Transfected Stable Cell Lines
Reliable | High-Performance | Wide Rage
Precision reporter, kinase, immune receptor, biosimilar, Cas9, and knockout stable cell lines for diverse applications.
| Cat.No. | Product Name | Price |
|---|---|---|
| CSC-DC005202 | Panoply™ Human FAHD1 Knockdown Stable Cell Line | Inquiry |
| CSC-SC005202 | Panoply™ Human FAHD1 Over-expressing Stable Cell Line | Inquiry |
| Cat.No. | Product Name | Price |
|---|---|---|
| AD05721Z | Human FAHD1 adenoviral particles | Inquiry |
| LV12118L | human FAHD1 (NM_031208) lentivirus particles | Inquiry |
| LV12119L | human FAHD1 (NM_001142398) lentivirus particles | Inquiry |
| LV12120L | human FAHD1 (NM_001018104) lentivirus particles | Inquiry |
| Cat.No. | Product Name | Price |
|---|---|---|
| SHH044715 | shRNA set against Rat Fahd1(NM_001024991.1) | Inquiry |
| SHH288797 | shRNA set against Mouse FAHD1 (NM_023480.2) | Inquiry |
| SHH044741 | shRNA set against Mouse Fahd1(NM_023480.2) | Inquiry |
| SHH288793 | shRNA set against Human FAHD1 (NM_031208.3) | Inquiry |
| SHH288801 | shRNA set against Rat FAHD1 (NM_001024991.1) | Inquiry |
| SHW004059 | shRNA set against Chicken FAHD1 (NM_001277752) | Inquiry |
| SHW008759 | shRNA set against Danio rerio FAHD1 (NM_001020728) | Inquiry |
| Cat.No. | Product Name | Price |
|---|---|---|
| CDCR351235 | Human FAHD1 ORF Clone(NM_001142398.1) | Inquiry |
| CDCR370793 | Rat Fahd1 ORF Clone(NM_001024991.1) | Inquiry |
| CDFH006285 | Human FAHD1 cDNA Clone(NM_001142398.1) | Inquiry |
| CDFR003771 | Rat Fahd1 cDNA Clone(NM_001024991.1) | Inquiry |
| MiUTR1M-04565 | FAHD1 miRNA 3'UTR clone | Inquiry |
| MiUTR1R-01818 | FAHD1 miRNA 3'UTR clone | Inquiry |
| MiUTR3H-14777 | FAHD1 miRNA 3'UTR clone | Inquiry |
| MiUTR3H-14778 | FAHD1 miRNA 3'UTR clone | Inquiry |
| MiUTR3H-14779 | FAHD1 miRNA 3'UTR clone | Inquiry |
| CDCB158295 | Human FAHD1 ORF clone (BC063017) | Inquiry |
| CDCB165534 | Chicken FAHD1 ORF Clone (NM_001277752) | Inquiry |
| CDCB170234 | Danio rerio FAHD1 ORF Clone (NM_001020728) | Inquiry |
| CDCB181958 | Rabbit FAHD1 ORF clone (XM_008253100.1) | Inquiry |
| CDCR062262 | Mouse Fahd1 ORF clone (NM_023480.2) | Inquiry |
| CDCS406639 | Human FAHD1 ORF Clone (BC063017) | Inquiry |
| CDCS406640 | Human FAHD1 ORF Clone (BC020615) | Inquiry |
Fumarylacetoacetate hydrolase domain-containing proteins (FAH) were not only found in prokaryotes but also eukaryotes. However, the association between enzymatic reactions and structural differences in their respective FAH domains has not been figured out, more detailed, the precise relationship between the structure of the FAH domain and correspond enzyme function remains to be untouchable. There are three known FAH domain-containing proteins, FAHD1, FAHD2A, and FAHD2B in mammals, and their enzymatic functions are waiting for untangled. Oxaloacetate is capable of enzymatic decarboxylation in bacteria, and molecular modeling and subsequent biochemical research revealed that FAHD1 may work as a eukaryotic ODx enzyme.
A member of FAH superfamily of enzymes, FAHD1, was found to be a mitochondrial protein with differential expression in a proteomic screening initiated in young versus senescent human endothelial cells. Recent studies suggest that an important role has been played by FAHD1 in regulating mitochondrial functions for its oxaloacetate decarboxylase identity. Silence of FAHD1 gene brings human cells forward into the phase of senescence-like growth arrest by lowering down activity of the mitochondrial electron transport (ETC) system. And it may indicate that mitochondrial function is regulated by FAHD1 to lead to the consequence of senescence. To identify novel anti-senescence target, Solmaz Etemad employed unbiased proteomics approach for the identification of mitochondrial proteome, whose alteration in expression is accompanied with cellular senescence. And a previously unknown mitochondrial protein with differential distribution in young and senescent HUVEC cells, FAHD1, which was subsequently identified as a mitochondrial matrix localized eukaryotic oxaloacetate decarboxylase (ODx), was found in the comparison of the mitochondrial proteome from young and senescent human.
Oxaloacetate decarboxylase role played by FAHD1 in mitochondria is beneficial for the regulation of the tricarboxylic acid cycle. The chemical structure of FAHD1 substrate oxaloacetate may foretell the potential inhibitor structures. In the account of FAHD1's role in human cell metabolism and metabolic shifts that occurred in FAHD1 knockdown human cell lines, successful experiment about assessment of cells' dependence on FAHD1 for proliferation and survival would put FAHD1 inhibition into the tract of working as a therapeutic target in treatment of pathologies associated with mitochondrial dysfunction, and translational research with this aim should be based on more text in efficacy studies in human tissue culture and xenograft models. Structural information derived from X-ray data of FAHD1 associated with comparison between unliganded with the liganded protein models enabled the definition of the FAHD1 catalytic center in high resolution.
Fig 1. Role of FAHD1 played in OAA-producing and consuming processes in mitochondrial matrix (Pidder et al. 2018)
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