Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGGTGGGTTTGTTTTTAGTTAAATTTTGTGTGTTTAGTTTAGTTCATGTTGTTTCTTTGGTAAAGATTTATGCGAGATCAAAGAGAATGTCAATCTCTCGACTACAATCAGACGAATCAGACGAAAATCATATTTGTCACGGCTACAACAGATCTATAGACCCCCTCGTCAATGAAGGTTGTAAATCACAACGATATAAAAGAGGGTATACAGAATGGTTGATATACTACGATCGTAGCTATGGTGAAAGGAAGTTTTTATTTGATTCGATTGTTATGTATTTGTTAGATTTAAATTTTTATATAGATGTCCTATGACTTTTTATCAATGAATTAATTTGTTTATCAAAAAAAAAAAAAAAATACTAGATGTTCATTTGTCCAAAATTATAATAACGTAAGTTAGCTAACATTGATCTCGAGCACACCGTTCCAACTTTTATAATTTCAAATTGATATATAAGTTTAATGTTGTAATTGGTAAAATTAGAAGTCTGAGTTATAATTGGTAAATATGAAACTTTATTAGGTTGCATTTGCCAAATTATATGAATATGAATTAATCTGATAGTACTTATTGTTACTTATCTGAATTTATTAGAATGAAGCAATTATTTCAACATCAAAAGAACACATCAATAGATATAGTTGTGCCTAATAATGATGTCTTGGCCCAGTGGTTAAAACGGAGAGTCTGTGTGCAATACTCCCTACATATTTATTTAAGGAATACACTTGCCTTTTCCGGCCGAATTTATTTAAGAGATACACTTGCCATTTTTAGGAACTTATCAATCCAACCATCTACTTAAATAATACATCTAATTTACTCTATGATCCACCATTCTATTAAACAAATAATTTCATAACTCCACCCACCTCCCACCCCCAAAATGACATGGTTCCCACTTGTTTATGTATTATTCCGTAAAATATCTATCCAACCCCACTTACTTTATTATGGAGTATGGCTTAGATTTGAAACTTCAAATTCCTCATCCTTATCTATACTAATATATTAAAAGGCGTTGTGGAAAATGTATATGTGTCACGTAGTACTCTCCTCACGCCACATCATCCATTCACCATGTATTATGTAATGGACAATCAAAAATCAATACAATGAGGTTCGAACACCAGACCTCCAGTTTGGATGATAATTCTCATTACCATCTTAACCAACCACCAATTGTGATTTATCTCTTCACATTAATTTATAAATAAATGTTCACGTAAAATCTAAAACAAATAAATTTTTATGTGACTTTTTAATTTCTATGGACTATTTTGAAAAGGAAAAAAATTAAAGCATTATGACAATCATGAAGAAACCTGATGTCATAAATCTCATAAGAATCAACTATAGGATTGTCTTACATAGCTGCATATATATCTAATTGGGTGTTTATTAATTTGACGCACTTAGTTCCACGAGAAAACAAATTATACAAATTGTAAGATGATATGATTGAAAACTTACTTGCCGTGATAAATGACTTAGCGTGCCTGTGTAGTTGACAAACTTAACGGATATTTTTCATTCTAGAGAATACAAGTATTTTGATCAAATATTGAGCTCAATAAAAATCTAAAACTTTAGTTATTAAATGTAGCAACTGGGACATCGCCCGGGCCACACACTAGTTTGTAATTTATATTGCGACTGTGACTCATCCGCACCAGAAAAAGATACAGTTATCCCGGTTTATAAAAGTAAAACTGAGCCCAATTAATTTGACCAACAAACTTGCCAATTAGGAACGTGATTCCCCTACAGCCCTAGATGCCTCTTTCATTCACACTCAGTTTGTGTTAGCTCAACCTATGTGCACTAGTGCAGTACTGTCTCCTTCAACCTCTCACCCGCAACCAAACACCACGCCATCAACCAGGGCGGCGACGTCGGCCGGAAATATTACTGAAGCACAAACACACATCTTGTAAGTAACGAACTGAATCTCTCTCCCATTTTCCGAAACCCTATCTTCTTATTCTCCATTTAATTTGCCACCATTTTGGTATTTGTAATTCTAATTTTGATTTGTTGATACCTAAATTGATAGATTTTCGCTCGATTTTCAGTTAGGGTTTCGCAATTTGATATCGGAATGGCTACTTTAACGAGTCACAGATTATGCCTGAAAGATTCCACTATTTTCAGCCGCCCAAGGCCTGCTTCACCGTATTCTTATAATAGGTATTTTTTTCTATGAATTTTGGATTTTAGCTGTAATGTCAATTATGAATTTTGTTTTTCCATATCAATCATTTTCATACTACAGGGTTTTGGTAAATTGAGTTTAGGCTCTTTTAAGGCAATTGTATTTCTGGTATTTTTTTGAACCATTGGTTTCTGTATGCTGTTTTAGTTATCAATAGATACCTTGGGAAGTTATTTCCGATGGGACTTTTGAGTATTGAGCAAGATGTGTAGCCGTTGTGTAAACAATATAATGTGATAGACATTCGCAGTGGCCATAGTTTCTACGGATGCTTTCTTTCCGTTGATTTATTGCCTCGAAAACAGGGTTTCTGGTCATTTTGGGTTGGGTTTCATGTTTGGTATAGATCATGAATATGAAGCTTCATCATGACCAATACGTTTCTAGTGTGTGGAATTGTCATCTAGGCAGGAATATGGTTTTGTATTGAGTAATGAATACAGACTTAGTGGATATTGGGGACTTTTGATTATGGAGCATGAATGTAGCCTTTGCGGAACCGACATAATGTGATAAGATATTCGCGATTGCCATTGAGTGTCTACGGATGTTAGCCTGGGCTCTGTTTATATGTGACATTGAAATCAGGGTTTTGTGGTCATTTTGGTTAGGGTGTCATGTTTGGTATAGATCATCAATATGAAGCTTCATCATGACCAATACTTTTCTGGTGTGTGGAATAGTCATTTAGGCAGGAATATGGTTTTTGTATTGATTAATGAATACAGACTTGGTGGCTATTGGAGAGAAGAGATTATGGCCTAAACAAGGAGTGTCGAACCAGAGCACGATTCAGTCTTCAACGGGCTCACATGGAAATTTTGTGTTTTGGTGTTAATTTTCGATATGGTCCATTTTGAATGCAGTTCTGTTCTTAAGATGCTATTAGATAGTAACTTTTACATTGCCAGAAGACTTCCCCTTTAGCTCAGGCGAGCCTCTGTCTCTTTTTATGATCTATTTAGGGAGCTCTGAACCTTGGGTCTAATCTTTAACGTACGCAGCCCATATGTATCAAGGAACTATTATTTTTCACCTGGATATGGGGAGGGAATTTCCTGCTTGTTTGAGGATCAAGTCTAAGACGTGTCTGTTACAAAAAGTAAACGACAGTCAACATATACCAGGTTACAATATGCATAAAGCATCCAAGGTAATAAAAATGCTGAGTCTTGGTTGTTATAGTGAATGGCTTGAGATCTTACCACTTCCTGTGTGGTATTTTCTTAATATGAACCCCGTATATTGTGTTTGGGGATATTTTTCTATTAGCTAGTAAAATAATGCCTGTTCATCAGCCAACTTTTGTCATTTTTTCTTGCAGAACGTATATTAGGTGGAGGTCCCCACAAGCTGCTGTGGTTGCTAATTTCCATCTTCCTATGCGTAGTTATGAAATTAAGAACAGGTAATGTATCAGTTTGAATTGTAAGTGGTATGTCTTGCTGGATAGCTTGTTTATTTTTACAGTTTTGATTACATGTAGTCTTTATTCAAGCATGTGTATTGATTCATTCAAGCAAGTCAACAAGGAAAAAACTAAAATTTGATGCCTACCTCATCTGTTTAAAATTTGATACCTACCTCTTCTGTTTTGAAGAAGCCAGTTAGCTATGAAAAGTACTTAAAGCTTATAGTGCACCCAATACATGTCCCAAGTATGAAGGGAAAAATTGATCTCACACATTATGCCGTGTACAGAAGCCTCTGTGTGTCGTTACAAGTTCTAAGTTTTAGAATAGGGGGGCTATTGTTTTATCAAGTACGATGTATGTTTTGTCTATTCAAAAGTACTTGTTTCTCTGTTGATTAAGTCACTTATCCTAAGAAGTATATAGACCTGCATTGTTGCTCTTGTTGATTATAAGTTGATCTTTTACTATTGTGAAGTAGGGGCTGGCTGTCATGCTCAGAGTCTATCAGAAGCTCCGAAATTTACTGTTCTGTATCAGTATTTTTCAGATTAGCAGCTTTAATGACAGCCGACATGACTTTTTGTTCTAGACTTCTAGTTTACATGCCCATTAAAATCTCCTTTTGTCGAAATTTACTCGCTTTGGTGTATTCCTCGTATCAGCTTATTTAACTTTGCAAATGAACTGACTATCCTATATGTAAGTAAAGAAGCAGAACTTTCTCAGAGCAGGGACTTGTTGGAAAATGTTAGTGAGGTTAGATTTTTGCCAGATACAAACATGAAGATAACTCATAAACTTAATCAACATATAATGGTTTCCTGTGCTGTTTGAATAGTTGGGAGAATGTTACTTGCCCAAAAAAAACCAAGTTTTTGTTGAGACCCCATTTTTTTCATCCTCGAATAGGAAAACAAATGAAATATGTTTTTCGATAATTCTAAATGGGGTTCTTTTGTCATTTTTATCTAAAGAAGTAAATGATAATGGTTACCAAGTTTTCAGACTCCCCCCTTTTTGCCTTTGTGAAACGAATTTTAGTTTTTGGATAGCTGTTGAGGTGTGGAAATATTACAAAGTCAGCTTGGTTTTATTTTCAGGACAAATGTGGACGATATAAAGGCCTTGAGACTGATTACGGCCATCAAAACCCCGTATCTGCCAGATGGAAGATTCGATCTTGAAGCTTATGATGCCTTAATGAACATGCAGATCAATGGAGGCGCTGAAGCTGTTATTGTCGGTGGTACAACTGGTGAAGGGCAATTAATGAGCTGGGATGAGCACATTATGCTGATTGGTCATACTGTCAACTGTTTTGGCAGTAGCATCAAAGTAATAGGGAACACTGGCAGCAACTCAACACGAGAAGCAGTACATGCTACTGAACAGGGGTTTGCTGTTGGAATGCATGCCGCACTTCACATCAATCCTTACTATGGCAAGACATCCATGGAGGGCATGCTTGCTCATTTTGATAGTGTGCTGTCCATGGGGCCCGCCATCGTGTACAATGTTCCGTCAAGAACAAGTCAAGATATTCCTCCTCAGGTGATACATTCTCTAGCACAAAATACCAACTTTGCTGGTGTTAAAGAATGTGTTGGACACGAAAGAATTAAGCAGTATACAGATAACAGGATTGTAGTTTGGAGTGGGAATGATGATCAGTGCCATGATTCCAGGTGGGACTATGGGGCTACTGGAGTTATATCTGTTACTAGTAACTTGGTTCCTAGCTTAATTGGACAGCTCATGTTCAAAGGGAAGAATCCATCTCTTAATTCCAAGCTTATGCCTTTGATGGAGTGGCTTTTTCAGGAGCCAAACCCTATAGGCTTGAATACAGCTTTAGCTCAACTTGGAGTAGCAAGGCCAGTTTTCCGCCTTCCTTATGTGCCTCTTCCACGGGAAAAGAGGGTGGAATTTGTGCACATTGTGAAGGAAATCGGGCGGGAGAACTTTGTTGGTGACAAAGATGTCCAAGTCCTTGAAGATGATGATTTCATTTTGATTGGTCGTTACTAAACTCTTGAACGCTTGTAGTAGTTCATTGTTGGTAGAACCGGGAAATAAGGGTAGAAGTGGGGGATTCAGGAAAAGCCTGCCGTTTCTTCTTCCTGCTTGTTTCAGAGTTTCCTTTGCTGTGCTGTTTATGAATTTTCTGCAAGTTATGTAATGAGTTTTTCAGAATGCCAGGGGTAGATAACTAGATACCAAAGTTTGTTCTGAATGTTTGATTAATTTACGGGATTTTGGTCTATACGCTTTACTGTTGCCCTCAGCTTATTCCATCCTCGAGTCTCCTGGCATATACAAGTGCTGAATACCTCCAATTGCTAATAAGCAAATGCTGCAAGGAAACTAGTACGTCTTCTCTTACTGTTTCCTTTTATTACCCAGCTCTAAGTAATTGTATGCATTTACTTGTTTGCTACTCCCTCTATTCTCATATCGCATTTAAATATAATATACAAATAATTGTGTGTGAAATGTAAATTAAGTAGCTAGAATACCGAGTGGGGACTGATAGATTACCGTTATTTTGGGGGTGGCAGAGTGGATTGGTGCATCTGTTGGATAGTTGGCAGTAACATTCAGCTCAATTCGGTATCATAAAAAACACGCCCTTAAGGCGTTAAGGCATTAAGGTTTTGTTTAGTTTGTCAGTTTGAGATTAATTGGTTGCTCAATTGGCCTAGTTTAGCGGATGCAACCCTGATGCCAGCAGCAGCATCTATTATAGAGTTGTACCATTTTGAATAAGGATTTGTTCAAAGAGAAAATGAAGAAAAAAGATTAGCTAGGGCATAAAACATAGTGCTTTTTTAATTCCTCTCTTATTCTTGAGCTAAAAATCCCCCCTTTTTTTTCTGCTTAATTTGCTGATATTTTCTGGCCTTTGTATTGCTTAATTGTCTCACCGAGATCTTCGGTTGAAATTGAGCTATTTGCAAATGCTGAAATAATTAGAGGTGGATTATATCTTCAGCTAGAATTGAGCTATTGATTTCATTGCTGATCAGTGATCACAATTCTTAATACATGCTAATCTTTTATTATTTAAACATGGGTAAACCAGAAAAGTTTAAGTGAACCTAGTAGATTTCCTGTATCTTGTTTATTCTTCAAACTCCAGGTCCAATTTAAAGTCTCGTCCTATAGACTGCCTCAGATCTGAAATTTCCGATACAACAAACTCCCCTTGGTTGCTAGATCTTGATCTTAGTCCCAAACCTTTGATCTTTGTTGCTTTAGCACCCGTCTGTACTGTATAACTCTTTATCCTCACTCTTCTTTTCAAACCCAGAATAGTTATCTTATCCAATATCCATCTCTGTCTCATTGCATATCCTCTGTGCACAACATCGGATGAGATTGTCACATTGTTTGGCCATGATTCTGCAGAAAATCTTACCAAGCTCCAACTTTCACTGTCGCCTCCCATATTCATTTCAACCCCGTCATCTAAGAAAAGCTCTCCGGTGCTGGCCACATGATCACTCATAACTACCAAAAGATGGAACGGTGTGCTTCGTGCAGCTTGAGTTGTCATAGCTTCTCCTTGCATAGCTACAATATTACCTGATAGAGATCACAAGGAAATTGGGTTATAGGTACACCTATCAAATTGACCCAACTGTGGAAACCTCAAAGCCCATAAGATATTTAAAAAATACACTTCAGCCTTGAACATTGAGATTGTTCGACTCAGGACCGACCCCATCTCCTAATCCAAGAACCCAACTTGACCCAAACCTAACTATACATGTAGATCTTGAAGGTCCACAAAGTCGGTACAAAAGAACACTTGATACCTTAAAGTTATGTTTACCCGCCCAACCGTACTCTATCTATATGATTTGTACGTCTAATTATGGATAATCTTCATCATATTGGTGTTAGCTAGGTTCACTTATGGACCATCGTGACCCTGCTAATAGTTTCAGGGTCCATACTGGTCCCAGGTTTCAGTCATAAAACTAGGTTTCAGTCATAAGACAGTAGGAAAAGGT ATGGAACGTGATTCCCCTACAGCCCTAGATGCCTCTTTCATTCACACTCAGTTTGTGTTAGCTCAACCTATGTGCACTAGTGCAGTACTGTCTCCTTCAACCTCTCACCCGCAACCAAACACCACGCCATCAACCAGGGCGGCGACGTCGGCCGGAAATATTACTGAAGCACAAACACACATCTTGGTTTCGCAATTTGATATCGGAATGGCTACTTTAACGAGTCACAGATTATGCCTGAAAGATTCCACTATTTTCAGCCGCCCAAGGCCTGCTTCACCGTATTCTTATAATAGAACGTATATTAGGTGGAGGTCCCCACAAGCTGCTGTGGTTGCTAATTTCCATCTTCCTATGCGTAGTTATGAAATTAAGAACAGGACAAATGTGGACGATATAAAGGCCTTGAGACTGATTACGGCCATCAAAACCCCGTATCTGCCAGATGGAAGATTCGATCTTGAAGCTTATGATGCCTTAATGAACATGCAGATCAATGGAGGCGCTGAAGCTGTTATTGTCGGTGGTACAACTGGTGAAGGGCAATTAATGAGCTGGGATGAGCACATTATGCTGATTGGTCATACTGTCAACTGTTTTGGCAGTAGCATCAAAGTAATAGGGAACACTGGCAGCAACTCAACACGAGAAGCAGTACATGCTACTGAACAGGGGTTTGCTGTTGGAATGCATGCCGCACTTCACATCAATCCTTACTATGGCAAGACATCCATGGAGGGCATGCTTGCTCATTTTGATAGTGTGCTGTCCATGGGGCCCGCCATCGTGTACAATGTTCCGTCAAGAACAAGTCAAGATATTCCTCCTCAGGTGATACATTCTCTAGCACAAAATACCAACTTTGCTGGTGTTAAAGAATGTGTTGGACACGAAAGAATTAAGCAGTATACAGATAACAGGATTGTAGTTTGGAGTGGGAATGATGATCAGTGCCATGATTCCAGGTGGGACTATGGGGCTACTGGAGTTATATCTGTTACTAGTAACTTGGTTCCTAGCTTAATTGGACAGCTCATGTTCAAAGGGAAGAATCCATCTCTTAATTCCAAGCTTATGCCTTTGATGGAGTGGCTTTTTCAGGAGCCAAACCCTATAGGCTTGAATACAGCTTTAGCTCAACTTGGAGTAGCAAGGCCAGTTTTCCGCCTTCCTTATGTGCCTCTTCCACGGGAAAAGAGGGTGGAATTTGTGCACATTGTGAAGGAAATCGGGCGGGAGAACTTTGTTGGTGACAAAGATGTCCAAGTCCTTGAAGATGATGATTTCATTTTGATTGGTCGTTACTAAACTCTTGAACGCTTGTAGTAGTTCATTGTTGGTAGAACCGGGAAATAAGGGTAGAAGTGGGGGATTCAGGAAAAGCCTGCCGTTTCTTCTTCCTGCTTGTTTCAGAGTTTCCTTTGCTGTGCTGTTTATGAATTTTCTGCAAGTTATGTAATGAGTTTTTCAGAATGCCAGGGGTAGATAACTAGATACCAAAGTTTGTTCTGAATGTTTGATTAATTTACGGGATTTTGGTCTATACGCTTTACTGTTGCCCTCAGCTTATTCCATCCTCGAGTCTCCTGGCATATACAAGTGCTGAATACCTCCAATTGCTAATAAGCAAATGCTGCAAGGAAACTAGTACGTCTTCTCTTACTGTTTCCTTTTATTACCCAGCTCTAAGTAATTGTATGCATTTACTTGTTTGCTACTCCCTCTATTCTCATATCGCATTTAAATATAATATACAAATAATTGTGTGTGAAATGTAAATTAAGTAGCTAGAATACCGAGTGGGGACTGATAGATTACCGTTATTTTGGGGGTGGCAGAGTGGATTGGTGCATCTGTTGGATAGTTGGCAGTAACATTCAGCTCAATTCGGTATCATAAAAAACACGCCCTTAAGGCGTTAAGGCATTAAGGTTTTGTTTAGTTTGTCAGTTTGAGATTAATTGGTTGCTCAATTGGCCTAGTTTAGCGGATGCAACCCTGATGCCAGCAGCAGCATCTATTATAGAGTTGTACCATTTTGAATAAGGATTTGTTCAAAGAGAAAATGAAGAAAAAAGATTAGCTAGGGCATAAAACATAGTGCTTTTTTAATTCCTCTCTTATTCTTGAGCTAAAAATCCCCCCTTTTTTTTCTGCTTAATTTGCTGATATTTTCTGGCCTTTGTATTGCTTAATTGTCTCACCGAGATCTTCGGTTGAAATTGAGCTATTTGCAAATGCTGAAATAATTAGAGGTGGATTATATCTTCAGCTAGAATTGAGCTATTGATTTCATTGCTGATCAGTGATCACAATTCTTAATACATGCTAATCTTTTATTATTTAAACATGGGTAAACCAGAAAAGTTTAAGTGAACCTAGTAGATTTCCTGTATCTTGTTTATTCTTCAAACTCCAGGTCCAATTTAAAGTCTCGTCCTATAGACTGCCTCAGATCTGAAATTTCCGATACAACAAACTCCCCTTGGTTGCTAGATCTTGATCTTAGTCCCAAACCTTTGATCTTTGTTGCTTTAGCACCCGTCTGTACTGTATAACTCTTTATCCTCACTCTTCTTTTCAAACCCAGAATAGTTATCTTATCCAATATCCATCTCTGTCTCATTGCATATCCTCTGTGCACAACATCGGATGAGATTGTCACATTGTTTGGCCATGATTCTGCAGAAAATCTTACCAAGCTCCAACTTTCACTGTCGCCTCCCATATTCATTTCAACCCCGTCATCTAAGAAAAGCTCTCCGGTGCTGGCCACATGATCACTCATAACTACCAAAAGATGGAACGGTGTGCTTCGTGCAGCTTGAGTTGTCATAGCTTCTCCTTGCATAGCTACAATATTACCTGATAGAGATCACAAGGAAATTGGGTTATAGGTACACCTATCAAATTGACCCAACTGTGGAAACCTCAAAGCCCATAAGATATTTAAAAAATACACTTCAGCCTTGAACATTGAGATTGTTCGACTCAGGACCGACCCCATCTCCTAATCCAAGAACCCAACTTGACCCAAACCTAACTATACATGTAGATCTTGAAGGTCCACAAAGTCGGTACAAAAGAACACTTGATACCTTAAAGTTATGTTTACCCGCCCAACCGTACTCTATCTATATGATTTGTACGTCTAATTATGGATAATCTTCATCATATTGGTGTTAGCTAGGTTCACTTATGGACCATCGTGACCCTGCTAATAGTTTCAGGGTCCATACTGGTCCCAGGTTTCAGTCATAAAACTAGGTTTCAGTCATAAGACAGTAGGAAAAGGT