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.CGGGCTACTGTAGTTGAACAAGGGTCTATTAAGAGAATTCTATTCTCCCTAACAAGTTAGCAACCCACAAGTTGTCCACCAAACCCATCTTCCTCTCCCTAATGTTGTTGAGTTTTATAACTAACAATTACTCCGTATACTACTACATAACAATTAACAACTAACCACTCACCACTTTATAAATTATAACCACAACATTCTCCCATTAATCACAAAATAATTCTCTAAAAACAAAATAAAAATGGTGAACCTCGTGGAAGCTCAAAAGCCCCTCCTCCACGGCCTTATGAAAATGGCCGGAATCCGCCCAACAACGGTGGAGCTTGAACCCGCGGGTACGTCCATGTCTTTCTGGGTACCCGCAGAATCACTCCCAAAACCCAACAAAAAACCCAGTAAGAAGCCCGAAAGGCCCAAACCCGTGGTAGTCCTAATCCATGGGTTCGCCGCCGAGGGGCTAGTGACGTGGCAATTCCAAGTAGGAGCACTCACTAAAAAATACTCAGTCTACGTGCCGGACCTCCTATTTTTCGGGAAGTCCTGCACCGGTGCCACCGACAGGTCTCCGACGTTTCAGGCGGAGTGTTTGGCGGCGGCGCTGTCGAAGCTGGGTATCACCAGGTGTACACTGGTGGGGTTCAGTTATGGCGGGATGGTGGCGTTTAAGCTGGCGGAGATGCGGCCGGACTTGGTGGAGGCGGTGGTGGTTTCGGGGTCGATATTGGCAATGACGGAGTCGATCAGTGTGGCGGAGTTGAATAGGATGGGGTTTAAGTCTTCGTCGGAGTTGTTGTTGCCGACGTCGGTAAAAGGTTTGAAGAGTTTGCTTAAGATTGCTACTCATAAGAAGTTGTGGTTTCCTGATTGCTTGCACAAAGATTACCTTGAGGTAAAACTTAATTACAAACTAATCACTTATTAACTTTTTTGCTAAATTATAATGTGGTTTTGTTTTATAATTCACTAATTATCCGTACGTAAATTATGTAGCATCTGTACCGTTACTTTCTCTAGTTGGTTAAAATTTTCATTTTTCAACTTCTTTTATTTTTAGAAACAGTCTACTTGGTATATCAATTAACAGAACAAAGTATAGTGATTAAGGGTGTGTGAATAAAACATTTGATTAGGTGAATCAGGTGTTATGCAATAAGCAAAAACATGCTTTGAGGATTGTAATAACTAATTAATTAAGTTTATACGCACGGACTAAATGAGTAATACGTGTTGTTATTGAGTCCGGATCATCTAGAGTTTTAATAAAACTCTACAAGGTAGAGTTGTATCTAAACCATACATTTTAAAATCAATGGCTCATATTTTTTAGAAAGATAATATATGAACCATTGATTTTTCATTCAATGGTTGATATGTTCAAACTCTACCTTGTAGAGTTATTTTAGAACTCTAAAGGATCCAAAACCGTTGTTATTGTTTCATTATTCCACAATAAGATTTACCGCTAGGTTGTTGTCAATTTTATTTTTTTTCGAAAAACTGGTGAGTCACAAGGTTATTTCAAATTATAAATGGACATGCTTNTCTACCTTGTAGAGTTATTTTAGAACTCTAAAGGATCCAAAACCGTTGTTATTGTTTCATTATTCCACAATAAGATTTACCGCTAGGTTGTTGTCAATTTTATTTTTTTTCGAAAAACTGGTGAGTCACAAGGTTATTTCAAATTATAAATGGACATGCTTCAGTCCAGTATGTGACTTATCATTCACATATTTTTAGCCTCTATTACTAAGCCAAAACCTTACCAATTGAGGTTGGCATGAGTGGTTAAGGGCCTCTTGCTCCTTAACCAAGGTCTCGGGTTNCACAATAAGATTTACCGCTAGGTTGTTGTCAATTTTATTTTTTTTCGAAAAACTGGTGAGTCACAAGGTTATTTCAAATTATAAATGGACATGCTTCAGTCCAGTATGTGACTTATCATTCACATATTTTTAGCCTCTATTACTAAGCCAAAACCTTGCTCATTGGTACATTATTATTGTTATTGTTGTTAAATGATTTGATTTGGAAGCGTACTTGATTTGTTATCGTTGTATAACTACGAGTATATCAAGTAAATGTGACTACACTAGTTGATCGAGTTGGCATAAAACATCACCACCACAAGAAAAGAAAAGAAAAAAAGCACAACAACATCATCACGAGCACGTAATCATGGGCTACGCTCCAGCCAACTTTTTTTTTTTGGAAAAACACGACAAAACACGTTAAACTGAATGAAATCAGGTTAAGACACGTAAACACAACAAAACCTGACACATTTGGTCGTGCCTCAGCTCGGCCACTTTTTTTAAAATTTTCGAAACGACGCACACATAACTTGTGGGCTTGGCATAGACAAAACGTATGTTTAGACGTAAGGTAAGCAGACTCAACACAGTCCAGCCCGCCCGCACGGCCCGAATTACCATCTTTATCAATGAGCCACGTTAATTAATGTTATTTTGCCTTGTGTAGCTAGTGTTGTTAGTTCAACCAACTACACCTAATTGTTTTGGAATGCCGGACTAAGACTTTTCGTATTGAATGTTATTAAATCGAATGTAGATAGAAATTGAAGATGTCTGAATCTATGAAAGATGAGTGCAGTAGTAGGGTTTTAAACTTTTAATAGATACATGTTCATTAATTTTTCTAAATTAAATGTTTACTTGTAACGAAAGCTACCTGGTCCGTACGGGTTTAAGTTTAATATTATGAAAATGACATTATTGACATTTGACAGGTGATGTTTACCAATAGAAAGGAGAGAAGTGAACTCCTTGAAGGTTTAGTCATTGCCAACCAAAACCCTGATATTCCTAATTTTCCACAGGTCCATCTCTCTCTAGCTTTCCCTACCATTTATTTATTTATTTATTTTGCGTGAATAAGCCCCATGGACAGGGGCGGAGCCCGGGGGTGGGGTGGGTCATGACCCCCTACGGCTATGAATAATTACTAAATATTGCAGTTATAAGCATACAAAATAAGTAGCTGAGATGGTAAATGTAAACTCATACGACATTTTTAATAGCCCATCACATGTTTAACTACACAAGGCATTAGTATAGTGGGTTAAGACCTCATTGGTATTTTTGTGTGATTGCTGAGTAGATTAAATAATCTTCACACTTCGGTTTGACAAGAGGACTAAACAATAATAATAAAATATTTAAACGCAGTACGTACTACAGAGTATGTAGTAGAAGTACTTTGTATTAATAGTAATAACACGGAGTAATCAGATAAGGTTGAGTGAGATATATTCCTTTCGTCCCATAATATAGTGTATGTTTTCCATTTTGAATGTCTTAAAATGATGTGTCTAGTTTGACAATTTCTTATTTAATCAATTAATTTTTGTCCAATATACTTTTATAGTTTTATCAAACAATTTAAATACGCAAATTGTTCTACTTTTAATTACAAAACATGCGCCCATACTTAATGTTTGTGCAATGAAAAATTGTGTTGTTGATTTTTTTTATATTCAACAATCTTCTCTCTCCTCCGCACCTTATTGTATATATTTTTTTTAAATACGGAGTATGTATTTTTATAATAGGTACTCCCTCCGTCCCGGAATGTTCGACCCGGTTTGACCGCCACAGAGTTTAAGGGACTTGAATTGACATATTTAATTTAATAGGTAGTAGTTGATAGTGAGGTATTATTTTAATGTAGTTAGTGGGAGGTGGGTTAAGAGGTGGGGTTGGGGGAGAGTAGGGGTTGAATTTTTAATTATTTTTTGTATGGAGTAGGGGGTAGGTGGGTTAATAGGGGTGGAGTGAGAAATAATATAATATTGTTAGAATATTTCCATTTTTAGAAACAGGTCAAGTATTAAGGGACGGTCCGATAAGGAAAACAGGTCAAGTCCGGAACGGAGGGAGTACAATATTAGTTGTTCAAGTTGTTTTTTAAATTCTTTATAATATATTACGGGACTGATGGAGTATTTAGTCATATAAGATGTTTTTCCTTACGTATTAAACCAAAAAACGAAAGAGTAAAGAAGAAAAAAAAAGAAAAAAGCCTTAAGATCATGTTAACAACATGTAGGCTCCGTTTGGTAGGGCGTAAAACGTTTTCATTGTAAAATGATTTTCCATGGAAAACACTTTTCAAGGAAAAAACAATTCCAAACTAGTTTTTCTTTGTTTGATAACTTAAAGGAAAATGGGAGAAGATGGTGAAGATTGAGGGGAAGAAAGGAGAGGGAGGTAAGGAAGAAAGAAGGAAAAGTGGTTTCCCTCCTTTTCAAGTGGAAAAGGGTTTTTCACATTTGAGGGAGTCATGGAAAATTGTTTTACATCCTTTTACCCAACCAAACAACGTAAAATGATAGAAAAGGGGAAAATCGTTTTCCATGAAAACGTTTCACGCCCTACCAAACGGAGCCTTATTGTTACTTGTTTTCTATCTTACTTGTTGCCTATCTCCCTCTTTCACAATCCAATAGTCCATACTTCAATTTTCTACTATATTATTATAATATTTTTTATCCTAAATTATTTTTCCTGGTTTTTATACACAGAAAATCCATCTGTTATGGGGAGAAAGTGATCAAATTTTCACGATTGACATTGCGCAGCAAATGAAAGAGTAAGTTCCACTCTCCTTACCTTTGCTCCCCATTTTAATTACTACTCCGTACCATAGTAGATCGATCACACTTCACAATTATTTGTCCAAATTTTGTTGATGAGTAGGGGTGTAAATTGGATGGATTGGATTGGACTTTGCCAAGTCCAAATCCAATCTAAAATTTTTTGGACTTGGATATTTGAGTCCGAGTTCGATTCAAACTTTTCTCGAATCTGATCCATAAAAAAAAAAAAAAAACAGTCCGAATCCAGTCCAATTCGGTCCGAATTTTTCTTAGAAAAAGAAANAAAAAAAAAAAAAAACAGTCCGAATCCAGTCCAATTCGGTCCGAATTTTTCTTAGAAAAAGAAACTTCATTTTAATTCTTTTTTATAAAAAAGTTAAACTCAAATATTTCGATCATAATGCAAATAATATTGTAACCGGCTAACTTTTCTGACACATAAAATAAAATATACGAGTACTAAATATTGGTTATGAAATGTTTTAATACCTACAACTACAAGTTACTCCTCCATAAAGCGTAAATAAATAATCATTAAGCAATAGATATAATTGTAAATAACAATATGTCTTACAAATCAAAACCTTAGCAAAAAGGTTATAGTTCTTAAAAAAAAATATGTATAATAAAGCTCAATAATCAACTATCACAACCGACGGGAGAAAGAAGTTGATATGGGTTTTATATGGAGTGTGATATTTGGTTGTTTTTTTGTTGCACATAGTTATTAAAGGCCCAAATATCACATATTTCACAATAGTTTTTAAATTACATATGTTTATCTATAAATAAAATCATAAAATCATAAAACTTTGGACCTGATTGGATTTTTGGACTCCAAAAGGTTGAGTCCAAGTCCAGTCCAAAAATAATTGGACTTGGAAATATGAGTCCGAGTTCGATCCAAAATTTTCAAGTCCGATCCAGTCCGACAAGTTTGGACTGGATTGGATTGGACTTTGGACTTTTCTCAATCCACTTACACACCTATCGATGAGTACTTTTTTCTTTTTATAAAGGTTCATTAGTACCTATAAGTCTATAAGACTATAAGTCGATACTAGGGTCTGTTCTCTACAACTTATTTTGATTTATCCCGGAAAAAATAAGTTTAGATAAGATAACTGCAAGGATAATTGCACATTATTATGACAAAATAGAAAAAATGTGTAAAAAGATGGATAGATAGAATAAAATAATAAAGTATGGGAATTGGGTAAAAAGGTAGGTTAGGTAGATGTAATAAAAAAAATAAAGTAAGAAAAAGTGAGTGGAAAGTTGTAAATATTTTGGGGTAAAATGGGTAAGACAATAAATTTTTATGTCAAAAAAACAGAATAAAGCAAAGTGTAAAGAACATTATAAAGCAGACTTAAACAGAAAGTGTAAATATCATTTATTTTTTGCCAGATAAGATGATAAGTTTATTTAAGAAAAAATAATTTACTTTTTACTAGATAAGATGAAGTTCAGACAAAATAAATCGAATAGATTGGAGCCTAAAAGTTAATTTTAGTCCTAAATCATTTTATCGTCCAAGAAAACAATGCTAATGACCTACAAACCCAAAGTGTTATAGCCATATGAACATATTGAACATTAGATGTTCCAACGCGCGGATGGTGTAGGGGCCTGCACGTAGATCTACGTGCACCTGCACCAAAACGCAAAAACATTAAAAGAAAACGAAAAAGAACATAACAAACTAAACAGAAAGAACATAATAAAGTAAACGAAAAGAACATTAACTAAAACCTGAAAAGAACACTAATGCTAAAAAACTAAAGAAAATATACAAAAATGAAAATAACATATTCTCTCTCCTGATAAACTATAAAAAGAACAATTATTTTTCAAAAAGAACATCGTGTGAAAAATACAACAGAAAAACAAAAAAAAAATATTATCGATAATGTTATTAAATATTAAAAAACATAAATAAGTTAAAAAGAACACAAAATAATTAAAAAAAAAACAACAACTTTTTTACAAAACAGAAGAAAAAAGAACAAAACACATGGAAAAGAACAACATTTTCTTTTTCCTTATCAAACAAAAGAACAGAATGAAAGGGACGAAAAGAACAACAAATCTATGTTCTTTTATTAGTTGTATTTGTTCTTTTCAAACCACTTAGTGTTCTAATTAAAAAGACAAAAACGACGATATTTTGATGCACTTAAAACTAGATCTAGTATTTTTATTTAAATGTATTTTTGTTCTTATCCCACGCATCAGAACTATGTTCTTTTATTAAGTGTTATTTGTTCTATTCAAACGATTTTATGTTCTAATTAAAAAGACGAAACGAAGATTTTTTGATGCACTTAAAACTAAATCTATATTTTTTTAAAAAGTTTTTTTTGTTCTTTTACCACAAATCGGACTATGTTCTTTTTTAAGTGTTATTTGTTCTTTTCAAACCATTATATGTTCTTTTTTAACAATCTATGTACGTTGATATAAAAGAACAAACTATGTTGATTTAAAAGAACAAACTATGTTGATGACACAGTAAAAGTAAAGTTGTGAAAAGAACATAACAACTTGAAAAAGAACATTAGAGGAAAGAACAAGGAAACGTACCTTAATCACTTGATCAACATGTATCAGGAACATCAATATCTTTTAATAAATCTTAAAAAACTGATCTCAATCCTCGGAAAATATCACGCTCTCCAGAGATTCTCTTGCTTCGAAAACTAACCAAATTGAACTAGTGTTTTTTCTTAATTCACTCATTTTCAACAAACAAGAAACATTCAGAAGGAATTTTAGAGAGAGAATAAGGAGAAAATGTTTTTTTTACTCTATCACTCACCATCTAACTCTTTCTCTTTCAAAAAATCTCTCTTATGTTGAGAGAATATAAATCATCTTCTCTTTCTCTCTCTAAAATGTATTTATAAAATGACTAATGGTTATGACTCATAAGTACAATTATTATATATATAGTTGCTGAAAAATAGAAAATGAACAAATAGGAAGTAGAATCAAATAATTGAAGAACAAAGAAGGAGAAAGGAAAAATTGTTAAAGAGTGCATAATGAGAACTGTGCACGTGTTTTTATTTTGTTATTTTAACAGAGTATTATAAAAAGAACAAATGAAAAGACTAAAAGAACAAATATAGAGACTGAAAGGAACAAGTCAAGTACTTTGTCCCACAATAACATATGATTCGGAATCATCATTTTCATCATTCTGTTATGAATTATCAAGCACATTATTCTTAATATCTGAAAAAAATAATAGGTTAACATGTATAAAAACAAGAAAAAGAACGCAATCAAAGAAACAAAGGATAAATAAAAAGTAACAAGAAAAATAACACAATAAAATAAAAAGAACAAGTTATGAAACGCAAATAAAATTGAAAATAATAAAAAAGAAGAACACAGTAAAATAAAAGAACAAATTATGAAACGCAAATGGTCTATTTTTCTACTATAATGAAACTGTTCTTTTAATACGAGCATAATGAAACTGTTCTTTTAATACGAACATATGTTCCTTTAATAGGTAAAAATGTTCTTTTCTGGGAAAAAAATCGTAATTACGTAATCAAAATCTTCAAAATCAACGATTTCAACAAAATCAGCGTGTTATTACATAATTTGATTCATTAAAATCATCAAATTCATCAAAACACGATTATTGCACAATCAAAATCATCAACATAGTCAAAATCATCAAAAACACAATTATTACAAAATCAAAATTATCAAAACATACCATTTATTATTACAAAATTGAAAAATTACCTCCCAAAATCAGATTACCAGCTGCAGAATTCAGGTTTGAAGAAGAAAAATCAATTTAATTTGATGTTGAAGCAGAAAAATCAACGAATTTTTGGGGATTTTCATTACTTTCTCTCTCTAAAACCCATTTAAGAAAACCTAGTTCACACTTTCTCTCTCCTCTTCATAGTTTGAATTCAAAATATAAAACCCAGAAGAATATATATCGCAAAAATAACAACGAATCAAATAAAAACGCGATAAACATAGCTGAAAAGAACAGAGCCTTTAATGTTCTTTTGTTTAGGGGAATTGTTCTTTTGTTCAAGGGCATTGTTCTTTTTTCTGGGAATTTAATAAAAACGCGCGTTTTATGTTTAATGTTGGTCGTTTTGATCCCGGTGCACCTAGAGTTACGTGCACACGCCTGTACCATCCAATTTGCGCATCTGAAAGGAAAATCAATCTGGAATAATACGGATATTCCTGCTAACATTTGCAGGAAACTAGGAGAAAAGGCTTCATATGAAGGCATAAAGAAAGCAGGTCATCTGGTTCACCTCGAAAGGCCCTGCGCTTACAACAGATGTCTGAAACGCTTCTTGGCTTCCGTATACCCTGATGTACCTGATCAAAAGTAATCATTTTCTTCGTCCAAATTTACCTGTCGTCAAATTACACTTTCAACGTGACAAGTAATTACAAAAGGAGATTCAATTTGTAGAAATAGATGTGTGGTTAGATTACAAGGAATGGAATTCCATATTTGAATTGTTTTTCAGAATCTGAATAAATTATGTGTATTGTTTGTTCAACAACAGTTGAGAAATGAATGAAATGAAATGAACAAGTAACTCATTGTTGTCCCAATATGGGATTTAAAGTTTCTTTATAACAATCGTTTTTCAGTATATACTGGAGGAATGTAAACCTTTTCGGCTTCTCAGTTCTCCCCCTTCAATTCCATTTTTGTCTCTGTATGCTGAACTCATGAAATGGTGAGTGATACAGGATAAAACCACATACTTGTGTTGCAAACTGTTTTTTTGTTTTTTATCTGAAGTATGCTTGAATTTCTTCCAGTGTTTTTCCTTTTGTTTCTGGAAGCCACGCCGCCA CGGGCTACTGTAGTTGAACAAGGGTCTATTAAGAGAATTCTATTCTCCCTAACAAGTTAGCAACCCACAAGTTGTCCACCAAACCCATCTTCCTCTCCCTAATGTTGTTGAGTTTTATAACTAACAATTACTCCGTATACTACTACATAACAATTAACAACTAACCACTCACCACTTTATAAATTATAACCACAACATTCTCCCATTAATCACAAAATAATTCTCTAAAAACAAAATAAAAATGGTGAACCTCGTGGAAGCTCAAAAGCCCCTCCTCCACGGCCTTATGAAAATGGCCGGAATCCGCCCAACAACGGTGGAGCTTGAACCCGCGGGTACGTCCATGTCTTTCTGGGTACCCGCAGAATCACTCCCAAAACCCAACAAAAAACCCAGTAAGAAGCCCGAAAGGCCCAAACCCGTGGTAGTCCTAATCCATGGGTTCGCCGCCGAGGGGCTAGTGACGTGGCAATTCCAAGTAGGAGCACTCACTAAAAAATACTCAGTCTACGTGCCGGACCTCCTATTTTTCGGGAAGTCCTGCACCGGTGCCACCGACAGGTCTCCGACGTTTCAGGCGGAGTGTTTGGCGGCGGCGCTGTCGAAGCTGGGTATCACCAGGTGTACACTGGTGGGGTTCAGTTATGGCGGGATGGTGGCGTTTAAGCTGGCGGAGATGCGGCCGGACTTGGTGGAGGCGGTGGTGGTTTCGGGGTCGATATTGGCAATGACGGAGTCGATCAGTGTGGCGGAGTTGAATAGGATGGGGTTTAAGTCTTCGTCGGAGTTGTTGTTGCCGACGTCGGTAAAAGGTTTGAAGAGTTTGCTTAAGATTGCTACTCATAAGAAGTTGTGGTTTCCTGATTGCTTGCACAAAGATTACCTTGAGGTGATGTTTACCAATAGAAAGGAGAGAAGTGAACTCCTTGAAGGTTTAGTCATTGCCAACCAAAACCCTGATATTCCTAATTTTCCACAGAAAATCCATCTGTTATGGGGAGAAAGTGATCAAATTTTCACGATTGACATTGCGCAGCAAATGAAAGAGAAACTAGGAGAAAAGGCTTCATATGAAGGCATAAAGAAAGCAGGTCATCTGGTTCACCTCGAAAGGCCCTGCGCTTACAACAGATGTCTGAAACGCTTCTTGGCTTCCGTATACCCTGATGTACCTGATCAAAAGTAATCATTTTCTTCGTCCAAATTTACCTGTCGTCAAATTACACTTTCAACGTGACAAGTAATTACAAAAGGAGATTCAATTTGTAGAAATAGATGTGTGGTTAGATTACAAGGAATGGAATTCCATATTTGAATTGTTTTTCAGAATCTGAATAAATTATGTGTATTGTTTGTTCAACAACAGTTGAGAAATGAATGAAATGAAATGAACAAGTAACTCATTGTTGTCCCAATATGGGATTTAAAGTTTCTTTATAACAATCGTTTTTCAGTATATACTGGAGGAATGTAAACCTTTTCGGCTTCTCAGTTCTCCCCCTTCAATTCCATTTTTGTCTCTGTATGCTGAACTCATGAAATGGTGAGTGATACAGGATAAAACCACATACTTGTGTTGCAAACTGTTTTTTTGTTTTTTATCTGAAGTATGCTTGAATTTCTTCCAGTGTTTTTCCTTTTGTTTCTGGAAGCCACGCCGCCA