Gene Symbol | Pdha1 |
Entrez Gene ID | 18597 |
Full Name | pyruvate dehydrogenase E1 alpha 1 |
Synonyms | Pdha-1 |
General protein information |
|
Gene Type | protein-coding |
Organism | Mus musculus(house mouse) |
Genome |
ORF » Species Summary » Mus musculus » Pdha1 cDNA ORF clone
gRNAs
Gene Symbol | Pdha1 |
Entrez Gene ID | 18597 |
Full Name | pyruvate dehydrogenase E1 alpha 1 |
Synonyms | Pdha-1 |
General protein information |
|
Gene Type | protein-coding |
Organism | Mus musculus(house mouse) |
Genome |
mRNA | Protein | Name |
---|---|---|
NM_008810.3 | NP_032836.1 | pyruvate dehydrogenase E1 component subunit alpha, somatic form, mitochondrial precursor |
Gallus gallus (chicken) | PDHA1 | NP_001012562.1 |
Neurospora crassa | NCU06482 | XP_957122.1 |
Oryza sativa (rice) | Os02g0739600 | NP_001048068.1 |
Anopheles gambiae (African malaria mosquito) | AgaP_AGAP004773 | XP_001689086.1 |
Xenopus tropicalis (tropical clawed frog) | pdha1 | NP_001017072.1 |
Canis lupus familiaris (dog) | PDHA1 | XP_003435519.1 |
Bos taurus (cattle) | PDHA1 | NP_001094516.1 |
Rattus norvegicus (Norway rat) | Pdha1 | NP_001004072.2 |
Danio rerio (zebrafish) | pdha1a | NP_998558.1 |
Anopheles gambiae (African malaria mosquito) | AgaP_AGAP004786 | XP_318026.4 |
Caenorhabditis elegans (roundworm) | pdha-1 | NP_871953.1 |
Saccharomyces cerevisiae (baker's yeast) | PDA1 | NP_011105.4 |
Schizosaccharomyces pombe (fission yeast) | pda1 | NP_594892.1 |
Magnaporthe oryzae (rice blast fungus) | MGG_06371 | XP_003717203.1 |
Oryza sativa (rice) | Os06g0246500 | NP_001057281.1 |
Homo sapiens (human) | PDHA1 | NP_001166926.1 |
LOC719277 | XP_001113273.2 | |
Mus musculus (house mouse) | Pdha1 | NP_032836.1 |
Danio rerio (zebrafish) | pdha1b | NP_001002399.1 |
Eremothecium gossypii | AGOS_AGR103W | NP_986769.1 |
Arabidopsis thaliana (thale cress) | IAR4 | NP_173828.1 |
Arabidopsis thaliana (thale cress) | E1 ALPHA | NP_176198.1 |
Pan troglodytes (chimpanzee) | PDHA1 | NP_001104283.1 |
Kluyveromyces lactis | KLLA0F12001g | XP_455624.1 |
Compartmentalized activities of the pyruvate dehydrogenase complex sustain lipogenesis in prostate cancer.
Chen J, Guccini I, Mitri DD, Brina D, Revandkar A, Sarti M, Pasquini E, Alajati A, Pinton S, Losa M, Civenni G, Catapano CV, Sgrignani J, Cavalli A, D'Antuono R, Asara JM, Morandi A, Chiarugi P, Crotti S, Agostini M, Montopoli M, Masgras I, Rasola A, Garcia-Escudero R, Delaleu N, Rinaldi A, Bertoni F, Bono J, Carracedo A, Alimonti A
Nature genetics(2018 Jan)
A Map of Human Mitochondrial Protein Interactions Linked to Neurodegeneration Reveals New Mechanisms of Redox Homeostasis and NF-?B Signaling.
Malty RH, Aoki H, Kumar A, Phanse S, Amin S, Zhang Q, Minic Z, Goebels F, Musso G, Wu Z, Abou-Tok H, Meyer M, Deineko V, Kassir S, Sidhu V, Jessulat M, Scott NE, Xiong X, Vlasblom J, Prasad B, Foster LJ, Alberio T, Garavaglia B, Yu H, Bader GD, Nakamura K, Parkinson J, Babu M
Cell systems5(6)564-577.e12(2017 Dec)
Characterization of the impact of glutaredoxin-2 (GRX2) deficiency on superoxide/hydrogen peroxide release from cardiac and liver mitochondria.
