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.TCTTACCTCCAACTGTCTAATACAAACAGAAAAAAGTTAGCAAATGGACCCCACTTCACTCTCATCTTCCTCCCTGTAACAGACACACACAGACACACTCTTCAGAACTTCTCTCACTCTCATTCATTCACTATTTCACCTTCCCTGAAAATTCAATTGCCCAATTTCTAGGGTTTGTAATCCTTTGAAAACAAACAAAATCAAGGAATTACGATGCGTTCTCTCTCCTCGATTTTCTTAATCTTCCTCCATTTTTCTACAATTTGTTTCCATTTTTGCAATGCTCGCGTTTTCACCTTCGAAATGCATCATAGATACTCGGAACAAGTGAAGACTTGGTCGCAGAACAACTATCATCTTCATCCTCATCACCCTCATAATCATCATTATTATCATCATCTTCATCATCGTTGGCCGAAGAAAGGGTCGTTTGAGTATTACTCTGATTTAGCGCAGCGTGATCGATTTCTCAGGGGTCGTAAGATGGCCGAAATTGAAGAGCCTGTTACTTTTTCCGACGGGAATTCCACTTTCCAGATTAGCTCTTTGGGATTGTAAGCTTCTTCTGTTTTACTTTCTTAATATTAGGGTTTAAATGGTTAATTCTTTGCTGGAATGTTTAGTTTGTCTTAGGTATTTCAAAAAGCTGAATTAAATTTTGGGTTTGATGATGGTTTTGATAAACTTGGGAGTGTTCTTTGGTTCATGACTGTTTGACTGCTGATTTTCTCCACGGGGAAATTAGGGTTTTGATGAAGATTTTTTGATAATTTTAGGAAGTTCTGCATAATTTAAGTTTTCCAGATAAGAATAAAATGGATAATGAATTTTGGTAGTTAGTGGCAGACTGGCACATTTATTGTTTGGTTAATTGGTTACTGAGAAGTTTTTCTGCTTCTAATTTTTGTCTCCCTAAATGAATTGAGTAACTCTTGATGATGATATTTGGTATTTTATGGACAAGTTTGCATTATACGACGGTGACATTGGGGACGCCAGGAGTGAAGTTTTTGGTGGCATTGGACACGGGGAGTGATCTGTTTTGGGTGCCGTGTGATTGTTCAAGGTGTGCTCCCATTGAGGGTGCAAGTTATGCTTATGGCGCTGTAAGCTTTTTTACTTCACTGCATTTAATTTTCTTGTTGGGTGTCTTTTGTTGTGCCCTTGGGGTGTTGGTCTGTAAACAAAGACTCTAATTTGAAAATTTTGGCTTATGAGGTTATGAGTTGTTTTTGTGGGAAAGAAACTCTAACGGTTGTCTTTGTGGACTTGCTTGCAATTTGGAATTTTTCCCAAGCAGCCTAATGATTGTTGGAGCAGAATTCATGTTGTCGTTAGAATGAGCTAGTTCGCTCATTGAGATTGGGTTGCTTCAACTTGGTTCTGTTTTAACCTCATGATACATATAGAGGGAAGAGAGAGTTAACGGATGGATTGTTTATGTTCTCTTGAAGTCTTGAATTAATAAGCTCTAAAAAGNGAGAGAGTTAACGGATGGATTGTTTATGTTCTCTTGAAGTCTTGAATTAATAAGCTCTAAAAAGCTGAAACAAATGAATCATTAGTTTTACAGGATATTTATATTCCTGTTCTTATAATAAACCTGAATTAGCGGTGTTCTTAATATCACTTCAAAGTGGGAGGTTTGAGTAAACTTCAACAACAACAACACCAACAAAGCCTTAGTCCCAAAATGATTTGGGGTCGGCTAACATGAATCGTCGNCAACAACAACACCAACAAAGCCTTAGTCCCAAAATGATTTGGGGTCGGCTAACATGAATCGTCGTAGGAGATCGTCATTGTCATCAATCAAACCAAAAAGGAGCAGGAAGTAAAAAGAAAAAAAAAAAGGAAGAGAAAGTGAAATTAATGAAAGTAGGATAAGAGAAAAAATGTATTTATATATTATAGANAAGGAAGAGAAAGTGAAATTAATGAAAGTAGGATAAGAGAAAAAATGTATTTATATATTATAGAAGAAATATTGTAAGAGATAATAAAGAATAAGTAAAATTTAAAATAAATGAATAAGTAAAATAAGAACATTTCAAAATAGCATGTGAAATTTTAAAAAATAAAATAAAATAAAATAAAATTGAAAGAATTTTAAAAATAAAAGTAAAAATAAAAATAAAGAGAATCAGAAACATTGAAGTTGTATAAGTCAAATAAAGTCATCAATGTATATTCTCTCCCTCTACTCTTTCCTATCCAACGCCATATTTTCCTCAATTCCAAGAAAGCTCATATCGTGCTCAATCACCTTCCTCCAAGTTTTCTTAGATCTTCCCCTACCCCTTGCAATTCTATCCCTTTGCCACCCTTCTATCCTCCTAACCGGGGCATCATGTGATCTTCTGCTTACATGTCCAAACCATCTTAAACGATTTTCCATCATCTTAAACTCAATCGGTGCAACCCCTACTTTCTTCCTAATAATCTCATTCCTCAAACGATCCTTTCTTGCATGCCCACACATCCAACGTAACATGCGCATCTCCGCCACATTCATCTTGTGCACGTGACAATGTTTTACTGCCCAGCATTCCGTGCCGTATAACAAAGCCAGTCGAATTGCCGTGCGGTAAAAATTTTCCTTCAATCTTTGGGGCATGCCTGAATCACATAGGAACCCCGTGACACCTTTCCACTTCAACCAACCTGCTTTTATTCTATGGGCCACATTCGCCATCCAATTCTCCATCCTTTTGGATAATAGATCCTAAATAACGGATCATTTCAGAGCCTTGGACAATTTTCCCATCTAAGGTAATCGCCCCTGTCTCTCTATCTTGGACTCCACTAAACTTACACTCCATATATTCCGTCTTGTTTCTACTCAGTCTAAAACCCCGAGATTCCAAAGTTTGTCTCCATAACTCCAACTTACTTTCCACTCCTTCTTTTGTTTCATCAATCAACACAATATCATCTGCAAAATCATGCACCAGGGTATACCATCTTGGATTGACCTCGTCAATTCGTCCATGACTATAGCAAAAAGAAACGGGCTAAGTGCGGAACCTTGATGCACTCCAATCGTAATGGGGAATTCTTCGGTCTTACCAACACTAGTTCTCACACTCGTGCTAACTCCCTAATACATGTCCTTGATGATAACAATATACTTCCTCGGAATTCCTTTCCTACTTAATGCCCACCAAAGAATTTCTCTTGGTACCTTATCATACGCCTTCTCCAAATCAATGAAAACCATATGTAAATCCTTCTTCTTATCCCGATAATTCTCCATTAGTTGCCTTATAAGATGAATGGCCTCCATAGTCGATCTCCCAGGCATAAATCCAAACTGGTTCTCCGAAATTTTCACAGTTCTCCTCAATCTTTGCTCAATAATCCGCTCCCAGAGTTTCATAGTATGATTCATTAGTTTGATTCCTCGGTAGTTGGCACAATCCTGGACATCACCCTTATTCTTGTACAAGGGGATGATAGTACTTTTCCTCCACTCTAATGGCATCCTATTACTTCCCCAAATCTTGTTGAAAAAAGTTGTTAACCATACAACCCCTCTCTCTCCCAAGCATCTCCAGACTTCGATAGGTATACCATCGGGCCCCACCGCCCTCTTGCGTCCCATCTTTTTCAGTGCCATTTCGACTTCTCTCTTTTGAATTCTTCGCATAAAGTCTAGGTTAACCATATCTCTTGGGATATTTGTATCCCCAATATCGCGTCCTTGATCCCCGTTGAACAAGTTATCAAAGTAGAACCTCCATCTATCCTTGATTTCCTTATCTCCCACCAAAACTTTTTGATCAACATCTTTCACACATTTAATCCTCCCGATGTCTCGCGTCTTTCTATTTCTCATTCGAGCAAGCCTATAGATTTCTTTCTCCCCTTCTTTTGTATCCAATCTTGCGTAAAGATCCTGATTCATCTTTGCTCAAACCTCTCTTACGGCCTTCTTTGCTTCCCTTTTAGTCTCCTTGTACTTCTCGTAGTTCTCATCACTTCTACATTTTCCCAACTCTTTATAGCACTCTCGTTTGCTCTTTATAGCTTGTTGCACAACTTCGTTCCACCAGGATGTGTCCTTACTTGGTGGCATGATTCCTTTAGATTCCCCTAGGACCTCTTTCGCCACTCCCTTTATGGTGTGCTCCATTCTTGTCCATTAGGTTTGAGTAAACTTCAATCAAAAGAATTGCCATATAATCATGATGCATTGTAGGGAAACTCGTGGATACAGTTTAAGTGTGGCAGATATAAGAACTTGTGAGAAAACATAACTCCGTGTTATAACCTCTGAGATGTGTTTCATACTTCATATACATCTACTCCTAGTATATGCTGTTTAATCAAGGTAGTTATTAGCCATCTGTAATTTTCTGAATGATATCTGATCACACTTGTAGCCTTCTTCTTTCTGTACTTGAAATTCCAAGCATCTTATTTGGCTCCTTTCCAGGCATGATTACTTCTTACCTAGTTTTTGGTGAGTAATCCTTCTGTTACAGATTGTTTAGATAGCTTAATTTTTTTATTCCGTGATAGATTTTGTCTGCATAAGGTTTGATGCAAAGAAGCTTGTGCTTGAAGCTTAAACAACGGTTTTTTATCTGTCGTTGTCGAATTTGCTAGTTTCATTGGTGGTTGCAAGTTCTAGGTTGCTTTGCCATTTTGCACTTTCTGAATATGTGATAAACCCTTTTTCTTCGTTATGTGTGGGAACACAGGATTTCGAGCTTAGCATATACAACCCTAAAGCATCATCCACCAGCACGAAAGTTTCATGCAATGACACCTTATGTCAGCATCGTAATAAATGCTTAGGATCATTCAGGCACTGCCCTTACGTTATCTCCTATGTCTCTGCTGAGACATCCACCTCTGGAATATTAGTGGAGGATGTGATGCACTTAACAACAGAAGATCATCACCCAGAATCAGTTGAGGCTTACATCACATTTGGGTGAGTTACAATTAGTGAAATCTGTACTCTTGTATCAGTGCATGTATCTATGCTAGGTTCATCGTAATTCATACTCTCAACTAAAATTCCTCCTTTACTGGTAGTAGATGTATTTGGTTATCACCTTGATGTATTTTGGCACTTAATAAGGACAACTCCAGATTAATTAGGGGGGCCCTAGTTAAGCGTGAGCTTTAATGTCAAAAGTGACTCGGCTAAAATAATTCTTAGAGGAGGCTTACAGAGTGGGTGTGAGTACGGGAGTGTAATGGGCCTATTGGCATACTAATTAATTGTTGATTATTGTGTCAACTGAAATATAGACTTGAGTTCAATCTGTTAAGCTTCATACATTGAACTCGTGCAGGCTTTGACTGAGTACTTACTTGATGGAGCTCTTTAATGTTTTGCTAGTGCCTGGAATCTCTTGTTCTGGATGCATTAACTAATATAGGATTTTGCAGCTGTGGACAAGTTCAGACTGGTTCATTTCTAGATGTGGCAGCTCCTAATGGTTTATTTGGACTTGGTATGGAGAACATATCAGTACCCAGCATATTATCAAAGGAAGGTTTTATAGCAGATTCCTTCTCCATGTGTTTCGGACGTGATGGGGTTGGAAGGATTAGCTTTGGTGACAAAGGTAGCCCTGGCCAGAAGGAAACCCCATTCAATGTGAATACCTTACAGTAAGTGGTAATTTCCCATATACTTGAACCCAATTTTTTGTCTGTATATTTTTACCGGTGAATACTTCCTTGTCGCTGACTGAAACACTTTACCTATATGTGATCTGATTATTTGTCTTCCTGCTTTCGTGCAGCCCTAGCTATAACATAACTATAACTCAGATTCAAGTAGGAACAACCCTCAATGACGCAGAATTTACCGCTCTCTTTGATTCTGGGACATCTTTTACATATCTCGTCGATCCCTTTTATACGAGCCTTGCTAGAAATGTAAGCATTTGGTTTGATTTGGTTCATAATAAACACTGCCATATTGTTCTCTCTAAAATCGGTTGTTTCCTTTCCACCCTTGCCTTGCAGTTTGATTTACAAATTAAAGATAGGAGGCGTCCTGCTGATTCAAGACTTCCTTTTGAGTATTGCTATGATATGAGGTTAGACTTGATGTGTTAGGTTAATCTAAACTTCCACACGTATCTCAGGTTCTGACACTGTTACTTTCCTACAAAATCGGCAGACCTGATGCAAATACAAGTTTAGTACCCACTGTGAGTCTTTCTTTGAGAGGAGGTGGCCAGTTTAGAGTTTATGATCCTATCATTGTCATTTCAACCCAGGTCGGAAACTAATTTTCTCTTTATAAGTCATACCTGTAACAAGCTAAACTCAACTATTGACTAAGTGCATTTTTATGCTTTTGAACGCAGATTGAACTGGTGTATTGTCTTGCTCTGGTCAAGAGTAAAGAGCTTAGTATTATTGGACGTAAGTCTCCTATTTGCAGATAATGGTTTTGACCGCCAATGCATTTGCTAACTCTTGACAAGTCAGCAAGTGCATGGAAAGTGTCGAGATCAGGCACAAATGAGAACATGACTTATGTGGTTCATACAATAGGAGAAGTCTAGCTTTCTTGTTTTGTTTTCTTTAGTTAGTCTTAAATTGGTCCATGTTTTAATTCAATGTAAATGTGGGGGTAAGGGATCTGATGGTGCTGTTTGATTTCGCATAGATTTTAAGTCAAAATGATAAGATGTAGAAGTTTTATCCCAATACTCCTGCCCTGAGAATTTCTTAGTTATTCGAGTAGGATCTTAATGTTGGATATAAAACAGCTTACATTCACTCCCTAAGACTGCAATTTTGGTGCACCTTTTTTCTTGTTTTTTTTTTTTTTTTTTGCCATTGATGCACAAGCTAATTTACTTGTATTCTATTGATATTTGTGCAGAAAACTTCATGACTGGCTATCGTATAGTATTTGATAGAGAGAAATTATGCTTGGGCTGGGAGAAATCTGACTGTAAGTCTACATTTAGTTGTTTTGTATAAACTATGTGAACTAATACTGAACCCATTAGCGTCCTCATGCAGGTTATGACATTCAGGTCTTTAAACCTTCTGCAGAAGGTAATGACACCTTCGTTCCTCCTGCAGTTGCTGCACAACCGGATAATAAAACTTTAGTTGACACGGGGAGTTCATCTTATGGTTCAAGAACATCACGGCATTTTTGTGTAGTATTTACTTGTTTGATTATCCTAATTTTCACGATTCTCTCATTTCACTAAGTACCACATGTGAATTCCTTTTATCCTCCAATCTCTTGTAAGTTCCTTAGGGTCTCCATTCTTAGATCAGATGCGTAAAGAGTAGTTTTTCTTCAGCACTGTATTATCAAGGGAAACAGGCTAAGGCAACTATGTTAGGGTTTATACGAAATAGTAAGAGTAAAAACATTTCACAGGCCACCAGAACTGAAGTATACTTTCCATCTTGCATTTGTTCTAACAAGTTGTACTTGGTCTGGTGGATTTAGGCTATGTTCTAACTCCTTACGTTTCATAATAAGTGGCGCGCTCCCTTAAACCATTGTTAATCATGAGTAAAAAAAAATCTCATTCACCTCTCTATCTCTACCCACTTTCTCACTCATCTTTTCCAATTTTCTCATGAGCAAAAATATTTCCCCATTGTTCTCTTATTCATGAGCAAATAGAAAAATTCACAGAGCTCTCTCTCTATCCA TCTTACCTCCAACTGTCTAATACAAACAGAAAAAAGTTAGCAAATGGACCCCACTTCACTCTCATCTTCCTCCCTGTAACAGACACACACAGACACACTCTTCAGAACTTCTCTCACTCTCATTCATTCACTATTTCACCTTCCCTGAAAATTCAATTGCCCAATTTCTAGGGTTTGTAATCCTTTGAAAACAAACAAAATCAAGGAATTACGATGCGTTCTCTCTCCTCGATTTTCTTAATCTTCCTCCATTTTTCTACAATTTGTTTCCATTTTTGCAATGCTCGCGTTTTCACCTTCGAAATGCATCATAGATACTCGGAACAAGTGAAGACTTGGTCGCAGAACAACTATCATCTTCATCCTCATCACCCTCATAATCATCATTATTATCATCATCTTCATCATCGTTGGCCGAAGAAAGGGTCGTTTGAGTATTACTCTGATTTAGCGCAGCGTGATCGATTTCTCAGGGGTCGTAAGATGGCCGAAATTGAAGAGCCTGTTACTTTTTCCGACGGGAATTCCACTTTCCAGATTAGCTCTTTGGGATTTTTGCATTATACGACGGTGACATTGGGGACGCCAGGAGTGAAGTTTTTGGTGGCATTGGACACGGGGAGTGATCTGTTTTGGGTGCCGTGTGATTGTTCAAGGTGTGCTCCCATTGAGGGTGCAAGTTATGCTTATGGCGCTGATTTCGAGCTTAGCATATACAACCCTAAAGCATCATCCACCAGCACGAAAGTTTCATGCAATGACACCTTATGTCAGCATCGTAATAAATGCTTAGGATCATTCAGGCACTGCCCTTACGTTATCTCCTATGTCTCTGCTGAGACATCCACCTCTGGAATATTAGTGGAGGATGTGATGCACTTAACAACAGAAGATCATCACCCAGAATCAGTTGAGGCTTACATCACATTTGGCTGTGGACAAGTTCAGACTGGTTCATTTCTAGATGTGGCAGCTCCTAATGGTTTATTTGGACTTGGTATGGAGAACATATCAGTACCCAGCATATTATCAAAGGAAGGTTTTATAGCAGATTCCTTCTCCATGTGTTTCGGACGTGATGGGGTTGGAAGGATTAGCTTTGGTGACAAAGGTAGCCCTGGCCAGAAGGAAACCCCATTCAATGTGAATACCTTACACCCTAGCTATAACATAACTATAACTCAGATTCAAGTAGGAACAACCCTCAATGACGCAGAATTTACCGCTCTCTTTGATTCTGGGACATCTTTTACATATCTCGTCGATCCCTTTTATACGAGCCTTGCTAGAAATTTTGATTTACAAATTAAAGATAGGAGGCGTCCTGCTGATTCAAGACTTCCTTTTGAGTATTGCTATGATATGAGACCTGATGCAAATACAAGTTTAGTACCCACTGTGAGTCTTTCTTTGAGAGGAGGTGGCCAGTTTAGAGTTTATGATCCTATCATTGTCATTTCAACCCAGATTGAACTGGTGTATTGTCTTGCTCTGGTCAAGAGTAAAGAGCTTAGTATTATTGGACAAAACTTCATGACTGGCTATCGTATAGTATTTGATAGAGAGAAATTATGCTTGGGCTGGGAGAAATCTGACTGTTATGACATTCAGGTCTTTAAACCTTCTGCAGAAGGTAATGACACCTTCGTTCCTCCTGCAGTTGCTGCACAACCGGATAATAAAACTTTAGTTGACACGGGGAGTTCATCTTATGGTTCAAGAACATCACGGCATTTTTGTGTAGTATTTACTTGTTTGATTATCCTAATTTTCACGATTCTCTCATTTCACTAAGTACCACATGTGAATTCCTTTTATCCTCCAATCTCTTGTAAGTTCCTTAGGGTCTCCATTCTTAGATCAGATGCGTAAAGAGTAGTTTTTCTTCAGCACTGTATTATCAAGGGAAACAGGCTAAGGCAACTATGTTAGGGTTTATACGAAATAGTAAGAGTAAAAACATTTCACAGGCCACCAGAACTGAAGTATACTTTCCATCTTGCATTTGTTCTAACAAGTTGTACTTGGTCTGGTGGATTTAGGCTATGTTCTAACTCCTTACGTTTCATAATAAGTGGCGCGCTCCCTTAAACCATTGTTAATCATGAGTAAAAAAAAATCTCATTCACCTCTCTATCTCTACCCACTTTCTCACTCATCTTTTCCAATTTTCTCATGAGCAAAAATATTTCCCCATTGTTCTCTTATTCATGAGCAAATAGAAAAATTCACAGAGCTCTCTCTCTATCCA ATGCGTTCTCTCTCCTCGATTTTCTTAATCTTCCTCCATTTTTCTACAATTTGTTTCCATTTTTGCAATGCTCGCGTTTTCACCTTCGAAATGCATCATAGATACTCGGAACAAGTGAAGACTTGGTCGCAGAACAACTATCATCTTCATCCTCATCACCCTCATAATCATCATTATTATCATCATCTTCATCATCGTTGGCCGAAGAAAGGGTCGTTTGAGTATTACTCTGATTTAGCGCAGCGTGATCGATTTCTCAGGGGTCGTAAGATGGCCGAAATTGAAGAGCCTGTTACTTTTTCCGACGGGAATTCCACTTTCCAGATTAGCTCTTTGGGATTTTTGCATTATACGACGGTGACATTGGGGACGCCAGGAGTGAAGTTTTTGGTGGCATTGGACACGGGGAGTGATCTGTTTTGGGTGCCGTGTGATTGTTCAAGGTGTGCTCCCATTGAGGGTGCAAGTTATGCTTATGGCGCTGATTTCGAGCTTAGCATATACAACCCTAAAGCATCATCCACCAGCACGAAAGTTTCATGCAATGACACCTTATGTCAGCATCGTAATAAATGCTTAGGATCATTCAGGCACTGCCCTTACGTTATCTCCTATGTCTCTGCTGAGACATCCACCTCTGGAATATTAGTGGAGGATGTGATGCACTTAACAACAGAAGATCATCACCCAGAATCAGTTGAGGCTTACATCACATTTGGCTGTGGACAAGTTCAGACTGGTTCATTTCTAGATGTGGCAGCTCCTAATGGTTTATTTGGACTTGGTATGGAGAACATATCAGTACCCAGCATATTATCAAAGGAAGGTTTTATAGCAGATTCCTTCTCCATGTGTTTCGGACGTGATGGGGTTGGAAGGATTAGCTTTGGTGACAAAGGTAGCCCTGGCCAGAAGGAAACCCCATTCAATGTGAATACCTTACACCCTAGCTATAACATAACTATAACTCAGATTCAAGTAGGAACAACCCTCAATGACGCAGAATTTACCGCTCTCTTTGATTCTGGGACATCTTTTACATATCTCGTCGATCCCTTTTATACGAGCCTTGCTAGAAATTTTGATTTACAAATTAAAGATAGGAGGCGTCCTGCTGATTCAAGACTTCCTTTTGAGTATTGCTATGATATGAGACCTGATGCAAATACAAGTTTAGTACCCACTGTGAGTCTTTCTTTGAGAGGAGGTGGCCAGTTTAGAGTTTATGATCCTATCATTGTCATTTCAACCCAGATTGAACTGGTGTATTGTCTTGCTCTGGTCAAGAGTAAAGAGCTTAGTATTATTGGACAAAACTTCATGACTGGCTATCGTATAGTATTTGATAGAGAGAAATTATGCTTGGGCTGGGAGAAATCTGACTGTTATGACATTCAGGTCTTTAAACCTTCTGCAGAAGGTAATGACACCTTCGTTCCTCCTGCAGTTGCTGCACAACCGGATAATAAAACTTTAGTTGACACGGGGAGTTCATCTTATGGTTCAAGAACATCACGGCATTTTTGTGTAGTATTTACTTGTTTGATTATCCTAATTTTCACGATTCTCTCATTTCACTAA MRSLSSIFLIFLHFSTICFHFCNARVFTFEMHHRYSEQVKTWSQNNYHLHPHHPHNHHYYHHLHHRWPKKGSFEYYSDLAQRDRFLRGRKMAEIEEPVTFSDGNSTFQISSLGFLHYTTVTLGTPGVKFLVALDTGSDLFWVPCDCSRCAPIEGASYAYGADFELSIYNPKASSTSTKVSCNDTLCQHRNKCLGSFRHCPYVISYVSAETSTSGILVEDVMHLTTEDHHPESVEAYITFGCGQVQTGSFLDVAAPNGLFGLGMENISVPSILSKEGFIADSFSMCFGRDGVGRISFGDKGSPGQKETPFNVNTLHPSYNITITQIQVGTTLNDAEFTALFDSGTSFTYLVDPFYTSLARNFDLQIKDRRRPADSRLPFEYCYDMRPDANTSLVPTVSLSLRGGGQFRVYDPIIVISTQIELVYCLALVKSKELSIIGQNFMTGYRIVFDREKLCLGWEKSDCYDIQVFKPSAEGNDTFVPPAVAAQPDNKTLVDTGSSSYGSRTSRHFCVVFTCLIILIFTILSFH Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo01971.1 vs. NCBI nr
Match: gi|902236481|gb|KNA24411.1| (hypothetical protein SOVF_015690 [Spinacia oleracea]) HSP 1 Score: 1016.9 bits (2628), Expect = 1.300e-293 Identity = 496/496 (100.00%), Postives = 496/496 (100.00%), Query Frame = 1
BLAST of Spo01971.1 vs. NCBI nr
Match: gi|731338574|ref|XP_010680394.1| (PREDICTED: aspartic proteinase-like protein 1 isoform X2 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 852.8 bits (2202), Expect = 3.100e-244 Identity = 425/522 (81.42%), Postives = 456/522 (87.36%), Query Frame = 1
BLAST of Spo01971.1 vs. NCBI nr
Match: gi|731338572|ref|XP_010680393.1| (PREDICTED: aspartic proteinase-like protein 1 isoform X1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 822.4 bits (2123), Expect = 4.500e-235 Identity = 421/554 (75.99%), Postives = 453/554 (81.77%), Query Frame = 1
BLAST of Spo01971.1 vs. NCBI nr
Match: gi|225431324|ref|XP_002269880.1| (PREDICTED: aspartic proteinase-like protein 1 [Vitis vinifera]) HSP 1 Score: 681.4 bits (1757), Expect = 1.200e-192 Identity = 338/526 (64.26%), Postives = 411/526 (78.14%), Query Frame = 1
BLAST of Spo01971.1 vs. NCBI nr
