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.CCTGCTACCTCACCAAACACTTGCAAATTTCACAAGTAGCGTTTTGAATGAAAACACTACGCTATACCTCAAACGCTAACACCGAACAGGTCTTCAGTAGTGTTTAAGGTACCCACTATTCTAACCGATAATCATTAGACCATTACTCAACTCCTAACCGCTACCCACCATCGCTAATTTTACCGAATAGAACCTATACGAAGTATTACTCCGTAGCTGGTTTCTCCCCTTCTCTCGATAGAGCCACTGTAAACAAAACCCCTTTCAAATCTAAATCCTTCATCATTATTCACTAGGGTTTTAAGAATCCCCAAATTTCGAAATCAATTCACGTCAAAGTAGGAGAAAATCCAAACCCCATGGATAACTCATTAGCAAGCGCCTCTGCGATCGGCGATCAGAGGCAGAAAATCGAACAATATCGTCACATTCTCTCTTCTGTGCTGGCCTCCAATGATGTCTCTCAATCCAAGAAGTTCATTGATCACAGTACTTTCTCTCTCCTCTTCGTCTATCTTAATTTTTTTGAAAATTTTGATGCTAAATTTTTTTTTTTTTTTTGGGATTTTGTATGATGAAATTGCAGTGTTGTCGGATGATGTTCCTTTGGTGGTTTCGCGGCAGCTTTTGCAGACATTTTCGCAGGAATTGGGGAAGTTAGAGCCCGAACTTCAGAAGGAAATTGCTCATTACACCCTTCAGCAAATTCAACCTCGCGTTGTTTCTTTCGAGGAACAGGTTATTCCCACCCCCTTCTTTTATTAGGTTGGTTGCGTAAATTCCTCCAATATGGGTTCATATTGATAATTTCTGGGGCGCTTTGTTCAGTATTTAGTGGTAATAACTTCCGTCGTAATTGGTTGTGCAAAATTTGTCGAATATTTGGTGAACTTGTTGCTAATTGGTAAAAGTGGGGTGTTGGGGTTGCAGGTATTGGAGGAAATTCTGCATGTAGAATAAAGATTAATTGATGTGATTATATGCAACAATGCGGACATGCTGCATCTTATATGAATAACTAATTTAAGTATGGGAGAAAGATAAATATACTCAGGACCACAATAATTGAAGCTAGAAATCACAATGAAAGAATAAATCAAGGTTAGGACACCTCCAAATACTTAAATTGGCATATTGCGTACCTCAGCATATTGAATTTACATTTTTCTGTTGGTATTCACAGTACAATCTAAGACTTAGCTGATATCCATTACTCTGGAAAAGGGATTAAAACCCTAAATATCCAAAGTTAAGCACAACATGAACGAGATAAAAAATCCCCCTTAGAACACCAACATATCAATTCACAACTACCTAGATTCAGATTTGAAACACAATGTACAAATGTACAATTGAGTAAAAAGTTCTAAGACCCAATACAGAAAATGAGAAAAACCTTGACTTGATTTAAAACTTGACTTCTCCTCAAATGAATTTTCTTAATTTTGATGACATCCAGATTAATGTTGCTTAGTGATTATGAACATCCCATGATATAAAAGTTGTAAAAAATCGAAGAAAGAGAGACCTTCTGCTCGATACGAGGGAAGTATTTTACCCTCAAGAGCACAACTGTCAACATTGAGTTATCTGTAGCCCTGGGCTAGCTGAGTTTTTATTCACCATCAACTTGAATCTTATAGTCATATTCTGATCTCTGATCTTGGCAGTGAGAAACTTACAGGATTCTAATTTAGTTAGGAAGTTAATAGAGACAGATAGTAATGGCAATTTAAGAACCTTTAAATGATCGCCTTGGAGCACTCTTGAATTCTGGAACTATGTTCAGTTGGTAATATTCCTATTAGGTGTGTTCCTTAGACTAAGCTATGACTTTCTTCATCTGACACATATATATCAAAGCTCCCTACATTGATCCTATGATAAGGGATTTATAATGTGATCAAATTCAAAGGTTTTGAGGGTCTTGTTTTTTACAATAGACGTGGGAACTTTGATGTGAAATGATGAGTTTGACACTTATATTTTTTCTGTAGATAAGGACAATATGATGAGTAATGATCATTGCTTAACCTTTATCGAGAATTATATATGTGAAATCCAGCTCTGTTGTTGACTTTTTGATCTGTTGAACATATTTTGTGCGTGAAGTCGTTATTATGTTTGTAATGCAAAATTTTATAACTTCATGATTAGCTCCAGCTGTGGATTGATGAATGAGAATTAGAACTAGGGACAGAATTTTCTAATTCTTTGTCTTGAGTTACAGGCCCTAACCATCAGGGAAAAGCTGGCTGACTTGTATGAGTCCGAGGAGCAATGGTCAAAAGCAGCTCAAATGCTTAGTGGGATTGATTTGGATTCTGGAATGAGGTCAGAGTCTTATTTTAATTTTCAATCTTCATTGCTCTATCCCTCTCTTTTCATATCCAACTGTACAATGTATGTCCAGCATGACCCTTCAGTTTAACGATTTCCAATAACTTTTGATGTGCTTCAGAGGAATTGATGATACTTACAGGCTATCAAAATGTGTTCAGATTGCTCGTTTGTATCTTGAGGTACTCAGTTTAACTATTTTGCTGTATTTATTAACTTCTGTCTTGATGCATTGAATAGAGAGATTTCTTTCAACTCAGTGGTTTCAAGCATCTCCAAACACCTTAGAATTCGGATATCAAGGTGTTTACATATGATACAATACGAATTGGATACTAAGGTGTTTACAGATGATACAATGTTTCCCCATGTTTTTCTATCAAAGGCCTATAACTGTCCTACTGGAACTCCCTATTTTTGCCAAGGAAAGACATTTTTTTCTTTTTCTTTTCTTTTTCTTTGTGTGTCTTTGTGACTTGGAGCCTTAGGGAGAGGATGTGCTGCTACCCTGACCAGTACTTTTTCTCTTTCTAACATTTGAGAAGAAATCAGAATATTCATATTTCATAGGAGTTCCATTCTAGTAATTCAACAAAGTTAATGTTTTCTGCATTTCATTTTAAAGGATGATGATGCAATAAATGCCGAGGCTTTTATTAACAAAGCATCTTTCCTGGTCAGCAACAGTCAAAATGAAGTTCTGAATTTGCAATATAAGGTTGGTACTTGACTTTCTTGTGAAGGATGCTGGTGTTTGGTCGTAGTTGAACGGTTTCTGAAGCATCTTTCCTTTATGTGTGCGTAGGTTTGTTATGCAAGGATCCTAGACTTGAAACGCAAGTTCTTAGAAGCAGCAATACGATATTATGACATATCTCAGATTGAGAAGCGACAAATTGGAGACGAGTATGTGCGAAACACATTATTTTTTTTATTTATAATATTCCACTATTTTGACTTTACGACCATCTTTGTAGATGCTACTTGTGCTTATTAAAGATATTTCATAATGGTGAACTTCTAAATTTCTAATATCTTGTTCATATCTGAGCTGTGTATGTTCTACGTGAATTGATGAATGGTAGTACTATATTGATGTTTGCTATTTTATTTATTATTCTTTTCTTTTTTGTGATTTAACGACCCCTGTCTATGGTAGATGGGTGCTCTTATGTTTATTGTCGTGGTATGAGTAACCGTACTGTTAGATTGGATGCACCTGATATGCAATTAACAACGAGGTCATAGGTTGTGCTAATTGGTACGTGGTATAGTACTATACTTTTGGACTAGCTTAACTAAATTAGGTGGTGTACTATGTTCTGGTGTACCACTGTACCAGAACGAATTGCTATCAAGGTGCCATTTGTCAAACCTTGATTCTTTGTTATTACCAAGTTTTAGTAAAGATTAGTAAGTAGTAACAGTAAATAATTACGGAGCATGATAATTTGAGCCTAGCTTCATTATCGGGCAAAGAGTGGAAATGTTGGTCTATAGTTGTAACAGTCCCATTGAGTTCCTGACATTTACCTAAACAGTTCAAGTCGTACATGGACACACATTACAGTTAAAATCATCTGTAAGCTTTAGTTTATTGTGAGCAAGACACTTTGATGTATATTCTTGTCAGATAATGGTAGTCTTGTACTTTTTTCATTTCGTGTTGTTTGATTCCAAACATTCCAGTAGACGTGTAGTACGGAGTTTGAGAATATGGTCCATTAAATTTCTGTATATTAACTTCCACAAAAAATTCACCAAACAACTGATTTGTGTTTTTAGTATTAATTGCTTCAAAGCAAAAGCAACCAAGGAAACTTCTTAAAATTACGTTCCGATTACATGCACCTGGTCATGGGCGAACCTATAGTGACCCCATAGGGTCCATAGGACCCCATTATTTTTGGAAAAAAATCAGAAAGAGTATGTAATTTGAATTTTAAAAAATTATATTTGTGGTCCCCATAGTAAAAGCAATAAAGAATAAGATAAAAAGACAAAAAAAGTAGATTGTTGGAAAGTACGGAGTAGAAAAGTGGAAAACAAACCCACTTCTCAAATGTCACGTGAAGGAGCTGACTTTCATTCCCATCAAGGCAACCATTGCAATTAGTTTTATTGAATGAAAATTAAAACATTGAATATAATTATCAAAACCCCAAATTTATCTCTCCCAATACTACAAAACAAACGACTTTTCACCTCCCATTTCCTAAATCTCAGAGTCAATCTCCTCCTACTCTATGCATTTTCAGTAAATTAAAATTAATGATGAAATCAATTGTTCAACCTTATTTTTTGTAAATCAAAATTTGGGTGATTAATCATAGAATTGGGTTATTGAGTATTTGATTAGTGTTTAGATTGTCTCGATTATCTTAATTAGTTGATATAAATATGAATTTTAATTTAATTTAGTGTTTGTGTTATTGAGTACTTGAGTGGTTGAATTTTTGTAATTTGTTTATGTGTAAGATTTCTTGTTTATGGCTATTTTCCCCGAATTTGATGTGTAAGATGTTTGTATTGATCTTATTTGCTAGAATACTCGACTTTTATAGAACACGACATTTTTATCCATGTTAGTGATGATATTATGAAGCGATTTCAAGGAATGCAAAATCGTCATGAACAATTGAAACTTTTTAAAAAATATATTTTCATTAGTTTTATTGTATCGTATGAACGTGATTTTTGAAATGTATTGGTAACTTTTAAATTTTTTGTGCAATGAAGTTGTAAAAAAATTTGGGACCCCCATTAATTAATTCCTGGGTCCGCCCCTGCACCTGGTGACTAAATAGATGGACATGGGTAATCATGCTTGTTTATTGTCTTGTTTGGCAACGTCCATACATTTACGCATTGACCTCAACTGCATGTTCACATAGATGGTAAACTAGGTGGCTGGGCTAATGAAGTGCTTTTAGTAATAAGGCATCATCTAAAAACATAGCGGAGATGTGATTAGAATCTTGTAATTTCCCCCGTTTAAAAAGAATTCCTTTGATTTCAAGTGAAGAATTGTTAGTTGTAGTGGAAGTACCTAACTGTGCTTCTTGGTCTTTTCCTCCCTTCTCTTTGGGGGGGAAGGGGTCCTTAAGACTTTAGGGGCTTGTTAAGTACCCTTGATTAGGCCATTGACTTTTTACATGTGGCTTGATTCGTTTGAAGGGAAATTGATGAAGCAGCACTAGAACAAGCTTTATCAGCTGCTGTCACCTGTACAATATTGGCTGGTGCTGGGCCTCAACGTTCTCGCGTTCTTGCTACATTGTACAAGGTATTCATGTTTGGTTGGTGAGTTAAACATGTTAATTTCTTTTTCTCAGCGATGCTTAATATTTGAACTTCTTACAGGATGAACGATGCTCAAAGTTGAAGATTTATCCGATATTGCAGAAGGTGATTTCTGACTTCTCTATAGTAGTTTAGCATAAATATGATATTCTCTGTCAATCTTCTAACTTTTTTAATTTAATATTTGGCTGTGCAGGTATATCTGGAAAGGATTCTGAGGAGACCTGAAATTGATGCGTTTGCAGAAGAATTGAAACCACATCAGGTTATGGATTGCACTCTACCTTGCAATCTTCATTTCCATTTAGTACCCCGTGCTTTCGAGGCCATTTTTTTATATGAAAATCTGACACCTAAATTTCTGACAGAAAGCGTTTCTTCCTGACAACTTTACTGTGCTGGATAGAGCAATGATTGAGCACAATCTTCTAAGTGCTAGTAAACTTTACACAAACATAAGGTGATTGACCCCCTCCTTTGGTCTTTCTTCCCCCTGTAGACAGACTAGACCTCTACCCCTGGTACCCCCCTTCCCGAATGAAAAGGAAAAGGGTAGATGTTACATTACTTCCATGTATTGCTGATGACCGACCTTAATCTTACTGTTTTTTGTCCATTGTGTAGCTTTGATGAATTGGGCACATTGCTTGGCATCCCTCCTCATAAGGTTACTTTCTGTCTTGTTTGACTATACTTTGACAAGTCATGTGCTTTTCTTCTTTCAGTATTCTGTATTTTATTTTTGTTGGTCAGGCTGTTTTTGGAAATGCTTGATGATTTTTGTTTGAACATAATTTTTTTTTTCCAGCGAGCATGTGCTTGGTCTAGCTGAGCTTTTGCCATGTAGACTGTAGCATCTGCAGTTTGATATCATTTGCAATATCTCTGTCTTATAGTTATATGGTTGTATTTTGTAGGTCTTTAGGTTGTATGGCAATGCAATTGTAAGATGTAAGAATAAGAACTGTAATGTAAGGATGAGTCTTCATCATGTTTGTGTTTCCTTTGAAAAAGGAGTTCTTAGTGCTTTCAATCTTTTGAGTGTCAGGACGATAAAGGATGAAGTCTGCTACTTTGATAGTTTCAGGTCTTTGGTGTACATGTTAGTTTACTTGTTCCCTTTGACATCAAGAGGGATTGGACTTGCATTTGAGCAGGATTCTTATTCTTCTTAATCATATCGTTTGTTTTTTGCCATCCGTTTATATATCTTTTTCCCGGAGATGTTGATGACCTACTTGTTGGGGGAGATTGATTGATCCCCTGCATAATTTTGGTTGAATTTTTGGTTCAAGCTTTCTCAAAGAGTCAAATCCCAACACCAGGGCTTGTTTATGCTTGAATGGTTGTCTCGTTTCCTTGCATGTGTGTCTCTCATTAAAGTTCTGGTATGTTGTTTGGAAGTTGAATGATTTCTCTTTTTTGCAGGCTGAGAAGATTGCTTCGAAAATGATATATGAAGATCGAATGAGGGGCTCAATTGATCAGGTATGGTTAGATTTTGATCTTTTCAGTAATCTTTAAACTCGCCCGATTGAAGTTTTCTTAATGGTTGGGGATGGCACTGGAGTGTGCATATAGTTGTGGTGTTACGTTATATTCGCTCAATTAGAAAAGTAGTTGCCTTGTTTTAACTTGGCTCGTGTTTGTGGTTGTATTATTTATGCATCAGGTGGAAGCTATGATACATTTCGAGGACGACACAGAGGAACTGCAACAGTGGGATCAGCAGGTATGCTACGTTTTACGCAATTTGTTATCTCTCCCATTTTCTTTAAAGAATCACATCTCCCTGTCTCCGACTGCTGGGAGGAGAAGGATGTAAGTGGATGTAGCAACTGCGTTATCAAAAGAGTTTGGATTTGGGACGGTTGTACATTCCTTAGGCGTTGGTAAAATATCATGACATAGCTCGTCATTCCATCAATTTTTTATTTTTTTTTTAATTTCTTTTGTTTTGTTATTTGTGAACCTCTGCAGATTGTTGGAGTATGCCAGTCCCTTAATAATATTCTTGATGGCATGGCTAAGAGGGGATTTCAGATTCCTGTTTGATCATGATGCAGTTCAGTCAGTTCAGTTACACCGAAGTGTTGATACTTTTTGGCATGGCTTGTTGAGGGTAGAAGCTCTTTGTTCAACGGCCACTCGGCCTCTCTTTGTTTCACAATTTGCAGTTGCAACTTCAGCGATCAGTTTCGTTGGTTCTCTCTCTTTATTCTTTGGAGGGGATTTTCATTTTCGAGGAGAAAAAAGGCCCTAGATATTAGATAATGTGTATAGAACTCACTTAATATAACTGATTTAGCTTTTTCAGAGAGGAAATCCATTTGTCTTGTCTTCCTCCTAGAAATTAGCTTATCCATGTGCATTCTGGTTGAGTGTCTATACAAATTGTTTCAGACTTCCAGGACGTTCGTGATTTTTAACTTTTTTGAAGTGCTATGTCACGTTTGTATCGATTGTTTTGCCTAGTCCCTTGGTTTAGTCATGTATCGTGTGCCACTCTTAGTCTCGATGTTGAGACTGCCAAGCTCTCCTCCACTGTGTGCCTTAGGTTTGTAGCACAGTCCTTAGGCCTTGTTCTTTTGGACCTTTTTGCAGTTTCATTCAGCTCAGCTCAGCTCCATT