2025-02-01 17:52:22, GGRNA.v2 : RefSeq release 227 (Nov, 2024)
LOCUS XM_067496209 2821 bp mRNA linear VRT 20-AUG-2024 DEFINITION PREDICTED: Channa argus argonaute RISC component 4 (ago4), transcript variant X8, mRNA. ACCESSION XM_067496209 VERSION XM_067496209.1 DBLINK BioProject: PRJNA1148499 KEYWORDS RefSeq. SOURCE Channa argus (northern snakehead) ORGANISM Channa argus Eukaryota; Metazoa; Chordata; Craniata; Vertebrata; Euteleostomi; Actinopterygii; Neopterygii; Teleostei; Neoteleostei; Acanthomorphata; Anabantaria; Anabantiformes; Channoidei; Channidae; Channa. COMMENT MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_090197) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI RefSeq Annotation Status :: Full annotation Annotation Name :: GCF_033026475.1-RS_2024_08 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 10.3 Annotation Method :: Gnomon; cmsearch; tRNAscan-SE Features Annotated :: Gene; mRNA; CDS; ncRNA Annotation Date :: 08/16/2024 ##Genome-Annotation-Data-END## FEATURES Location/Qualifiers source 1..2821 /organism="Channa argus" /mol_type="mRNA" /isolate="prfri" /db_xref="taxon:215402" /chromosome="1" /sex="male" /tissue_type="muscle" /dev_stage="adult" /geo_loc_name="China: Weishanhu" /collection_date="2021-12-20" gene 1..2821 /gene="ago4" /note="argonaute RISC component 4; Derived by automated computational analysis using gene prediction method: Gnomon. Supporting evidence includes similarity to: 5 Proteins" /db_xref="GeneID:137122831" CDS 130..2670 /gene="ago4" /codon_start=1 /product="protein argonaute-4 isoform X8" /protein_id="XP_067352310.1" /db_xref="GeneID:137122831" /translation="
MSKKSRLGEIPFPFKAFEFAIAIRNSVSLRAAPVQDDSGPPAPTSLFQPPRRPGLGTVGKPIRLLANHFQVQIPKIDVYHYDIDIKPEKRPRRVNREVVDTMVRHFKMQIFGDRQPGYDGKRNMYTAHPLPIGRDRVDLEVTLPGEGKDQTFKVSLQWVSVVSLQMLLEALSGHLNEVPEDSVQALDVITRHLPSMRYTPVGRSFFSPPEGYYHPLGGGREVWFGFHQSVRPAMWNMMLNIDVSATAFYRAQPVIEFMCEVLDIQNINEQTKPLTDSQRVKFTKEIRGLKVEVTHCGQMKRKYRVCNVTRRPASHQTFPLQLENGQAMECTVAQYFKQKYNLQLKYPHLPCLQVGQEQKHTYLPLEVCNIVAGQRCIKKLTDNQTSTMIKATARSAPDRQEEISRLVKSNSMVGGPDPYLKEFGIVVHNDMTEVTGRVLPAPMLQYGGRVSTDTGRDCGRGLSPQNKTVATPNQGVWDMRGKQFYAGIEIKVWAVACFAPQKQCREDLLKSFTDQLRKISKDAGMPIQGQPCFCKYAQGADSVEPMFKHLKMSYVGLQLIVVILPGKTPVYAEVKRVGDTLLGMATQCVQVKNVVKTSPQTLSNLCLKINAKLGGINNVLVPHQRPSVFQQPVIFLGADVTHPPAGDGKKPSIAAVVGSMDGHPSRYCATVRVQTSRQDMSQEQLFSQEVIQDLTNMVRELLIQFYKSTRFKPTRIIYYRGGVSEGQMKQVAWPELIAIRKACISLEEDYRPGITYIVVQKRHHTRLFCSDKAERVGKSGNVPAGTTVDSTITHPSEFDFYLCSHAGIQVTHSGRHTVLLIKFPLKSYVLFSFFFFLFFFLDDAGT"
misc_feature 307..696 /gene="ago4" /note="N-terminal domain of argonaute; Region: ArgoN; pfam16486" /db_xref="CDD:465134" misc_feature 727..879 /gene="ago4" /note="Argonaute linker 1 domain; Region: ArgoL1; pfam08699" /db_xref="CDD:462567" misc_feature 880..1242 /gene="ago4" /note="PAZ domain, argonaute_like subfamily. Argonaute is part of the RNA-induced silencing complex (RISC), and is an endonuclease that plays a key role in the RNA interference pathway. The PAZ domain has been named after the proteins Piwi,Argonaut, and Zwille; Region: PAZ_argonaute_like; cd02846" /db_xref="CDD:239212" misc_feature order(1036..1038,1081..1083,1123..1125,1135..1137, 1189..1191,1210..1212,1216..1218) /gene="ago4" /note="nucleic acid-binding interface [nucleotide binding]; other site" /db_xref="CDD:239212" misc_feature 1381..2601 /gene="ago4" /note="PIWI domain, Argonaute-like subfamily. Argonaute is the central component of the RNA-induced silencing complex (RISC) and related complexes. The PIWI domain is the C-terminal portion of Argonaute and consists of two subdomains, one of which provides the...; Region: Piwi_ago-like; cd04657" /db_xref="CDD:240015" misc_feature order(1840..1842,1852..1854,1888..1899,1906..1908, 1930..1932,1939..1941,1951..1953,1963..1965) /gene="ago4" /note="5' RNA guide strand anchoring site [active]" /db_xref="CDD:240015" ORIGIN
