CDS

Accession Number TCMCG056C05089
gbkey CDS
Protein Id XP_031376044.1
Location join(54559664..54559708,54559789..54559902,54560124..54560183,54560516..54560557,54560662..54560712,54560843..54560941,54561048..54561107,54561184..54561276,54561578..54561679,54561776..54561886,54562023..54562139,54562562..54562678,54562791..54562871,54563023..54563127,54563228..54563308,54563397..54563528,54563667..54563711,54563973..54564050,54564145..54564284,54564384..54564495,54565575..54565696,54565780..54565918,54566004..54566134,54566492..54566617,54566709..54566764,54566870..54566940,54567644..54567728,54567816..54567919,54568021..54568149,54568400..54568450)
Gene LOC116190788
GeneID 116190788
Organism Punica granatum

Protein

Length 932aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA580467
db_source XM_031520184.1
Definition DNA-directed RNA polymerase III subunit 2 isoform X3 [Punica granatum]

EGGNOG-MAPPER Annotation

COG_category K
Description DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates
KEGG_TC -
KEGG_Module M00181        [VIEW IN KEGG]
KEGG_Reaction R00435        [VIEW IN KEGG]
R00441        [VIEW IN KEGG]
R00442        [VIEW IN KEGG]
R00443        [VIEW IN KEGG]
KEGG_rclass RC02795        [VIEW IN KEGG]
BRITE br01611        [VIEW IN KEGG]
ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko00002        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
ko03021        [VIEW IN KEGG]
KEGG_ko ko:K03021        [VIEW IN KEGG]
EC 2.7.7.6        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko00230        [VIEW IN KEGG]
ko00240        [VIEW IN KEGG]
ko01100        [VIEW IN KEGG]
ko03020        [VIEW IN KEGG]
ko04623        [VIEW IN KEGG]
ko05169        [VIEW IN KEGG]
map00230        [VIEW IN KEGG]
map00240        [VIEW IN KEGG]
map01100        [VIEW IN KEGG]
map03020        [VIEW IN KEGG]
map04623        [VIEW IN KEGG]
map05169        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGGAAAAGGAGAAGATGTATCTGCAGCTCAATCAATTCACAAAGAATATTCCCATCATGATAGTGATGAAGGCAATGGGAATGGAAAGCGACCAAGAGGTTGTTCAAATGATAGGAAGGGATCCCAGATATGGTGCTCTCCTTCTTTCTTCAATTGAGGAATGTGCCAGCCTTGGCATATATACACAACCACAAGCGCTTGAGCACCTTGGGGAGAAGGTTAAGAAGCAGCAGCCATATGAAACTTTTCCATCTTCGAAGGAAGGCAGAGCTTTGTCCCTACTTCGTGATGTATTCCTTGCAAATGTTCGGGTAAATAAGAATAATTATCGTCCCAAGTGCATATATGTTGCTGTTATGCTAAGGCGTATGATGGAGGCAATTTTGAATAAAGATGCAATGGATGACAAGGATTACGTGGGAAACAAGCGGTTGGAGTTATCTGGCCAGTTGATCTCTCTGCTTTTTGAGGATTTGTTCAAGAGTATGATTAGTGATGCCCAGAAGAATGCAGATGCTACTCTATCGAGGAGTAGCAGGTCTAGCAAATTCGACTTTTCCATGTTGATAATTAGAGATAATATAACTCATGGTTTAGAAAGGGCACTCTCAACTGGAAATTGGGATGTCAAACGGTTTAAGATGCACAGAAAAGGAATGTCACAGGTACTGGCAAGGCTATCCTTTATAGGATCATTAGGCCATGTGACGAGAGTGTCACCACAATTTGAGAAATCAAGAAAAGTCAGTGGGCCGAGGGCTTTGCAGCCTAGTCAGTGGGGAATGCTATGTCCATGTGACACTCCAGAAGGTGAGGCTTGTGGATTGGTGAAGAACTTGGCTTTGATGACTCATGTCACAACTGATCAAGAGGAGGGTCCCTTGATCTCTCTGTGCTACGCCATGGGCGTTGAAGACTTGGAATTACTATCTGGTGAAGAGCTCCACAGCCCAAATTCTTTTTTGATTATATTTAATGGGCTCATTTTGGGCAAGCATAGAAGGCCTCAGAGATTTGCTAGTGCCCTCAGGAAATTACGAAGAGCTGGCAAAGTTGGCGAGTTTGTTAGTGTTTTTGTTAATGAGAAGCAGCGTTGTGTCTACATTGCTTCTGATGGAGGTCGGGTTTGTCGTCCACTTGTTATTGCGGACAAGGGTATCTCAAGGATTAAAGCACATCATATGAAGGAGCTGGCAGACGGGGTCCGCACATTCAATGATTTTCTGCGAGATGGTTTAGTCGAATATCTTGATGTTAATGAGGAGAACAATGCTCTGATTGCATTGTACGAAGGGGAGGCTACACCAGAGACAACTCATATTGAGATAGAGCCGTTCACTATCTTAGGCGTCTGTGCTGGACTGATCCCCTTCCCTCATCATAATCAGTCCCCCAGAAACACTTACCAGTGTGCCATGGGGAAGCAAGCTATGGGAAATATTGCATATAATCAGTTGCTTCGGATGGATTCATTATTGTATCTGCTGGTTTATCCTCAACGACCCCTACTGACAACACGGACAATCGAGCTGATTGGATATGATAAGCTCGGGGCAGGGCAGAATGCAACTGTTGCTGTGATGAGTTACAGTGGCTACGACATAGAAGATGCAATTGTCATGAACAAGTCATCCTTGGACCGTGGTTTTGGTCGCTGTATTGTAATGAAAAAGTATACCGCTGTTAGTCAGAAGTATGACACCATGACAGCAGACAGAATACTTCGGCCCAGAAGAAAACCTGATCCTAATAATAGAGGAGACATTGAATGGGAAAAGATGAAGATTTTAGATGATGATGGAATCGCTGCACCAGGAGAAATTATTAAAGCAGGCGATATCTATGTTAACAAGGAAACTCCCTTGATAACAAAGGGCAATGCAACAATGACTGGTCTTCAAGACATAGACTATCGGCCTAATCGAGAAATTTACAAGGGCGCTGGTGGGGGGGAACCTTGTGTAGTGGATCGGGTGACTCTTTGTTCTGATAAAAATAACAATCTGTCCATCAAATTCATAATCCGACAAACCCGTCGACCGGAGGTTGGAGACAAATTTAGCAGCAGACATGGGCAAAAGGGTGTTTGTGGAACCATTGTTCAACAGGAAGACTTCCCCTTTTCTGAGCGCGGGATTTGCCCTGATTTGATTATGAATCCTCATGGATTTCCAAGTCGGATGACAGTTGGCAAGATGATAGAGCTTCTCGGCAGCAAAGCTGGAGTTTCGTGTGGCCGGTTTCACTATGGGAGTGCCTTTGGTGAACCAAGCGGTCATGCAGACACAGTTGAATCTATAAGTGAAACTCTTGTAAAGCATGGATTCAGCTATAACGGGAAGGATTTTCTGTATTCAGGTATAACTGGTTGCCCGCTCCAAGCTTATATCTTCATGGGCCCAATATACTATCAGAAGTTAAAACATATGGTCCTAGATAAGATGCATGCCAGAGGAAATGGCCCGCGTACACTGCTTACGAGACAGCCCACTGAAGGAAGAGCTCGAAATGGAGGGTTGAGAGTCGGAGAAATGGAACGGGACTGTTTGATTGCTTACGGTGCAAGCATGTTAATCTACGAGCGACTAATGATCTCCAGTGATCCATTTGAGGTTCAGGTATGCCGGGCCTGTGGGCTGTTAGGTTATTACAGCCAGAAGCTGAAAACAGGAATATGTTCAAAATGCAAGAACGGGGACAATATCTCTACGATGAAACTACCGTATGCTTGCAAGCTTCTAATTCAGGAACTGCAATCGATGAACATCATTCCACGACTGAAGCTGGCCGACTCTTGA
Protein:  
MEKEKMYLQLNQFTKNIPIMIVMKAMGMESDQEVVQMIGRDPRYGALLLSSIEECASLGIYTQPQALEHLGEKVKKQQPYETFPSSKEGRALSLLRDVFLANVRVNKNNYRPKCIYVAVMLRRMMEAILNKDAMDDKDYVGNKRLELSGQLISLLFEDLFKSMISDAQKNADATLSRSSRSSKFDFSMLIIRDNITHGLERALSTGNWDVKRFKMHRKGMSQVLARLSFIGSLGHVTRVSPQFEKSRKVSGPRALQPSQWGMLCPCDTPEGEACGLVKNLALMTHVTTDQEEGPLISLCYAMGVEDLELLSGEELHSPNSFLIIFNGLILGKHRRPQRFASALRKLRRAGKVGEFVSVFVNEKQRCVYIASDGGRVCRPLVIADKGISRIKAHHMKELADGVRTFNDFLRDGLVEYLDVNEENNALIALYEGEATPETTHIEIEPFTILGVCAGLIPFPHHNQSPRNTYQCAMGKQAMGNIAYNQLLRMDSLLYLLVYPQRPLLTTRTIELIGYDKLGAGQNATVAVMSYSGYDIEDAIVMNKSSLDRGFGRCIVMKKYTAVSQKYDTMTADRILRPRRKPDPNNRGDIEWEKMKILDDDGIAAPGEIIKAGDIYVNKETPLITKGNATMTGLQDIDYRPNREIYKGAGGGEPCVVDRVTLCSDKNNNLSIKFIIRQTRRPEVGDKFSSRHGQKGVCGTIVQQEDFPFSERGICPDLIMNPHGFPSRMTVGKMIELLGSKAGVSCGRFHYGSAFGEPSGHADTVESISETLVKHGFSYNGKDFLYSGITGCPLQAYIFMGPIYYQKLKHMVLDKMHARGNGPRTLLTRQPTEGRARNGGLRVGEMERDCLIAYGASMLIYERLMISSDPFEVQVCRACGLLGYYSQKLKTGICSKCKNGDNISTMKLPYACKLLIQELQSMNIIPRLKLADS