCTTAAACTCCGCACCGGTTTGACCGGTGCGAGTATTAAGGGACGGAGGGGGTATTTTGTTATGGATCTCCAGCAAGTATGATATTGAAAGTTTATGTTTTGTTTTAAATTTTTTTTTGTTCGTTTTTGTTCATATAGTCTTCAGCTCTGTTTCGTTGGCTCTAGACTGCCCATAGTGAGTATGGTTTACTTTGCTATTTTGAGCAATTTTTCACAAACATAGTAAGAGGTTGAATGCCACTGGCCCCTTTACTTTATCTAAGGAGATTTCAAATTGTTCTTTGTTTTGAGAATCCTTCATGTATCGTCCCTTCCACGAGTTCCACCTTAGTTTCTCCTTGCAACTTATTTGACTATGTCTCTATCTCTTCACTTAACTTCTCTAAACATCAATTCATCATGACCAGGTACTCAGGTGAATCTCAATGTTCATTAGATGAGTAAGTGCTATAACATTAATTGCTAGTTTTCAACTAATACCAAAATACATGTTGGAAATGGCCTGGAGAAGAAGCTTTTAGGATCAGGTTTGGTGCTCAAGTCCATGGGTCAAGCTCTCATTCATGAAGTGTTTGTGAAATATATGATAGTTCTTTTAGGTAGTGTTTGGATACTACCATTTCATTTGAAATGAGTCATTTCAAATCTGTATTTCAAACTATTGAAATTCAATTCCGAATACTCCTGTTTGGGAAAAACTAGGAATTTCAAATGATCATTTCAAATTCACTTGGTGTTTGGAAACTATGGAATTCCAAATTCATAATTGAATACATGAACCAGTTATTTCTTGTATAATTCAATTTAACAACAACAAAAATCCTTGCCAAAAAAATAAAAACAAACAAAAATAATCAACTAATTTATATTGATACATCAACAATTTGATCTCCTTTGTTTCCACAAAACATCATTTTCTTCCTGCAATGTGATTCTCTTCCAGACATTAATTAAAAAATTCAATTACAATATGATTCTCTTGCAAACATTAATTGCACGCCATTCTCTCTCCTCCCCCAATTCTTATGCCAGCAAAGACTAGTGAATTTGAAAATTTTGTGCTTAAGTAGGTGTTAATTGAAGCAGAATTAGGTGATTAATTTGAGTAGCATGATTAGCTATGTGATGAACATGAGAGAGAAAGATGGAGAAATTACTAGAAGGATATGGCAGAGAATATGCCAACGATCGTAGGGAGGAGGCGGCTCATGGAGGTGGTCATTGTGAAGGTGATGGTGGTTGTGATGATGCGGTGGTTGATTGCAAAAGAGGTGGTGGAATGGCGGTTGAGGAGATGGTGGTGGGTTTGAGAGAGGAGAGAGAAAAAAAGTTAGGAAATTGAGCAAGGAGGAGAGAGAGGGGTGAGATCCGTGAAACAAAGAGTCATGTGGAATTGAAATGACAACCTTTCAAGTGGTATTTCAAATTCTCAAAAATGGCTTTTTTTTCTTTAAGGGTTGGATTTGTCCCAAATCCAATTCCAAATTCTAAGTGTTTCCAAACAAGTGAATTGGGCTAAATCCAGAGTTTCAAATGAAATCTAGGTTCCCAAACAGGCCATTAAGGCATTTCAAATGAGTAAATTATGTAATTCAGAATACGTGGTTCCTGCCATCGTTACGTTTTAGTCTCTGACCATTCAGTTCATTCCTGTCTTTAGTTTGTTGTGCATCATGCATACCTGCAGTGTGTTATAGTGCTGGGAGTTAAAGCCTTGATTTCTTTCAAGATACGATTCCCTCGGTACTGTACCCACCTTCAGGCCTTTCACCTTCAAATTTTATTTAGGAAAAATAAGTTTAGATAAGGGATAATATATTCACTTCAAAACTACAATAGAACTATAGAAGTTATAATTTAGGTACGTGCCAGTTAGCTCAGATAACTTTAGATAAGGCCAGTATGTCCAAATAAGGTCTCAAGTGATAAGAAACCTTACTTTATTCGAACATTGTTACAATTCTGCTTTAGCTTTAAACCATTCGACTTCTTTATGAGGCTTGCTTGCATTAACCATCTACCATCTTGTCCTCCTTGTTACTTACTCTTTCAGTTTCTGGTATTTTTGTTCTCGATTAGCTACTAAATAACCTTGAGTTTCATCCAAGACTAAATGCTATTTGGCTGTGAGCCCATATAAATCTTGTGTACCAGTCCAACAAATATCATTTCAATTCTTACAATTATCAAGTTGATTTTTTATAATGCATTATTGGTGGGTGTCCAAGTGCCTTTTTTCACTGCTGCATTTCATTTTACTTTTTTAGTCTAATGTCTAAGCAGCACAAATTAACATTATTCATGCCTTGCCTGTCTCACTGTCTGATAATGTTCAGCGTGTTTCAGGTGGTATCATTCTTGCACCAGAAGGAATCAATGGGAGCATATGTGGTATCCGCAAAGCCGTAGAACGTGTTCTTGAATTTATTCAATCAGATGACCGTCTGAAGGGCCTAAGGCAGATTGAGTCACCGGTGACTCCCGAAGATGAAGAAATACACCATGGACATACTAGCAAATCTCCTGTTGGAGCCGGAGAAGACGCACCCTTTCGATGGGATCATGTTAGGGTCAAGCTAAAGAAAGAGGTAATCTTCTAAATGCATATGCGTTGAATTGTTTCTTATGTCCTTGTTAGTTGTTACTATTACTATGCTTTGTTGTTTTACATCTGTGTTCACGTATTAGCAGATAGTGTCTCTTGGAATGCCCAGTGTTTCTCCTACAGAGAGAGTTGGAACCTACATTAGTCCTAAAGAGTGGAATGCATTGATCAGCGATCCAAACACGGTAAGATAGATATTCCAGCAACTGTTTGTCTAACATATGGATGATATGCTAATGTGCTATGGGTTTTTCTTTCTCTTGTGTGGAATTGGAATTGTCTATTTCAGTTATTCCATATTCAGAAAATGAATATCATCCTCTGCATCCACTTAAATTAGTCAAATTCAATGAGCAGGATTTGCTGCAGCCTGCAGGTATCCTGATTTTAAATGATTCTAGAGTGGTCGCTTCAGTGTCAAAATTAAGTGAAATCAAATCCATATTCAGAAAACTGAATTTCACACTCTTGGTTTGCTTAAGAGTGTGTTGAATTTTGTGTTAAGGATATGCTAGAAGCATCCTGATCTGTTACATGCTTTTTAATTCTTATAAAATTCTGATTAGTGGTTTTCTTTAGTTGCCCGGTATAAAAGAAAGAACCAACCAAAAACGATTCCTATCTTGCTCTTAATCAAACAATAAAACAAAATTTAGGATTTGCATCTCTCCTTGGAAGGGATTAGTAGTATAAAGTTATAAACATCTCTTCAAAATTTTCTTATTTATTGAATTTGAGTTTTACTCTGTATCAAATCAGCAGAATTGATGGACATTCAGTTGAGTATGTTACTGTCTGAGCCCTATGTATTTCAGGTGCACTTACAGTTTTTGGTAGAATGAAACGTAACTTCATTGCTTGGTCAAATACCATCTTAGAATTTGTCAAAGCCCTCTTTCCCTTTTCATAGCTAGAATTTATCTTTTGAAGAAAGGATATATGAACAACTCATCAACCTTCTTGTAGGTAGAATAATGACTGGTAAAACAAAGTTTGGTTTTACTGTACTTGGAAGTATTATTACAGACATACTTTATGAACTCATCTTTGATTTAACTTAGGTGGTCATCGACGTTCGCAACTCCTATGAAACCAGAATCGGAAAATTCAAAGGAGCAATTGATCCTTGTACAACGGCATTTAGAGAATTTCCTTCTTGGGTGGAAGATAGTTTTCAACTGGCCGGTACAGACAGCCTTCCATCACAGGAGGTGCAGGAAAACAATAGAAGTGAAAGCAAAGAGGAAACTGAAGGATGTAAGTCTCCACCTCGGGTTGCCATGTATTGCACTGGTGGGATTCGGTGCGAGAAAGCTTCTAGTTATCTCTTAAGTAAGGGTTTCAAAGAGGTAATGACTCCTTCTTGCAAATTTGTTCTCACTGTTTTTCCCTTTATATACGTATTAAAGATCACAATAGAACTTAAATGCACTTATCCTCTTTGCATAAGCTCCGCATGTCAACTTTTAGGGGTAAAAATCTATTTTCAGGTGGGGTGGGTGGGGGATTAGCAAGATTTTGCAGTAATTTCTATCATACAACCGGTTTTAGAATGTGCATGGCACAACCAATGCTATTTCTTGGCTCATTTGGGAGAGCTCATATGAGTAAAGAAGCTAACATATAGACCTGGTGGTACCACAGGTTGTATTATGGACATCTTGTGGGATTTGATAGTCCCTCCATTCCTCAAATGAACCACAATTATGGGGACCAATCAGATCATGTTTAAGAAATTAAGTTAAAATGACATCACATCACTATTTCTTATTGATTAAGTTTTTTTACCCTTCTGTCACACAAAATGCAGTCTTCCTTTGGAATTCTTTGTTTGAGATATTACTGTGGGTAACATGGGAATATAGATGCATTGAATACTAGATTAATATAGATTTATGAAGTGATGTGCTAGATTAATATATCGCCCATAATATAGATGCATTGAATATTTTGTCTAATACTTTGAGTCTTAGGGGGTTTTGTGAAGTTTCCGATGAGCAAAACAGATGTCGCTTGGGTGTCATTGTTGGAGCTCTTTTGTTGTTCAATGCGTTAGTGAACGAAATGAATTTTGTAGATTATATTCATGATGCATGTGATTAGTTAGCAGGAATAGGCTAAAGATAAAAATGTTGGTTGCTTCACATAGGTGTTTCTGCCAAATATTTGAACAAGCTATCAAGTCATTGCTGTTAATGCCAATTCCTTCCTCAAGGTTTCTTTGACTTAGTCATTAAAACATTTGATAATTATCCAGGTTTATCATTTGAGAGGGGGGATACTAAAATATCTGGAGGAAGTTCCACAACCGGAGAGTTTATGGGAGGGAGAATGCTTTGTCTTTGATAAGAGAGTGTCGGTGGATCATGGGTTAGCCCAAGGCACTTTCAAACTCTGTTATGGGTGCAAGCAACCAGTGAGTGATGCTGATATGGAATCCCCTGAGTTTGAGTACGCGGTTTCATGTCCATATTGTTTCTCAACAAAATCCGAGGAAGAGAAAGAGAGAGCACGAGCTCGACAGAGACAATTTGAGGTTTGGGGTGTCATCGGTGGTCCTGACAAGGGTCGTCGACCTACACAAAGTATAAACGAGCCACAAAATGGTGATAGTTCTCAGCTGTCAAAATCAGTTTAGGTTATGTGGAGTGAAGAAGGCGTGTTGTTTGGTTTCCTTTTCATTCATCTTTCAATTTTATAATAGCAATTTAGTCTGCTCGGAACAGTAAGCAATAGTTTGTCTGCTTGTTGAATCAGACAAGTAAGTTTGAAGTGTAACAATGAAGTTGAAAGCACAGTTTTCTCCAAAAGGAAGGGTGTTTGACGGTTATTCTTCATTTTGGAAGGATACTAACATTTTGACCTAGTCAAATTGTGTTTGCATTTTGGACTTTTACAATATTTTGTTAAAGTACCAAGAAAAATAGTACTTCACTTTTATCATCGTTTTGAACCCAAATAATACAGAGATAATAGAAGTACCAAATCGTTCGTGACTCGTGACTCGTGACTCGTGAGACATGATATTAGATATCGAGTAAGAAAAATTGCTGTACTGGACAGACAATTCGATACAGAGAACTATTTTCATTTTAGCTAATTTAAATATTTAGTCGAGATCGCTAATTGCTA AATACACCATCCATAGACTTCCATTAAAAAAAAGTTAACAAAAATTATAATCTCCAAATTGCATCTCCTTTGGCTTTGATAGAGGAGTAGAGAGTAGAGAAGAAGAGAGTAATTTGGTAGAGCATCAATGCAATGCAATCCCATCCTATGCTGAGATATTACACCACTAGAACTGCAGTAGCAGCTGCACTACTCCCTTTTTACGCCTTTAAACCCACCATACTAACCCCCTTTTCTTCTTCTGCGCACCTCGCCGCCATGAAACCCACCACCACCGTCACCGCACAACAACCCTCTCCTTCCGTGCCTCTCTCCTTTGCCGCCTCACCCAAATGCTTCTCCGCCGCCGGTTCTTTCAACTCGGAACTCGCCGCTGTTGACTCTGTAGAGCCTGCTTCCCAGCTTGTCGTCGTCTCCTTTTACAAGTTCGCCGATTTCCCTGACCACGCCGATTTCCGCAACCCCATCAAGCAGCTCTGTGAGGAATTGCGTGTTTCAGGTGGTATCATTCTTGCACCAGAAGGAATCAATGGGAGCATATGTGGTATCCGCAAAGCCGTAGAACGTGTTCTTGAATTTATTCAATCAGATGACCGTCTGAAGGGCCTAAGGCAGATTGAGTCACCGGTGACTCCCGAAGATGAAGAAATACACCATGGACATACTAGCAAATCTCCTGTTGGAGCCGGAGAAGACGCACCCTTTCGATGGGATCATGTTAGGGTCAAGCTAAAGAAAGAGATAGTGTCTCTTGGAATGCCCAGTGTTTCTCCTACAGAGAGAGTTGGAACCTACATTAGTCCTAAAGAGTGGAATGCATTGATCAGCGATCCAAACACGGTGGTCATCGACGTTCGCAACTCCTATGAAACCAGAATCGGAAAATTCAAAGGAGCAATTGATCCTTGTACAACGGCATTTAGAGAATTTCCTTCTTGGGTGGAAGATAGTTTTCAACTGGCCGGTACAGACAGCCTTCCATCACAGGAGGTGCAGGAAAACAATAGAAGTGAAAGCAAAGAGGAAACTGAAGGATGTAAGTCTCCACCTCGGGTTGCCATGTATTGCACTGGTGGGATTCGGTGCGAGAAAGCTTCTAGTTATCTCTTAAGTAAGGGTTTCAAAGAGGTTTATCATTTGAGAGGGGGGATACTAAAATATCTGGAGGAAGTTCCACAACCGGAGAGTTTATGGGAGGGAGAATGCTTTGTCTTTGATAAGAGAGTGTCGGTGGATCATGGGTTAGCCCAAGGCACTTTCAAACTCTGTTATGGGTGCAAGCAACCAGTGAGTGATGCTGATATGGAATCCCCTGAGTTTGAGTACGCGGTTTCATGTCCATATTGTTTCTCAACAAAATCCGAGGAAGAGAAAGAGAGAGCACGAGCTCGACAGAGACAATTTGAGGTTTGGGGTGTCATCGGTGGTCCTGACAAGGGTCGTCGACCTACACAAAGTATAAACGAGCCACAAAATGGTGATAGTTCTCAGCTGTCAAAATCAGTTTAGGTTATGTGGAGTGAAGAAGGCGTGTTGTTTGGTTTCCTTTTCATTCATCTTTCAATTTTATAATAGCAATTTAGTCTGCTCGGAACAGTAAGCAATAGTTTGTCTGCTTGTTGAATCAGACAAGTAAGTTTGAAGTGTAACAATGAAGTTGAAAGCACAGTTTTCTCCAAAAGGAAGGGTGTTTGACGGTTATTCTTCATTTTGGAAGGATACTAACATTTTGACCTAGTCAAATTGTGTTTGCATTTTGGACTTTTACAATATTTTGTTAAAGTACCAAGAAAAATAGTACTTCACTTTTATCATCGTTTTGAACCCAAATAATACAGAGATAATAGAAGTACCAAATCGTTCGTGACTCGTGACTCGTGACTCGTGAGACATGATATTAGATATCGAGTAAGAAAAATTGCTGTACTGGACAGACAATTCGATACAGAGAACTATTTTCATTTTAGCTAATTTAAATATTTAGTCGAGATCGCTAATTGCTA ATGCAATCCCATCCTATGCTGAGATATTACACCACTAGAACTGCAGTAGCAGCTGCACTACTCCCTTTTTACGCCTTTAAACCCACCATACTAACCCCCTTTTCTTCTTCTGCGCACCTCGCCGCCATGAAACCCACCACCACCGTCACCGCACAACAACCCTCTCCTTCCGTGCCTCTCTCCTTTGCCGCCTCACCCAAATGCTTCTCCGCCGCCGGTTCTTTCAACTCGGAACTCGCCGCTGTTGACTCTGTAGAGCCTGCTTCCCAGCTTGTCGTCGTCTCCTTTTACAAGTTCGCCGATTTCCCTGACCACGCCGATTTCCGCAACCCCATCAAGCAGCTCTGTGAGGAATTGCGTGTTTCAGGTGGTATCATTCTTGCACCAGAAGGAATCAATGGGAGCATATGTGGTATCCGCAAAGCCGTAGAACGTGTTCTTGAATTTATTCAATCAGATGACCGTCTGAAGGGCCTAAGGCAGATTGAGTCACCGGTGACTCCCGAAGATGAAGAAATACACCATGGACATACTAGCAAATCTCCTGTTGGAGCCGGAGAAGACGCACCCTTTCGATGGGATCATGTTAGGGTCAAGCTAAAGAAAGAGATAGTGTCTCTTGGAATGCCCAGTGTTTCTCCTACAGAGAGAGTTGGAACCTACATTAGTCCTAAAGAGTGGAATGCATTGATCAGCGATCCAAACACGGTGGTCATCGACGTTCGCAACTCCTATGAAACCAGAATCGGAAAATTCAAAGGAGCAATTGATCCTTGTACAACGGCATTTAGAGAATTTCCTTCTTGGGTGGAAGATAGTTTTCAACTGGCCGGTACAGACAGCCTTCCATCACAGGAGGTGCAGGAAAACAATAGAAGTGAAAGCAAAGAGGAAACTGAAGGATGTAAGTCTCCACCTCGGGTTGCCATGTATTGCACTGGTGGGATTCGGTGCGAGAAAGCTTCTAGTTATCTCTTAAGTAAGGGTTTCAAAGAGGTTTATCATTTGAGAGGGGGGATACTAAAATATCTGGAGGAAGTTCCACAACCGGAGAGTTTATGGGAGGGAGAATGCTTTGTCTTTGATAAGAGAGTGTCGGTGGATCATGGGTTAGCCCAAGGCACTTTCAAACTCTGTTATGGGTGCAAGCAACCAGTGAGTGATGCTGATATGGAATCCCCTGAGTTTGAGTACGCGGTTTCATGTCCATATTGTTTCTCAACAAAATCCGAGGAAGAGAAAGAGAGAGCACGAGCTCGACAGAGACAATTTGAGGTTTGGGGTGTCATCGGTGGTCCTGACAAGGGTCGTCGACCTACACAAAGTATAAACGAGCCACAAAATGGTGATAGTTCTCAGCTGTCAAAATCAGTTTAG MQSHPMLRYYTTRTAVAAALLPFYAFKPTILTPFSSSAHLAAMKPTTTVTAQQPSPSVPLSFAASPKCFSAAGSFNSELAAVDSVEPASQLVVVSFYKFADFPDHADFRNPIKQLCEELRVSGGIILAPEGINGSICGIRKAVERVLEFIQSDDRLKGLRQIESPVTPEDEEIHHGHTSKSPVGAGEDAPFRWDHVRVKLKKEIVSLGMPSVSPTERVGTYISPKEWNALISDPNTVVIDVRNSYETRIGKFKGAIDPCTTAFREFPSWVEDSFQLAGTDSLPSQEVQENNRSESKEETEGCKSPPRVAMYCTGGIRCEKASSYLLSKGFKEVYHLRGGILKYLEEVPQPESLWEGECFVFDKRVSVDHGLAQGTFKLCYGCKQPVSDADMESPEFEYAVSCPYCFSTKSEEEKERARARQRQFEVWGVIGGPDKGRRPTQSINEPQNGDSSQLSKSV Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from 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:
The following exon feature(s) are a part of this mRNA:
Homology
BLAST of Spo15893.1 vs. NCBI nr
Match: gi|902160353|gb|KNA06434.1| (hypothetical protein SOVF_181160 [Spinacia oleracea]) HSP 1 Score: 913.7 bits (2360), Expect = 1.300e-262 Identity = 452/453 (99.78%), Postives = 452/453 (99.78%), Query Frame = 1
BLAST of Spo15893.1 vs. NCBI nr
Match: gi|731319071|ref|XP_010670060.1| (PREDICTED: rhodanese-like domain-containing protein 7 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 727.6 bits (1877), Expect = 1.300e-206 Identity = 375/469 (79.96%), Postives = 410/469 (87.42%), Query Frame = 1
BLAST of Spo15893.1 vs. NCBI nr
Match: gi|870866453|gb|KMT17435.1| (hypothetical protein BVRB_2g038870 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 727.6 bits (1877), Expect = 1.300e-206 Identity = 375/469 (79.96%), Postives = 410/469 (87.42%), Query Frame = 1
BLAST of Spo15893.1 vs. NCBI nr