CCTGCTACCTCACCAAACACTTGCAAATTTCACAAGTAGCGTTTTGAATGAAAACACTACGCTATACCTCAAACGCTAACACCGAACAGGTCTTCAGTAGTGTTTAAGGTACCCACTATTCTAACCGATAATCATTAGACCATTACTCAACTCCTAACCGCTACCCACCATCGCTAATTTTACCGAATAGAACCTATACGAAGTATTACTCCGTAGCTGGTTTCTCCCCTTCTCTCGATAGAGCCACTGTAAACAAAACCCCTTTCAAATCTAAATCCTTCATCATTATTCACTAGGGTTTTAAGAATCCCCAAATTTCGAAATCAATTCACGTCAAAGTAGGAGAAAATCCAAACCCCATGGATAACTCATTAGCAAGCGCCTCTGCGATCGGCGATCAGAGGCAGAAAATCGAACAATATCGTCACATTCTCTCTTCTGTGCTGGCCTCCAATGATGTCTCTCAATCCAAGAAGTTCATTGATCACATGTTGTCGGATGATGTTCCTTTGGTGGTTTCGCGGCAGCTTTTGCAGACATTTTCGCAGGAATTGGGGAAGTTAGAGCCCGAACTTCAGAAGGAAATTGCTCATTACACCCTTCAGCAAATTCAACCTCGCGTTGTTTCTTTCGAGGAACAGGCCCTAACCATCAGGGAAAAGCTGGCTGACTTGTATGAGTCCGAGGAGCAATGGTCAAAAGCAGCTCAAATGCTTAGTGGGATTGATTTGGATTCTGGAATGAGAGGAATTGATGATACTTACAGGCTATCAAAATGTGTTCAGATTGCTCGTTTGTATCTTGAGGATGATGATGCAATAAATGCCGAGGCTTTTATTAACAAAGCATCTTTCCTGGTCAGCAACAGTCAAAATGAAGTTCTGAATTTGCAATATAAGGTTTGTTATGCAAGGATCCTAGACTTGAAACGCAAGTTCTTAGAAGCAGCAATACGATATTATGACATATCTCAGATTGAGAAGCGACAAATTGGAGACGAGGAAATTGATGAAGCAGCACTAGAACAAGCTTTATCAGCTGCTGTCACCTGTACAATATTGGCTGGTGCTGGGCCTCAACGTTCTCGCGTTCTTGCTACATTGTACAAGGATGAACGATGCTCAAAGTTGAAGATTTATCCGATATTGCAGAAGGTATATCTGGAAAGGATTCTGAGGAGACCTGAAATTGATGCGTTTGCAGAAGAATTGAAACCACATCAGAAAGCGTTTCTTCCTGACAACTTTACTGTGCTGGATAGAGCAATGATTGAGCACAATCTTCTAAGTGCTAGTAAACTTTACACAAACATAAGCTTTGATGAATTGGGCACATTGCTTGGCATCCCTCCTCATAAGGCTGAGAAGATTGCTTCGAAAATGATATATGAAGATCGAATGAGGGGCTCAATTGATCAGGTGGAAGCTATGATACATTTCGAGGACGACACAGAGGAACTGCAACAGTGGGATCAGCAGATTGTTGGAGTATGCCAGTCCCTTAATAATATTCTTGATGGCATGGCTAAGAGGGGATTTCAGATTCCTGTTTGATCATGATGCAGTTCAGTCAGTTCAGTTACACCGAAGTGTTGATACTTTTTGGCATGGCTTGTTGAGGGTAGAAGCTCTTTGTTCAACGGCCACTCGGCCTCTCTTTGTTTCACAATTTGCAGTTGCAACTTCAGCGATCAGTTTCGTTGGTTCTCTCTCTTTATTCTTTGGAGGGGATTTTCATTTTCGAGGAGAAAAAAGGCCCTAGATATTAGATAATGTGTATAGAACTCACTTAATATAACTGATTTAGCTTTTTCAGAGAGGAAATCCATTTGTCTTGTCTTCCTCCTAGAAATTAGCTTATCCATGTGCATTCTGGTTGAGTGTCTATACAAATTGTTTCAGACTTCCAGGACGTTCGTGATTTTTAACTTTTTTGAAGTGCTATGTCACGTTTGTATCGATTGTTTTGCCTAGTCCCTTGGTTTAGTCATGTATCGTGTGCCACTCTTAGTCTCGATGTTGAGACTGCCAAGCTCTCCTCCACTGTGTGCCTTAGGTTTGTAGCACAGTCCTTAGGCCTTGTTCTTTTGGACCTTTTTGCAGTTTCATTCAGCTCAGCTCAGCTCCATT