ATGGTGAACCTCGTGGAAGCTCAAAAGCCCCTCCTCCACGGCCTTATGAAAATGGCCGGAATCCGCCCAACAACGGTGGAGCTTGAACCCGCGGGTACGTCCATGTCTTTCTGGGTACCCGCAGAATCACTCCCAAAACCCAACAAAAAACCCAGTAAGAAGCCCGAAAGGCCCAAACCCGTGGTAGTCCTAATCCATGGGTTCGCCGCCGAGGGGCTAGTGACGTGGCAATTCCAAGTAGGAGCACTCACTAAAAAATACTCAGTCTACGTGCCGGACCTCCTATTTTTCGGGAAGTCCTGCACCGGTGCCACCGACAGGTCTCCGACGTTTCAGGCGGAGTGTTTGGCGGCGGCGCTGTCGAAGCTGGGTATCACCAGGTGTACACTGGTGGGGTTCAGTTATGGCGGGATGGTGGCGTTTAAGCTGGCGGAGATGCGGCCGGACTTGGTGGAGGCGGTGGTGGTTTCGGGGTCGATATTGGCAATGACGGAGTCGATCAGTGTGGCGGAGTTGAATAGGATGGGGTTTAAGTCTTCGTCGGAGTTGTTGTTGCCGACGTCGGTAAAAGGTTTGAAGAGTTTGCTTAAGATTGCTACTCATAAGAAGTTGTGGTTTCCTGATTGCTTGCACAAAGATTACCTTGAGGTGATGTTTACCAATAGAAAGGAGAGAAGTGAACTCCTTGAAGGTTTAGTCATTGCCAACCAAAACCCTGATATTCCTAATTTTCCACAGAAAATCCATCTGTTATGGGGAGAAAGTGATCAAATTTTCACGATTGACATTGCGCAGCAAATGAAAGAGAAACTAGGAGAAAAGGCTTCATATGAAGGCATAAAGAAAGCAGGTCATCTGGTTCACCTCGAAAGGCCCTGCGCTTACAACAGATGTCTGAAACGCTTCTTGGCTTCCGTATACCCTGATGTACCTGATCAAAAGTAA MVNLVEAQKPLLHGLMKMAGIRPTTVELEPAGTSMSFWVPAESLPKPNKKPSKKPERPKPVVVLIHGFAAEGLVTWQFQVGALTKKYSVYVPDLLFFGKSCTGATDRSPTFQAECLAAALSKLGITRCTLVGFSYGGMVAFKLAEMRPDLVEAVVVSGSILAMTESISVAELNRMGFKSSSELLLPTSVKGLKSLLKIATHKKLWFPDCLHKDYLEVMFTNRKERSELLEGLVIANQNPDIPNFPQKIHLLWGESDQIFTIDIAQQMKEKLGEKASYEGIKKAGHLVHLERPCAYNRCLKRFLASVYPDVPDQK 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 Spo14470.1 vs. NCBI nr
Match: gi|902198652|gb|KNA13734.1| (hypothetical protein SOVF_114150 [Spinacia oleracea]) HSP 1 Score: 630.6 bits (1625), Expect = 1.500e-177 Identity = 314/314 (100.00%), Postives = 314/314 (100.00%), Query Frame = 1
BLAST of Spo14470.1 vs. NCBI nr
Match: gi|731337335|ref|XP_010679732.1| (PREDICTED: epoxide hydrolase 4 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 549.3 bits (1414), Expect = 4.400e-153 Identity = 276/316 (87.34%), Postives = 294/316 (93.04%), Query Frame = 1
BLAST of Spo14470.1 vs. NCBI nr