Match: gi|731411884|ref|XP_002275422.2| (PREDICTED: rhodanese-like domain-containing protein 7 [Vitis vinifera]) HSP 1 Score: 615.5 bits (1586), Expect = 7.300e-173 Identity = 306/429 (71.33%), Postives = 348/429 (81.12%), Query Frame = 1
BLAST of Spo15893.1 vs. NCBI nr
Match: gi|1009121678|ref|XP_015877589.1| (PREDICTED: rhodanese-like domain-containing protein 7 [Ziziphus jujuba]) HSP 1 Score: 607.1 bits (1564), Expect = 2.600e-170 Identity = 292/377 (77.45%), Postives = 329/377 (87.27%), Query Frame = 1
BLAST of Spo15893.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QGL2_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_181160 PE=3 SV=1) HSP 1 Score: 913.7 bits (2360), Expect = 9.100e-263 Identity = 452/453 (99.78%), Postives = 452/453 (99.78%), Query Frame = 1
BLAST of Spo15893.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CUK6_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_2g038870 PE=3 SV=1) HSP 1 Score: 727.6 bits (1877), Expect = 9.200e-207 Identity = 375/469 (79.96%), Postives = 410/469 (87.42%), Query Frame = 1
BLAST of Spo15893.1 vs. UniProtKB/TrEMBL
Match: F6HC32_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_13s0067g03150 PE=3 SV=1) HSP 1 Score: 615.5 bits (1586), Expect = 5.100e-173 Identity = 306/429 (71.33%), Postives = 348/429 (81.12%), Query Frame = 1
BLAST of Spo15893.1 vs. UniProtKB/TrEMBL
Match: A0A0A0KM63_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_5G223080 PE=3 SV=1) HSP 1 Score: 602.4 bits (1552), Expect = 4.500e-169 Identity = 299/421 (71.02%), Postives = 340/421 (80.76%), Query Frame = 1
BLAST of Spo15893.1 vs. UniProtKB/TrEMBL
Match: A5B7T5_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VITISV_013130 PE=3 SV=1) HSP 1 Score: 597.8 bits (1540), Expect = 1.100e-167 Identity = 306/463 (66.09%), Postives = 347/463 (74.95%), Query Frame = 1
BLAST of Spo15893.1 vs. ExPASy Swiss-Prot
Match: STR7_ARATH (Rhodanese-like domain-containing protein 7 OS=Arabidopsis thaliana GN=STR7 PE=2 SV=1) HSP 1 Score: 581.6 bits (1498), Expect = 7.300e-165 Identity = 300/474 (63.29%), Postives = 352/474 (74.26%), Query Frame = 1
BLAST of Spo15893.1 vs. ExPASy Swiss-Prot