ATGGAACGTGATTCCCCTACAGCCCTAGATGCCTCTTTCATTCACACTCAGTTTGTGTTAGCTCAACCTATGTGCACTAGTGCAGTACTGTCTCCTTCAACCTCTCACCCGCAACCAAACACCACGCCATCAACCAGGGCGGCGACGTCGGCCGGAAATATTACTGAAGCACAAACACACATCTTGGTTTCGCAATTTGATATCGGAATGGCTACTTTAACGAGTCACAGATTATGCCTGAAAGATTCCACTATTTTCAGCCGCCCAAGGCCTGCTTCACCGTATTCTTATAATAGAACGTATATTAGGTGGAGGTCCCCACAAGCTGCTGTGGTTGCTAATTTCCATCTTCCTATGCGTAGTTATGAAATTAAGAACAGGACAAATGTGGACGATATAAAGGCCTTGAGACTGATTACGGCCATCAAAACCCCGTATCTGCCAGATGGAAGATTCGATCTTGAAGCTTATGATGCCTTAATGAACATGCAGATCAATGGAGGCGCTGAAGCTGTTATTGTCGGTGGTACAACTGGTGAAGGGCAATTAATGAGCTGGGATGAGCACATTATGCTGATTGGTCATACTGTCAACTGTTTTGGCAGTAGCATCAAAGTAATAGGGAACACTGGCAGCAACTCAACACGAGAAGCAGTACATGCTACTGAACAGGGGTTTGCTGTTGGAATGCATGCCGCACTTCACATCAATCCTTACTATGGCAAGACATCCATGGAGGGCATGCTTGCTCATTTTGATAGTGTGCTGTCCATGGGGCCCGCCATCGTGTACAATGTTCCGTCAAGAACAAGTCAAGATATTCCTCCTCAGGTGATACATTCTCTAGCACAAAATACCAACTTTGCTGGTGTTAAAGAATGTGTTGGACACGAAAGAATTAAGCAGTATACAGATAACAGGATTGTAGTTTGGAGTGGGAATGATGATCAGTGCCATGATTCCAGGTGGGACTATGGGGCTACTGGAGTTATATCTGTTACTAGTAACTTGGTTCCTAGCTTAATTGGACAGCTCATGTTCAAAGGGAAGAATCCATCTCTTAATTCCAAGCTTATGCCTTTGATGGAGTGGCTTTTTCAGGAGCCAAACCCTATAGGCTTGAATACAGCTTTAGCTCAACTTGGAGTAGCAAGGCCAGTTTTCCGCCTTCCTTATGTGCCTCTTCCACGGGAAAAGAGGGTGGAATTTGTGCACATTGTGAAGGAAATCGGGCGGGAGAACTTTGTTGGTGACAAAGATGTCCAAGTCCTTGAAGATGATGATTTCATTTTGATTGGTCGTTACTAA MERDSPTALDASFIHTQFVLAQPMCTSAVLSPSTSHPQPNTTPSTRAATSAGNITEAQTHILVSQFDIGMATLTSHRLCLKDSTIFSRPRPASPYSYNRTYIRWRSPQAAVVANFHLPMRSYEIKNRTNVDDIKALRLITAIKTPYLPDGRFDLEAYDALMNMQINGGAEAVIVGGTTGEGQLMSWDEHIMLIGHTVNCFGSSIKVIGNTGSNSTREAVHATEQGFAVGMHAALHINPYYGKTSMEGMLAHFDSVLSMGPAIVYNVPSRTSQDIPPQVIHSLAQNTNFAGVKECVGHERIKQYTDNRIVVWSGNDDQCHDSRWDYGATGVISVTSNLVPSLIGQLMFKGKNPSLNSKLMPLMEWLFQEPNPIGLNTALAQLGVARPVFRLPYVPLPREKRVEFVHIVKEIGRENFVGDKDVQVLEDDDFILIGRY Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo15961.1 vs. NCBI nr
Match: gi|902212877|gb|KNA17112.1| (hypothetical protein SOVF_083080 [Spinacia oleracea]) HSP 1 Score: 750.7 bits (1937), Expect = 1.400e-213 Identity = 366/366 (100.00%), Postives = 366/366 (100.00%), Query Frame = 1
BLAST of Spo15961.1 vs. NCBI nr
Match: gi|731321886|ref|XP_010671589.1| (PREDICTED: 4-hydroxy-tetrahydrodipicolinate synthase, chloroplastic-like [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 677.9 bits (1748), Expect = 1.100e-191 Identity = 327/366 (89.34%), Postives = 347/366 (94.81%), Query Frame = 1