Match: gi|1012342011|gb|KYP53208.1| (Epoxide hydrolase 4 [Cajanus cajan]) HSP 1 Score: 468.0 bits (1203), Expect = 1.300e-128 Identity = 226/317 (71.29%), Postives = 269/317 (84.86%), Query Frame = 1
BLAST of Spo14470.1 vs. NCBI nr
Match: gi|1021469126|ref|XP_016183974.1| (PREDICTED: epoxide hydrolase 3 isoform X1 [Arachis ipaensis]) HSP 1 Score: 462.6 bits (1189), Expect = 5.400e-127 Identity = 223/310 (71.94%), Postives = 267/310 (86.13%), Query Frame = 1
BLAST of Spo14470.1 vs. NCBI nr
Match: gi|357518259|ref|XP_003629418.1| (alpha/beta fold hydrolase [Medicago truncatula]) HSP 1 Score: 461.8 bits (1187), Expect = 9.300e-127 Identity = 225/308 (73.05%), Postives = 268/308 (87.01%), Query Frame = 1
BLAST of Spo14470.1 vs. UniProtKB/TrEMBL
Match: A0A0K9R467_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_114150 PE=4 SV=1) HSP 1 Score: 630.6 bits (1625), Expect = 1.100e-177 Identity = 314/314 (100.00%), Postives = 314/314 (100.00%), Query Frame = 1
BLAST of Spo14470.1 vs. UniProtKB/TrEMBL
Match: A0A0J8C757_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_6g128830 PE=4 SV=1) HSP 1 Score: 549.3 bits (1414), Expect = 3.100e-153 Identity = 276/316 (87.34%), Postives = 294/316 (93.04%), Query Frame = 1
BLAST of Spo14470.1 vs. UniProtKB/TrEMBL
Match: A0A151SEP8_CAJCA (Epoxide hydrolase 4 OS=Cajanus cajan GN=KK1_024834 PE=4 SV=1) HSP 1 Score: 468.0 bits (1203), Expect = 9.000e-129 Identity = 226/317 (71.29%), Postives = 269/317 (84.86%), Query Frame = 1
BLAST of Spo14470.1 vs. UniProtKB/TrEMBL
Match: G7LDX9_MEDTR (Alpha/beta fold hydrolase OS=Medicago truncatula GN=MTR_8g077290 PE=4 SV=1) HSP 1 Score: 461.8 bits (1187), Expect = 6.500e-127 Identity = 225/308 (73.05%), Postives = 268/308 (87.01%), Query Frame = 1
BLAST of Spo14470.1 vs. UniProtKB/TrEMBL
Match: F6GWW0_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_04s0023g01850 PE=4 SV=1) HSP 1 Score: 459.1 bits (1180), Expect = 4.200e-126 Identity = 229/313 (73.16%), Postives = 265/313 (84.66%), Query Frame = 1
BLAST of Spo14470.1 vs. ExPASy Swiss-Prot
Match: EPHX4_MOUSE (Epoxide hydrolase 4 OS=Mus musculus GN=Ephx4 PE=2 SV=2) HSP 1 Score: 62.8 bits (151), Expect = 7.900e-9 Identity = 35/105 (33.33%), Postives = 60/105 (57.14%), Query Frame = 1
