Gene Symbol | APG8A |
Entrez Gene ID | 828287 |
Full Name | Ubiquitin-like superfamily protein |
Synonyms | ATG8A,AUTOPHAGY 8A,AUTOPHAGY-RELATED 8A,F1N20.80,F1N20_80 |
Gene Type | protein-coding |
Organism | Arabidopsis thaliana(thale cress) |
ORF » Species Summary » Arabidopsis thaliana » APG8A cDNA ORF clone
Gene Symbol | APG8A |
Entrez Gene ID | 828287 |
Full Name | Ubiquitin-like superfamily protein |
Synonyms | ATG8A,AUTOPHAGY 8A,AUTOPHAGY-RELATED 8A,F1N20.80,F1N20_80 |
Gene Type | protein-coding |
Organism | Arabidopsis thaliana(thale cress) |
mRNA | Protein | Name |
---|---|---|
NM_001084955.1 | NP_001078424.1 | Ubiquitin-like superfamily protein |
NM_118319.4 | NP_567642.1 | Ubiquitin-like superfamily protein |
Homo sapiens (human) | GABARAPL2 | NP_009216.1 |
Pan troglodytes (chimpanzee) | GABARAPL2 | XP_511114.4 |
Gallus gallus (chicken) | GABARAPL2 | XP_001232689.1 |
Xenopus tropicalis (tropical clawed frog) | gabarapl2 | NP_001096511.1 |
Canis lupus familiaris (dog) | GABARAPL2 | XP_005620731.1 |
Bos taurus (cattle) | GABARAPL2 | NP_777100.1 |
Rattus norvegicus (Norway rat) | Gabarapl2 | NP_073197.1 |
Arabidopsis thaliana (thale cress) | APG8A | NP_001078424.1 |
Danio rerio (zebrafish) | gabarapl2 | NP_991286.1 |
Arabidopsis thaliana (thale cress) | ATG8B | NP_849298.1 |
GABARAPL2 | XP_001104154.2 | |
Mus musculus (house mouse) | Gabarapl2 | NP_080969.2 |
Sequence and analysis of chromosome 4 of the plant Arabidopsis thaliana.
Mayer K, Sch?ller C, Wambutt R, Murphy G, Volckaert G, Pohl T, D?sterh?ft A, Stiekema W, Entian KD, Terryn N, Harris B, Ansorge W, Brandt P, Grivell L, Rieger M, Weichselgartner M, de Simone V, Obermaier B, Mache R, M?ller M, Kreis M, Delseny M, Puigdomenech P, Watson M, Schmidtheini T, Reichert B, Portatelle D, Perez-Alonso M, Boutry M, Bancroft I, Vos P, Hoheisel J, Zimmermann W, Wedler H, Ridley P, Langham SA, McCullagh B, Bilham L, Robben J, Van der Schueren J, Grymonprez B, Chuang YJ, Vandenbussche F, Braeken M, Weltjens I, Voet M, Bastiaens I, Aert R, Defoor E, Weitzenegger T, Bothe G, Ramsperger U, Hilbert H, Braun M, Holzer E, Brandt A, Peters S, van Staveren M, Dirske W, Mooijman P, Klein Lankhorst R, Rose M, Hauf J, K?tter P, Berneiser S, Hempel S, Feldpausch M, Lamberth S, Van den Daele H, De Keyser A, Buysshaert C, Gielen J, Villarroel R, De Clercq R, Van Montagu M, Rogers J, Cronin A, Quail M, Bray-Allen S, Clark L, Doggett J, Hall S, Kay M, Lennard N, McLay K, Mayes R, Pettett A, Rajandream MA, Lyne M, Benes V, Rechmann S, Borkova D, Bl?cker H, Scharfe M, Grimm M, L?hnert TH, Dose S, de Haan M, Maarse A, Sch?fer M, M?ller-Auer S, Gabel C, Fuchs M, Fartmann B, Granderath K, Dauner D, Herzl A, Neumann S, Argiriou A, Vitale D, Liguori R, Piravandi E, Massenet O, Quigley F, Clabauld G, M?ndlein A, Felber R, Schnabl S, Hiller R, Schmidt W, Lecharny A, Aubourg S, Chefdor F, Cooke R, Berger C, Montfort A, Casacuberta E, Gibbons T, Weber N, Vandenbol M, Bargues M, Terol J, Torres A, Perez-Perez A, Purnelle B, Bent E, Johnson S, Tacon D, Jesse T, Heijnen L, Schwarz S, Scholler P, Heber S, Francs P, Bielke C, Frishman D, Haase D, Lemcke K, Mewes HW, Stocker S, Zaccaria P, Bevan M, Wilson RK, de la Bastide M, Habermann K, Parnell L, Dedhia N, Gnoj L, Schutz K, Huang E, Spiegel L, Sehkon M, Murray J, Sheet P, Cordes M, Abu-Threideh J, Stoneking T, Kalicki J, Graves T, Harmon G, Edwards J, Latreille P, Courtney L, Cloud J, Abbott A, Scott K, Johnson D, Minx P, Bentley D, Fulton B, Miller N, Greco T, Kemp K, Kramer J, Fulton L, Mardis E, Dante M, Pepin K, Hillier L, Nelson J, Spieth J, Ryan E, Andrews S, Geisel C, Layman D, Du H, Ali J, Berghoff A, Jones K, Drone K, Cotton M, Joshu C, Antonoiu B, Zidanic M, Strong C, Sun H, Lamar B, Yordan C, Ma P, Zhong J, Preston R, Vil D, Shekher M, Matero A, Shah R, Swaby IK, O'Shaughnessy A, Rodriguez M, Hoffmann J, Till S, Granat S, Shohdy N, Hasegawa A, Hameed A, Lodhi M, Johnson A, Chen E, Marra M, Martienssen R, McCombie WR
Nature402(6763)769-77(1999 Dec)
GeneRIFs: Gene References Into Functions What's a GeneRIF?