Match: Y2887_RHIME (UPF0176 protein R02887 OS=Rhizobium meliloti (strain 1021) GN=R02887 PE=3 SV=1) HSP 1 Score: 313.9 bits (803), Expect = 2.900e-84 Identity = 153/338 (45.27%), Postives = 208/338 (61.54%), Query Frame = 1
BLAST of Spo15893.1 vs. ExPASy Swiss-Prot
Match: Y2782_SINMW (UPF0176 protein Smed_2782 OS=Sinorhizobium medicae (strain WSM419) GN=Smed_2782 PE=3 SV=1) HSP 1 Score: 312.4 bits (799), Expect = 8.300e-84 Identity = 154/338 (45.56%), Postives = 210/338 (62.13%), Query Frame = 1
BLAST of Spo15893.1 vs. ExPASy Swiss-Prot
Match: Y4166_RHIL3 (UPF0176 protein RL4166 OS=Rhizobium leguminosarum bv. viciae (strain 3841) GN=RL4166 PE=3 SV=1) HSP 1 Score: 310.8 bits (795), Expect = 2.400e-83 Identity = 153/341 (44.87%), Postives = 209/341 (61.29%), Query Frame = 1
BLAST of Spo15893.1 vs. ExPASy Swiss-Prot
Match: Y2319_METFK (UPF0176 protein Mfla_2319 OS=Methylobacillus flagellatus (strain KT / ATCC 51484 / DSM 6875) GN=Mfla_2319 PE=3 SV=1) HSP 1 Score: 310.5 bits (794), Expect = 3.200e-83 Identity = 151/337 (44.81%), Postives = 209/337 (62.02%), Query Frame = 1
BLAST of Spo15893.1 vs. TAIR (Arabidopsis)
Match: AT2G40760.1 (Rhodanese/Cell cycle control phosphatase superfamily protein) HSP 1 Score: 581.6 bits (1498), Expect = 4.100e-166 Identity = 300/474 (63.29%), Postives = 352/474 (74.26%), Query Frame = 1
BLAST of Spo15893.1 vs. TAIR (Arabidopsis)
Match: AT1G09280.1 (Rhodanese-like (InterPro:IPR001763), Serine hydrolase (InterPro:IPR005645)) HSP 1 Score: 119.4 bits (298), Expect = 5.800e-27 Identity = 87/303 (28.71%), Postives = 145/303 (47.85%), Query Frame = 1
BLAST of Spo15893.1 vs. TAIR (Arabidopsis)
Match: AT1G17850.2 (Rhodanese/Cell cycle control phosphatase superfamily protein) HSP 1 Score: 109.0 bits (271), Expect = 7.900e-24 Identity = 84/301 (27.91%), Postives = 129/301 (42.86%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo15893.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo15893.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo15893.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo15893.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 3
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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