ATGGATAACTCATTAGCAAGCGCCTCTGCGATCGGCGATCAGAGGCAGAAAATCGAACAATATCGTCACATTCTCTCTTCTGTGCTGGCCTCCAATGATGTCTCTCAATCCAAGAAGTTCATTGATCACATGTTGTCGGATGATGTTCCTTTGGTGGTTTCGCGGCAGCTTTTGCAGACATTTTCGCAGGAATTGGGGAAGTTAGAGCCCGAACTTCAGAAGGAAATTGCTCATTACACCCTTCAGCAAATTCAACCTCGCGTTGTTTCTTTCGAGGAACAGGCCCTAACCATCAGGGAAAAGCTGGCTGACTTGTATGAGTCCGAGGAGCAATGGTCAAAAGCAGCTCAAATGCTTAGTGGGATTGATTTGGATTCTGGAATGAGAGGAATTGATGATACTTACAGGCTATCAAAATGTGTTCAGATTGCTCGTTTGTATCTTGAGGATGATGATGCAATAAATGCCGAGGCTTTTATTAACAAAGCATCTTTCCTGGTCAGCAACAGTCAAAATGAAGTTCTGAATTTGCAATATAAGGTTTGTTATGCAAGGATCCTAGACTTGAAACGCAAGTTCTTAGAAGCAGCAATACGATATTATGACATATCTCAGATTGAGAAGCGACAAATTGGAGACGAGGAAATTGATGAAGCAGCACTAGAACAAGCTTTATCAGCTGCTGTCACCTGTACAATATTGGCTGGTGCTGGGCCTCAACGTTCTCGCGTTCTTGCTACATTGTACAAGGATGAACGATGCTCAAAGTTGAAGATTTATCCGATATTGCAGAAGGTATATCTGGAAAGGATTCTGAGGAGACCTGAAATTGATGCGTTTGCAGAAGAATTGAAACCACATCAGAAAGCGTTTCTTCCTGACAACTTTACTGTGCTGGATAGAGCAATGATTGAGCACAATCTTCTAAGTGCTAGTAAACTTTACACAAACATAAGCTTTGATGAATTGGGCACATTGCTTGGCATCCCTCCTCATAAGGCTGAGAAGATTGCTTCGAAAATGATATATGAAGATCGAATGAGGGGCTCAATTGATCAGGTGGAAGCTATGATACATTTCGAGGACGACACAGAGGAACTGCAACAGTGGGATCAGCAGATTGTTGGAGTATGCCAGTCCCTTAATAATATTCTTGATGGCATGGCTAAGAGGGGATTTCAGATTCCTGTTTGA MDNSLASASAIGDQRQKIEQYRHILSSVLASNDVSQSKKFIDHMLSDDVPLVVSRQLLQTFSQELGKLEPELQKEIAHYTLQQIQPRVVSFEEQALTIREKLADLYESEEQWSKAAQMLSGIDLDSGMRGIDDTYRLSKCVQIARLYLEDDDAINAEAFINKASFLVSNSQNEVLNLQYKVCYARILDLKRKFLEAAIRYYDISQIEKRQIGDEEIDEAALEQALSAAVTCTILAGAGPQRSRVLATLYKDERCSKLKIYPILQKVYLERILRRPEIDAFAEELKPHQKAFLPDNFTVLDRAMIEHNLLSASKLYTNISFDELGTLLGIPPHKAEKIASKMIYEDRMRGSIDQVEAMIHFEDDTEELQQWDQQIVGVCQSLNNILDGMAKRGFQIPV Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo10386.1 vs. NCBI nr
Match: gi|902203727|gb|KNA14660.1| (hypothetical protein SOVF_105250 [Spinacia oleracea]) HSP 1 Score: 765.4 bits (1975), Expect = 5.000e-218 Identity = 397/397 (100.00%), Postives = 397/397 (100.00%), Query Frame = 1
BLAST of Spo10386.1 vs. NCBI nr
Match: gi|731350190|ref|XP_010686379.1| (PREDICTED: COP9 signalosome complex subunit 4 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 745.3 bits (1923), Expect = 5.300e-212 Identity = 382/397 (96.22%), Postives = 396/397 (99.75%), Query Frame = 1
BLAST of Spo10386.1 vs. NCBI nr