BLAST of Spo15961.1 vs. NCBI nr
Match: gi|731349423|ref|XP_010685984.1| (PREDICTED: 4-hydroxy-tetrahydrodipicolinate synthase, chloroplastic-like [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 644.4 bits (1661), Expect = 1.400e-181 Identity = 303/366 (82.79%), Postives = 332/366 (90.71%), Query Frame = 1
BLAST of Spo15961.1 vs. NCBI nr
Match: gi|225453935|ref|XP_002279840.1| (PREDICTED: 4-hydroxy-tetrahydrodipicolinate synthase, chloroplastic [Vitis vinifera]) HSP 1 Score: 617.5 bits (1591), Expect = 1.800e-173 Identity = 293/366 (80.05%), Postives = 331/366 (90.44%), Query Frame = 1
BLAST of Spo15961.1 vs. NCBI nr
Match: gi|728814835|gb|KHG01651.1| (Dihydrodipicolinate synthase 2, chloroplastic -like protein [Gossypium arboreum]) HSP 1 Score: 606.7 bits (1563), Expect = 3.200e-170 Identity = 287/366 (78.42%), Postives = 330/366 (90.16%), Query Frame = 1
BLAST of Spo15961.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RE62_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_083080 PE=4 SV=1) HSP 1 Score: 750.7 bits (1937), Expect = 9.700e-214 Identity = 366/366 (100.00%), Postives = 366/366 (100.00%), Query Frame = 1
BLAST of Spo15961.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CW20_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_3g053090 PE=4 SV=1) HSP 1 Score: 677.9 bits (1748), Expect = 8.000e-192 Identity = 327/366 (89.34%), Postives = 347/366 (94.81%), Query Frame = 1
BLAST of Spo15961.1 vs. UniProtKB/TrEMBL
Match: A0A0J8BZK9_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_7g175850 PE=4 SV=1) HSP 1 Score: 644.4 bits (1661), Expect = 9.700e-182 Identity = 303/366 (82.79%), Postives = 332/366 (90.71%), Query Frame = 1
BLAST of Spo15961.1 vs. UniProtKB/TrEMBL
Match: D7U7T8_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_15s0048g00750 PE=1 SV=1) HSP 1 Score: 617.5 bits (1591), Expect = 1.300e-173 Identity = 293/366 (80.05%), Postives = 331/366 (90.44%), Query Frame = 1
BLAST of Spo15961.1 vs. UniProtKB/TrEMBL
Match: A0A0B0MRT2_GOSAR (Dihydrodipicolinate synthase 2, chloroplastic-like protein OS=Gossypium arboreum GN=F383_21399 PE=4 SV=1) HSP 1 Score: 606.7 bits (1563), Expect = 2.300e-170 Identity = 287/366 (78.42%), Postives = 330/366 (90.16%), Query Frame = 1