ctaggaccttccttcctccttccttccgcgtcgtagtgtgtttacgttgatgtttattcacggtgtggttccctgtggtcccattattacgacccatttctgctacgagaccacacagttcgtcgaaatatgtccaaaaaatcgcgcctgggtgaaattccttttccttttaaagcattcgaatttgccatcgccatcaggaacagtgtgtctcttcgggctgcccccgtccaagatgacagcggcccgcctgcccctacgtctctgtttcagcctccacggcgtcccggccttggcacggtgggtaaacccatccggctccttgccaaccacttccaggttcagattcccaagattgatgtctatcactatgatatcgacatcaaacctgagaaacggcctcggagggtcaacagggaggtggtggacacgatggtgcggcacttcaagatgcagatctttggagacagacagcctggatatgatgggaagagaaacatgtacacggcacatccactgccaatagggagagaccgggtggacctggaggtgactctgccaggcgaggggaaggatcagacgttcaaggtgtctttgcagtgggtgtctgtggtcagtcttcagatgctactagaagccctgtcgggtcatcttaacgaggtcccggaagactccgttcaggctctggatgtcatcacacggcatctgccttccatgaggtacactccagtggggcgttcgtttttctcccctccggagggctattatcatcctcttggtggaggcagagaggtgtggtttggtttccatcagtctgtccgtcctgccatgtggaacatgatgctcaacatcgatgtgtcagccactgctttctaccgtgctcagcctgtgatagagttcatgtgtgaggtgctcgatatacagaacatcaacgaacagaccaaaccactgactgactcgcagcgtgtcaaattcaccaaggaaataagaggcttgaaagttgaggtaacacactgtggacagatgaagaggaagtatcgtgtatgtaacgtcacacgccgacctgccagccaccaaacgtttcccttgcagcttgagaatggccaagccatggagtgcacagtagctcaatatttcaagcagaagtacaatctgcagctcaaatatccacatttaccctgtctgcaagtagggcaagaacagaagcacacctatcttccccttgaggtctgtaacatagtagcaggccagcgctgtatcaagaaactgacggataaccaaacgtccaccatgatcaaagccacagctcgctcagcccccgacagacaggaagagatcagcagactggtcaaaagcaacagcatggtcgggggcccggacccttatctgaaggaatttggcattgtcgtgcacaatgacatgacagaagtaacagggcgtgtcctcccagcgcccatgctgcagtatgggggccgggtgagtacagacacagggcgggactgtggcaggggactctctccgcagaataaaaccgtggccacgcccaaccagggcgtgtgggacatgagagggaaacagttctatgccggcattgagatcaaggtctgggctgtggcctgctttgccccacagaaacagtgccgtgaggacctgctcaagagcttcactgatcagctgcgaaagatctccaaggatgctgggatgcccattcagggccagccatgtttctgtaaatacgcccaaggagctgacagtgtggagcccatgttcaaacacctcaaaatgtcttatgtaggactgcagcttattgtggtcatcctgcctggcaaaactccagtttatgctgaggtgaagcgggtaggtgacacccttctgggcatggccacccagtgtgtgcaggtgaagaatgtagtgaagacatccccacagactctctccaacctctgcctcaagatcaacgccaagctgggaggcatcaacaatgtcttagtgcctcatcagaggccttccgtgttccagcagccagtcattttcctgggtgctgatgtaacacatcctccagcaggggatgggaagaagccatccatagcggcggtggtgggcagcatggatggccaccccagccgatactgtgccacagtgcgagtccagacatctcgacaagacatgtcccaggagcagctctttagccaggaagtaatccaagacttgaccaacatggtgcgagagctgctcattcagttctacaaatccacccgtttcaagcccacacgcatcatctattaccgtgggggcgtgtctgagggacagatgaaacaggttgcatggccggagctgatagccatccggaaggcatgtatcagtctggaggaggattacaggccgggtattacatacatcgtggtccagaagcgtcaccacactcggctcttctgctctgataaagctgagagggttggcaagagtggcaatgtccccgcaggaaccacagtggatagcaccatcacacacccgtccgagtttgacttctacctgtgcagccatgctgggattcaggtgacacattcaggcagacacaccgttttactgataaaatttccacttaaaagttacgttttgttttctttttttttttttttgtttttttttttagatgatgcaggaacttgaaaagtcaagggggaaccagtcgtccctcccattaccacgtcctgtgggatgacaattgtttcacagccgatgaactgcagcttctcacctaccagctttgccacacctatgtgcgctgcacacgctctgtttccatcccagcgccggctta
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If you use GGRNA in your work, please cite:
Naito Y, Bono H. (2012)
GGRNA: an ultrafast, transcript-oriented search engine for genes and transcripts.
Nucleic Acids Res., 40, W592-W596.
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