BLAST of Spo14470.1 vs. ExPASy Swiss-Prot
Match: EPHX4_HUMAN (Epoxide hydrolase 4 OS=Homo sapiens GN=EPHX4 PE=2 SV=2) HSP 1 Score: 61.6 bits (148), Expect = 1.700e-8 Identity = 34/105 (32.38%), Postives = 59/105 (56.19%), Query Frame = 1
BLAST of Spo14470.1 vs. ExPASy Swiss-Prot
Match: BIOH_AERHH (Pimeloyl-[acyl-carrier protein] methyl ester esterase OS=Aeromonas hydrophila subsp. hydrophila (strain ATCC 7966 / DSM 30187 / JCM 1027 / KCTC 2358 / NCIMB 9240) GN=bioH PE=3 SV=1) HSP 1 Score: 55.5 bits (132), Expect = 1.300e-6 Identity = 37/101 (36.63%), Postives = 57/101 (56.44%), Query Frame = 1
BLAST of Spo14470.1 vs. TAIR (Arabidopsis)
Match: AT2G18360.1 (alpha/beta-Hydrolases superfamily protein) HSP 1 Score: 412.5 bits (1059), Expect = 2.300e-115 Identity = 206/313 (65.81%), Postives = 252/313 (80.51%), Query Frame = 1
BLAST of Spo14470.1 vs. TAIR (Arabidopsis)
Match: AT4G36610.1 (alpha/beta-Hydrolases superfamily protein) HSP 1 Score: 409.5 bits (1051), Expect = 1.900e-114 Identity = 202/311 (64.95%), Postives = 249/311 (80.06%), Query Frame = 1
BLAST of Spo14470.1 vs. TAIR (Arabidopsis)
Match: AT4G33180.1 (alpha/beta-Hydrolases superfamily protein) HSP 1 Score: 171.0 bits (432), Expect = 1.200e-42 Identity = 96/297 (32.32%), Postives = 172/297 (57.91%), Query Frame = 1
BLAST of Spo14470.1 vs. TAIR (Arabidopsis)
Match: AT1G78210.1 (alpha/beta-Hydrolases superfamily protein) HSP 1 Score: 170.2 bits (430), Expect = 2.000e-42 Identity = 103/316 (32.59%), Postives = 172/316 (54.43%), Query Frame = 1
BLAST of Spo14470.1 vs. TAIR (Arabidopsis)
Match: AT5G21950.1 (alpha/beta-Hydrolases superfamily protein) HSP 1 Score: 169.9 bits (429), Expect = 2.600e-42 Identity = 101/301 (33.55%), Postives = 165/301 (54.82%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo14470.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo14470.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo14470.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 3
BLAST of Spo14470.1 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 mRNA is annotated with the following GO terms.
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