BLAST of Spo15961.1 vs. ExPASy Swiss-Prot
Match: DAPA2_ARATH (4-hydroxy-tetrahydrodipicolinate synthase 2, chloroplastic OS=Arabidopsis thaliana GN=DHDPS2 PE=1 SV=2) HSP 1 Score: 592.0 bits (1525), Expect = 5.200e-168 Identity = 283/366 (77.32%), Postives = 318/366 (86.89%), Query Frame = 1
BLAST of Spo15961.1 vs. ExPASy Swiss-Prot
Match: DAPA_TOBAC (4-hydroxy-tetrahydrodipicolinate synthase, chloroplastic OS=Nicotiana tabacum GN=DHPS1 PE=2 SV=1) HSP 1 Score: 577.8 bits (1488), Expect = 1.000e-163 Identity = 270/337 (80.12%), Postives = 306/337 (90.80%), Query Frame = 1
BLAST of Spo15961.1 vs. ExPASy Swiss-Prot
Match: DAPA1_ARATH (4-hydroxy-tetrahydrodipicolinate synthase 1, chloroplastic OS=Arabidopsis thaliana GN=DHDPS1 PE=2 SV=2) HSP 1 Score: 577.4 bits (1487), Expect = 1.300e-163 Identity = 278/366 (75.96%), Postives = 314/366 (85.79%), Query Frame = 1
BLAST of Spo15961.1 vs. ExPASy Swiss-Prot
Match: DAPA_SOYBN (4-hydroxy-tetrahydrodipicolinate synthase, chloroplastic OS=Glycine max GN=DHPS1 PE=2 SV=1) HSP 1 Score: 549.7 bits (1415), Expect = 2.900e-155 Identity = 258/327 (78.90%), Postives = 295/327 (90.21%), Query Frame = 1
BLAST of Spo15961.1 vs. ExPASy Swiss-Prot
Match: DAPA1_WHEAT (4-hydroxy-tetrahydrodipicolinate synthase 1, chloroplastic OS=Triticum aestivum PE=1 SV=1) HSP 1 Score: 544.3 bits (1401), Expect = 1.200e-153 Identity = 261/348 (75.00%), Postives = 298/348 (85.63%), Query Frame = 1
BLAST of Spo15961.1 vs. TAIR (Arabidopsis)
Match: AT2G45440.1 (dihydrodipicolinate synthase) HSP 1 Score: 592.0 bits (1525), Expect = 2.900e-169 Identity = 283/366 (77.32%), Postives = 318/366 (86.89%), Query Frame = 1
BLAST of Spo15961.1 vs. TAIR (Arabidopsis)
Match: AT3G60880.2 (dihydrodipicolinate synthase 1) HSP 1 Score: 577.4 bits (1487), Expect = 7.400e-165 Identity = 278/366 (75.96%), Postives = 314/366 (85.79%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo15961.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo15961.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo15961.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo15961.1 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
Co-expression
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