Match: gi|1009144298|ref|XP_015889723.1| (PREDICTED: aspartic proteinase-like protein 1 isoform X1 [Ziziphus jujuba]) HSP 1 Score: 673.7 bits (1737), Expect = 2.600e-190 Identity = 338/531 (63.65%), Postives = 410/531 (77.21%), Query Frame = 1
BLAST of Spo01971.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RY12_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_015690 PE=3 SV=1) HSP 1 Score: 1016.9 bits (2628), Expect = 8.700e-294 Identity = 496/496 (100.00%), Postives = 496/496 (100.00%), Query Frame = 1
BLAST of Spo01971.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CAS4_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_6g134120 PE=3 SV=1) HSP 1 Score: 852.8 bits (2202), Expect = 2.200e-244 Identity = 425/522 (81.42%), Postives = 456/522 (87.36%), Query Frame = 1
BLAST of Spo01971.1 vs. UniProtKB/TrEMBL
Match: D7TCZ6_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_00s0434g00080 PE=3 SV=1) HSP 1 Score: 681.4 bits (1757), Expect = 8.700e-193 Identity = 338/526 (64.26%), Postives = 411/526 (78.14%), Query Frame = 1
BLAST of Spo01971.1 vs. UniProtKB/TrEMBL
Match: A0A061DLC5_THECC (Eukaryotic aspartyl protease family protein isoform 1 OS=Theobroma cacao GN=TCM_000142 PE=3 SV=1) HSP 1 Score: 670.6 bits (1729), Expect = 1.500e-189 Identity = 327/482 (67.84%), Postives = 387/482 (80.29%), Query Frame = 1
BLAST of Spo01971.1 vs. UniProtKB/TrEMBL
Match: G7LB52_MEDTR (Eukaryotic aspartyl protease family protein OS=Medicago truncatula GN=MTR_8g075010 PE=3 SV=2) HSP 1 Score: 667.9 bits (1722), Expect = 9.900e-189 Identity = 335/505 (66.34%), Postives = 400/505 (79.21%), Query Frame = 1
BLAST of Spo01971.1 vs. ExPASy Swiss-Prot
Match: APF1_ARATH (Aspartyl protease family protein 1 OS=Arabidopsis thaliana GN=APF1 PE=1 SV=1) HSP 1 Score: 476.1 bits (1224), Expect = 5.000e-133 Identity = 247/503 (49.11%), Postives = 332/503 (66.00%), Query Frame = 1
BLAST of Spo01971.1 vs. ExPASy Swiss-Prot
Match: ASPL1_ARATH (Aspartic proteinase-like protein 1 OS=Arabidopsis thaliana GN=At5g10080 PE=1 SV=1) HSP 1 Score: 302.8 bits (774), Expect = 7.600e-81 Identity = 174/464 (37.50%), Postives = 247/464 (53.23%), Query Frame = 1
BLAST of Spo01971.1 vs. ExPASy Swiss-Prot