Match: gi|802592874|ref|XP_012071811.1| (PREDICTED: COP9 signalosome complex subunit 4 [Jatropha curcas]) HSP 1 Score: 699.1 bits (1803), Expect = 4.400e-198 Identity = 356/397 (89.67%), Postives = 381/397 (95.97%), Query Frame = 1
BLAST of Spo10386.1 vs. NCBI nr
Match: gi|255538588|ref|XP_002510359.1| (PREDICTED: COP9 signalosome complex subunit 4 [Ricinus communis]) HSP 1 Score: 696.8 bits (1797), Expect = 2.200e-197 Identity = 354/397 (89.17%), Postives = 381/397 (95.97%), Query Frame = 1
BLAST of Spo10386.1 vs. NCBI nr
Match: gi|590593182|ref|XP_007017491.1| (Proteasome component (PCI) domain protein [Theobroma cacao]) HSP 1 Score: 695.7 bits (1794), Expect = 4.800e-197 Identity = 355/397 (89.42%), Postives = 381/397 (95.97%), Query Frame = 1
BLAST of Spo10386.1 vs. UniProtKB/TrEMBL
Match: A0A0K9R580_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_105250 PE=4 SV=1) HSP 1 Score: 765.4 bits (1975), Expect = 3.500e-218 Identity = 397/397 (100.00%), Postives = 397/397 (100.00%), Query Frame = 1
BLAST of Spo10386.1 vs. UniProtKB/TrEMBL
Match: A0A0J8BTX1_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_8g182330 PE=4 SV=1) HSP 1 Score: 745.3 bits (1923), Expect = 3.700e-212 Identity = 382/397 (96.22%), Postives = 396/397 (99.75%), Query Frame = 1
BLAST of Spo10386.1 vs. UniProtKB/TrEMBL
Match: A0A067KQI5_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_04406 PE=4 SV=1) HSP 1 Score: 699.1 bits (1803), Expect = 3.000e-198 Identity = 356/397 (89.67%), Postives = 381/397 (95.97%), Query Frame = 1
BLAST of Spo10386.1 vs. UniProtKB/TrEMBL
Match: B9R7R6_RICCO (Cop9 complex subunit, putative OS=Ricinus communis GN=RCOM_1593880 PE=4 SV=1) HSP 1 Score: 696.8 bits (1797), Expect = 1.500e-197 Identity = 354/397 (89.17%), Postives = 381/397 (95.97%), Query Frame = 1
BLAST of Spo10386.1 vs. UniProtKB/TrEMBL
Match: A0A061FCH0_THECC (Proteasome component (PCI) domain protein OS=Theobroma cacao GN=TCM_034010 PE=4 SV=1) HSP 1 Score: 695.7 bits (1794), Expect = 3.400e-197 Identity = 355/397 (89.42%), Postives = 381/397 (95.97%), Query Frame = 1
BLAST of Spo10386.1 vs. ExPASy Swiss-Prot
