


Anti-ACACA Recombinant Antibody Products

Anti-ACACA Products
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- Derivation: Rabbit
- Species Reactivity: Human, Mouse, Rat
- Type: Rabbit IgG
- Application: WB, IHC
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- Species Reactivity: Human
- Type: Mouse IgG
- Application: WB, ELISA
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- Species Reactivity: Human
- Type: Mouse IgG2b
- Application: WB, IP, IF
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- Species Reactivity: Human
- Type: Rabbit IgG
- Application: WB
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- Species Reactivity: Human
- Type: Rabbit IgG
- Application: WB
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- Derivation: Mouse
- Species Reactivity: Human
- Type: Mouse IgG2b, κ
- Application: WB, IP, IF, ELISA
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- Derivation: Phage display library screening
- Species Reactivity: Human
- Type: Rabbit IgG
- Application: WB, IHC, ICC, FC
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- Species Reactivity: Human, Mouse
- Type: Rabbit IgG
- Application: WB, IHC-P
- Anti-ACACA Immunohistochemistry Kit (VS-0525-XY54)
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- Species Reactivity: Human
- Target: ACACA
- Application: IHC
- Anti-Mouse ACACA Immunohistochemistry Kit (VS-0525-XY55)
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- Species Reactivity: Human, Mouse, Rat
- Target: ACACA
- Application: IHC
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For Research Use Only. Not For Clinical Use.
Creative Biolabs specializes in developing premium recombinant antibodies against ACACA to propel biomedical breakthroughs. Through our advanced technological platforms, we guarantee superior product quality and consistent performance for critical research applications. We offer an expansive selection of meticulously engineered biologics that combine outstanding reliability with cost-effectiveness. Beyond supplying these research tools, our team provides customized technical guidance and troubleshooting expertise throughout your project lifecycle. Choosing Creative Biolabs means partnering with scientists who are equally invested in helping you achieve meaningful discoveries through tailored antibody solutions and collaborative support.
ACACA: A Pivotal Metabolic Regulator in Cancer Diabetes and Neurological Disorders
As a central regulator of lipid metabolism, ACACA serves as a critical node in multiple disease pathways through its control of de novo fatty acid synthesis. This metabolic gatekeeper's dysregulation manifests across diverse pathological conditions, with particularly strong associations observed in oncological and metabolic diseases. In cancer biology, hyperactivity fuels tumor progression by supplying building blocks for membrane biosynthesis and post-translational modifications that drive oncogenic signaling. The enzyme's metabolic influence extends to type 2 diabetes, where its overactivity in liver tissue exacerbates hyperlipidemia and contributes to insulin resistance pathogenesis. Cardiovascular studies reveal its involvement in endothelial dysfunction through mechanisms involving lipid-induced oxidative stress and foam cell formation. Emerging neurological research suggests potential links to Alzheimer's pathology, possibly through effects on neuronal membrane composition and synaptic vesicle formation. Therapeutically, modulation of this enzymatic activity presents both opportunities and challenges, as systemic inhibition risks disrupting essential physiological processes while targeted approaches show promise in preclinical models. These multifaceted disease connections continue to motivate investigation into selective regulatory strategies that could yield novel treatments for conditions ranging from malignancies to metabolic syndrome.
Alternative Names
Complement ACC; ACAC; ACC1; ACCA; Acac1; hACC1; ACACAD; ACCalpha; ACACalpha
Background
Acetyl-CoA carboxylase (ACC) is a complex multifunctional enzyme system. ACC is a biotin-containing enzyme which catalyzes the carboxylation of acetyl-CoA to malonyl-CoA, the rate-limiting step in fatty acid synthesis. There are two ACC forms, alpha and beta, encoded by two different genes. ACC-alpha is highly enriched in lipogenic tissues. The enzyme is under long term control at the transcriptional and translational levels and under short term regulation by the phosphorylation/dephosphorylation of targeted serine residues and by allosteric transformation by citrate or palmitoyl-CoA. Multiple alternatively spliced transcript variants divergent in the 5' sequence and encoding distinct isoforms have been found for this gene.
Disease related genes, Enzymes, Metabolic proteins, Potential drug targets
Intracellular
Cell type enhanced (Excitatory neurons, Inhibitory neurons, Oligodendrocytes, Oligodendrocyte precursor cells, Astrocytes)
Low immune cell specificity
Low cell line specificity
Monomer, homodimer, and homotetramer (PubMed:20952656, PubMed:29899443). Can form filamentous polymers (PubMed:20457939, PubMed:20952656, PubMed:29899443). Interacts in its inactive phosphorylated form with the BRCT domains of BRCA1 which prevents ACACA dephosphorylation and inhibits lipid synthesis (PubMed:12360400, PubMed:16326698, PubMed:18452305, PubMed:29899443). Interacts with MID1IP1; interaction with MID1IP1 promotes oligomerization and increases its activity (PubMed:20457939).
Allosteric enzyme, Ligase, Multifunctional enzyme
Anti-ACACA rAb Products
We accelerate scientific breakthroughs by providing premium anti-ACACA antibodies that combine exceptional performance with cost-effectiveness. Our offerings are backed by comprehensive technical expertise and personalized support throughout your research journey, ensuring reliable results and efficient progress in your studies.
Table 1. Featured anti-ACACA recombinant antibody products at Creative Biolabs.
Cat. No. | Product Name | Target Species | Host Species | Applications |
VS3-WK797 | Rabbit Anti-ACACA Recombinant Antibody (clone ST53-08) | Human; Mouse; Rat | Rabbit | WB; IHC |
VS3-CJ103 | Mouse Anti-ACACA Recombinant Antibody (VS3-CJ103) | Human | Mouse | WB; ELISA |
VS3-XY15 | Mouse Anti-ACACA Recombinant Antibody (clone 2G3) | Human | Mouse | WB; IP; IF |
VS3-FY10 | Recombinant Rabbit Anti-ACACA Antibody (clone R05-3D6) | Human | Rabbit | WB |
MOB-4059z | Mouse Anti-ACACA Recombinant Antibody (clone 37G1) | Human | Mouse | WB; IP; IF; ELISA |
Customer Reviews