we describe two common methods used for detection of autophagosomes, staining of autophagosomes with the fluorescent dye monodansylcadaverine, and expression of a fusion between GFP and the autophagosomal membrane protein ATG8.
Title: Detection of Autophagy in Plants by Fluorescence Microscopy.
Here, we describe how ATG8 can be used to monitor autophagy in Chlamydomonas and Arabidopsis by western blot analysis
Title: Biochemical Analysis of Autophagy in Algae and Plants by Monitoring the Electrophoretic Mobility of ATG8.
Data indicate that proteasome subunit RPN10 acts as a proteaphagy receptor by binding ubiquitylated proteasomes and autophagy-related protein ATG8.
Title: Autophagic Degradation of the 26S Proteasome Is Mediated by the Dual ATG8/Ubiquitin Receptor RPN10 in Arabidopsis.
The formation of the ATG12-ATG5 adduct is essential for ATG8-mediated autophagy in plants by promoting ATG8 lipidation.
Title: ATG8 lipidation and ATG8-mediated autophagy in Arabidopsis require ATG12 expressed from the differentially controlled ATG12A AND ATG12B loci.
The following APG8A gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the APG8A cDNA ORF which is encoded by the open reading frame (ORF) sequence. ORF sequences can be delivered in our standard vector, pcDNA3.1+/C-(K)DYK or the vector of your choice as an expression/transfection-ready ORF clone. Not the clone you want? Click here to find your clone.
CloneID | OAb15920 | |
Clone ID Related Accession (Same CDS sequence) | NM_118319.4 | |
Accession Version | NM_118319.4 Latest version! | Documents for ORF clone product in default vector |
Sequence Information | ORF Nucleotide Sequence (Length: 369bp) Protein sequence SNP |
|
Vector | pcDNA3.1-C-(k)DYK or customized vector | User Manual |
Clone information | Clone Map | MSDS |
Tag on pcDNA3.1+/C-(K)DYK | C terminal DYKDDDDK tags | |
ORF Insert Method | CloneEZ™ Seamless cloning technology | |
Insert Structure | linear | |
Update Date | 2019-02-13 | |
Organism | Arabidopsis thaliana(thale cress) | |
Product | Ubiquitin-like superfamily protein | |
Comment | Comment: REVIEWED REFSEQ: This record has been curated by TAIR and Araport. This record is derived from an annotated genomic sequence (NC_003075). On Sep 12, 2016 this sequence version replaced NM_118319.3. |
1 | ATGGCTAAGA GTTCCTTCAA GATCTCTAAC CCTCTCGAGG CAAGGATGAG TGAATCTTCT |
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.
RefSeq | NP_567642.1 |
CDS | 232..600 |
Translation |
Target ORF information:
Target ORF information:
|
NM_118319.4 |
1 | ATGGCTAAGA GTTCCTTCAA GATCTCTAAC CCTCTCGAGG CAAGGATGAG TGAATCTTCT |
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.
CloneID | OAb15921 | |
Clone ID Related Accession (Same CDS sequence) | NM_001084955.1 | |
Accession Version | NM_001084955.1 Latest version! | Documents for ORF clone product in default vector |
Sequence Information | ORF Nucleotide Sequence (Length: 414bp) Protein sequence SNP |
|
Vector | pcDNA3.1-C-(k)DYK or customized vector | User Manual |
Clone information | Clone Map | MSDS |
Tag on pcDNA3.1+/C-(K)DYK | C terminal DYKDDDDK tags | |
ORF Insert Method | CloneEZ™ Seamless cloning technology | |
Insert Structure | linear | |
Update Date | 2019-02-13 | |
Organism | Arabidopsis thaliana(thale cress) | |
Product | Ubiquitin-like superfamily protein | |
Comment | Comment: REVIEWED REFSEQ: This record has been curated by TAIR and Araport. This record is derived from an annotated genomic sequence (NC_003075). |
1 | ATGATCTTTG CTTGCTTGAA ATTCGCAGAG ACTAATCGAA TCGCAATGGC TAAGAGTTCC |
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.
RefSeq | NP_001078424.1 |
CDS | 256..669 |
Translation |
Target ORF information:
Target ORF information:
|
NM_001084955.1 |
1 | ATGATCTTTG CTTGCTTGAA ATTCGCAGAG ACTAATCGAA TCGCAATGGC TAAGAGTTCC |
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.
Sequence and analysis of chromosome 4 of the plant Arabidopsis thaliana. |