Match: ASPL2_ARATH (Aspartic proteinase-like protein 2 OS=Arabidopsis thaliana GN=At1g65240 PE=1 SV=2) HSP 1 Score: 123.2 bits (308), Expect = 8.200e-27 Identity = 115/417 (27.58%), Postives = 186/417 (44.60%), Query Frame = 1
BLAST of Spo01971.1 vs. ExPASy Swiss-Prot
Match: APCB1_ARATH (Aspartyl protease APCB1 OS=Arabidopsis thaliana GN=APCB1 PE=1 SV=1) HSP 1 Score: 115.5 bits (288), Expect = 1.700e-24 Identity = 103/381 (27.03%), Postives = 171/381 (44.88%), Query Frame = 1
BLAST of Spo01971.1 vs. ExPASy Swiss-Prot
Match: ASPR1_ARATH (Probable aspartic protease At2g35615 OS=Arabidopsis thaliana GN=At2g35615 PE=3 SV=1) HSP 1 Score: 91.3 bits (225), Expect = 3.500e-17 Identity = 88/379 (23.22%), Postives = 151/379 (39.84%), Query Frame = 1
BLAST of Spo01971.1 vs. TAIR (Arabidopsis)
Match: AT4G35880.1 (Eukaryotic aspartyl protease family protein) HSP 1 Score: 635.2 bits (1637), Expect = 3.600e-182 Identity = 309/487 (63.45%), Postives = 387/487 (79.47%), Query Frame = 1
BLAST of Spo01971.1 vs. TAIR (Arabidopsis)
Match: AT2G17760.1 (Eukaryotic aspartyl protease family protein) HSP 1 Score: 476.1 bits (1224), Expect = 2.800e-134 Identity = 247/503 (49.11%), Postives = 332/503 (66.00%), Query Frame = 1
BLAST of Spo01971.1 vs. TAIR (Arabidopsis)
Match: AT3G51330.1 (Eukaryotic aspartyl protease family protein) HSP 1 Score: 392.9 bits (1008), Expect = 3.100e-109 Identity = 220/521 (42.23%), Postives = 307/521 (58.93%), Query Frame = 1
BLAST of Spo01971.1 vs. TAIR (Arabidopsis)
Match: AT3G51360.1 (Eukaryotic aspartyl protease family protein) HSP 1 Score: 378.6 bits (971), Expect = 6.100e-105 Identity = 212/496 (42.74%), Postives = 297/496 (59.88%), Query Frame = 1
BLAST of Spo01971.1 vs. TAIR (Arabidopsis)
Match: AT3G51350.1 (Eukaryotic aspartyl protease family protein) HSP 1 Score: 355.9 bits (912), Expect = 4.200e-98 Identity = 203/486 (41.77%), Postives = 281/486 (57.82%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo01971.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo01971.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo01971.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo01971.1 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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