Rabbit Anti-ACACA Recombinant Antibody (clone ST53-08) (CAT#: VS3-WK797)

Mouse Anti-ACACA Recombinant Antibody (VS3-CJ103) (CAT#: VS3-CJ103)

Mouse Anti-ACACA Recombinant Antibody (clone 37G1) (CAT#: MOB-4059z)
rAb Production
With decades of specialized experience in antibody engineering and optimization, we've refined our processes to consistently manufacture premium-grade recombinant antibodies with exceptional reliability. Our streamlined workflows enable rapid production without compromising quality, supported by a dedicated scientific team committed to delivering tailored solutions that precisely meet your research requirements within accelerated timelines.
Featured Anti-ACACA Recombinant Antibody Production Platforms
Fig.1 Milligram-scale recombinant antibody production.
Fig.2 Gram-scale recombinant antibody production.
rAb Modalities
At Creative Biolabs, we specialize in developing innovative antibody solutions across diverse formats to support cutting-edge research. Leveraging advanced protein engineering technologies and novel design strategies, we deliver meticulously crafted biologics that meet rigorous performance standards. Each product is supported by tailored development services, ensuring optimal compatibility with your experimental requirements and research objectives while maintaining exceptional quality and reliability.
Fig.3 Full Length Anti-ACACA Recombinant Antibody Production and Modalities.
For ACACA-related questions or technical support, please contact us anytime – our specialists are ready to help optimize your research. We provide customized guidance on experimental design, troubleshooting, and data interpretation to ensure your project's success. Whether you're establishing new protocols or refining existing ones, our team offers the expertise you need at every stage.