Chalker J, Gardiner D, Kuksal N, Mailloux RJ
Redox biology15216-227(2017 Dec)
Acetyl-CoA production from pyruvate is not necessary for preservation of myelin.
Della-Flora Nunes G, Mueller L, Silvestri N, Patel MS, Wrabetz L, Feltri ML, Poitelon Y
Glia65(10)1626-1639(2017 Oct)
GeneRIFs: Gene References Into Functions What's a GeneRIF?
The association of mitochondrial microphthalmia-associated transcription factor (MITF) with pyruvate dehydrogenase (PDH) emerges as an important regulator of mast cell function. Our findings indicate that PDH could arise as a new target for the manipulation of allergic diseases.
Title: Pyruvate dehydrogenase has a major role in mast cell function, and its activity is regulated by mitochondrial microphthalmia transcription factor.
Taken together, our results indicate that the redox sensing and ROS forming properties of Pdh and Ogdh are linked to S-glutathionylation
Title: Protein S-glutathionylation alters superoxide/hydrogen peroxide emission from pyruvate dehydrogenase complex.
skeletal muscle IL-6 contributes to the regulation of PDH at rest and during prolonged exercise.
Title: Lack of Skeletal Muscle IL-6 Affects Pyruvate Dehydrogenase Activity at Rest and during Prolonged Exercise.
The present findings suggest that IL-6 contributes to regulating the PDHa activity and hence carbohydrate oxidation, but the metabolic state of the muscle seems to determine the outcome of this regulation
Title: Effects of IL-6 on pyruvate dehydrogenase regulation in mouse skeletal muscle.
Systemic Pyruvate Dehydrogenase Deficiency is associated with Cerebral Developmental Abnormalities.
Title: Cerebral Developmental Abnormalities in a Mouse with Systemic Pyruvate Dehydrogenase Deficiency.
The following Pdha1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Pdha1 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 | OMu14472 | |
Clone ID Related Accession (Same CDS sequence) | NM_008810.3 | |
Accession Version | NM_008810.3 Latest version! | Documents for ORF clone product in default vector |
Sequence Information | ORF Nucleotide Sequence (Length: 1173bp) Protein sequence SNP |
|
Vector | pcDNA3.1-C-(k)DYK or customized vector | ![]() |
Clone information | Clone Map | ![]() |
Tag on pcDNA3.1+/C-(K)DYK | C terminal DYKDDDDK tags | |
ORF Insert Method | CloneEZ™ Seamless cloning technology | |
Insert Structure | linear | |
Update Date | 2019-11-16 | |
Organism | Mus musculus(house mouse) | |
Product | pyruvate dehydrogenase E1 component subunit alpha, somatic form, mitochondrial precursor | |
Comment | Comment: VALIDATED REFSEQ: This record has undergone validation or preliminary review. The reference sequence was derived from BY783593.1, AK148459.1 and BQ177075.1. On Aug 25, 2015 this sequence version replaced NM_008810.2. Publication Note: This RefSeq record includes a subset of the publications that are available for this gene. Please see the Gene record to access additional publications. ##Evidence-Data-START## Transcript exon combination :: BC007142.1, AK145718.1 [ECO:0000332] RNAseq introns :: single sample supports all introns SAMN00849380, SAMN00849381 [ECO:0000348] ##Evidence-Data-END## ##RefSeq-Attributes-START## gene product(s) localized to mito. :: reported by MitoCarta ##RefSeq-Attributes-END## COMPLETENESS: complete on the 3' end. |
1 | ATGAGGAAGA TGCTTGCCGC TGTATCCCGC GTGTTGGCAG GCTCTGCGCA GAAGCCGGCA |
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.
RefSeq | NP_032836.1 |
CDS | 119..1291 |
Translation |
Target ORF information:
Target ORF information:
|
![]() |
1 | ATGAGGAAGA TGCTTGCCGC TGTATCCCGC GTGTTGGCAG GCTCTGCGCA GAAGCCGGCA |
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.
Compartmentalized activities of the pyruvate dehydrogenase complex sustain lipogenesis in prostate cancer. |
A Map of Human Mitochondrial Protein Interactions Linked to Neurodegeneration Reveals New Mechanisms of Redox Homeostasis and NF-?B Signaling. |
Characterization of the impact of glutaredoxin-2 (GRX2) deficiency on superoxide/hydrogen peroxide release from cardiac and liver mitochondria. |
Acetyl-CoA production from pyruvate is not necessary for preservation of myelin. |