Match: CSN4_ARATH (COP9 signalosome complex subunit 4 OS=Arabidopsis thaliana GN=CSN4 PE=1 SV=2) HSP 1 Score: 660.6 bits (1703), Expect = 1.100e-188 Identity = 337/397 (84.89%), Postives = 370/397 (93.20%), Query Frame = 1
BLAST of Spo10386.1 vs. ExPASy Swiss-Prot
Match: CSN4_DANRE (COP9 signalosome complex subunit 4 OS=Danio rerio GN=cops4 PE=2 SV=1) HSP 1 Score: 361.7 bits (927), Expect = 1.000e-98 Identity = 193/382 (50.52%), Postives = 261/382 (68.32%), Query Frame = 1
BLAST of Spo10386.1 vs. ExPASy Swiss-Prot
Match: CSN4_BOVIN (COP9 signalosome complex subunit 4 OS=Bos taurus GN=COPS4 PE=2 SV=1) HSP 1 Score: 357.8 bits (917), Expect = 1.500e-97 Identity = 193/382 (50.52%), Postives = 260/382 (68.06%), Query Frame = 1
BLAST of Spo10386.1 vs. ExPASy Swiss-Prot
Match: CSN4_RAT (COP9 signalosome complex subunit 4 OS=Rattus norvegicus GN=Cops4 PE=1 SV=1) HSP 1 Score: 357.8 bits (917), Expect = 1.500e-97 Identity = 191/382 (50.00%), Postives = 261/382 (68.32%), Query Frame = 1
BLAST of Spo10386.1 vs. ExPASy Swiss-Prot
Match: CSN4_MACFA (COP9 signalosome complex subunit 4 OS=Macaca fascicularis GN=COPS4 PE=2 SV=1) HSP 1 Score: 357.5 bits (916), Expect = 1.900e-97 Identity = 193/382 (50.52%), Postives = 260/382 (68.06%), Query Frame = 1
BLAST of Spo10386.1 vs. TAIR (Arabidopsis)
Match: AT5G42970.1 (Proteasome component (PCI) domain protein) HSP 1 Score: 660.6 bits (1703), Expect = 6.100e-190 Identity = 337/397 (84.89%), Postives = 370/397 (93.20%), Query Frame = 1
BLAST of Spo10386.1 vs. TAIR (Arabidopsis)
Match: AT5G64760.1 (regulatory particle non-ATPase subunit 5B) HSP 1 Score: 56.2 bits (134), Expect = 5.200e-8 Identity = 79/344 (22.97%), Postives = 145/344 (42.15%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo10386.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo10386.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo10386.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo10386.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 2
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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