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AB198594

Alexa Fluor® 488 Anti-ATP5H antibody [10G5AB2]

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(1 Publication)

Anti-ATP5H antibody [10G5AB2] conjugated to Alexa Fluor® 488 - suitable for intracellular flow cytometry, ICC/IF, and reacts with human samples. Clone [10G5AB2] is a mouse monoclonal antibody.
2 Images
Flow Cytometry (Intracellular) - Alexa Fluor® 488 Anti-ATP5H antibody [10G5AB2] (AB198594)
  • Flow Cyt (Intra)

Unknown

Flow Cytometry (Intracellular) - Alexa Fluor® 488 Anti-ATP5H antibody [10G5AB2] (AB198594)

Overlay histogram showing HeLa cells stained with ab198594 (red line). The cells were fixed with 80% methanol (5 min) and then permeabilized with 0.1% PBS-Tween for 20 min. The cells were then incubated in 1x PBS / 10% normal goat serum / 0.3M glycine to block non-specific protein-protein interactions followed by the antibody (ab198594, 1/500 dilution) for 30 min at 22°C. Isotype control antibody (black line) was mouse IgG1 (monoclonal) Alexa Fluor® 488 (ab171463) used at the same concentration and conditions as the primary antibody. Unlabelled sample (blue line) was also used as a control. Acquisition of >5,000 events were collected using a 20mW Argon ion laser (488nm) and 525/30 bandpass filter. This antibody gave a positive signal in HeLa cells fixed with 4% formaldehyde (10 min)/permeabilized with 0.1% PBS-Tween for 20 min used under the same conditions.

Immunocytochemistry/ Immunofluorescence - Alexa Fluor® 488 Anti-ATP5H antibody [10G5AB2] (AB198594)
  • ICC/IF

Lab

Immunocytochemistry/ Immunofluorescence - Alexa Fluor® 488 Anti-ATP5H antibody [10G5AB2] (AB198594)

ab198594 staining ATP5H in HeLa cells. The cells were fixed with 100% methanol (5 min), permeabilized with 0.1% Triton X-100 for 5 minutes and then blocked with 1% BSA/10% normal goat serum/0.3M glycine in 0.1% PBS-Tween for 1h. The cells were then incubated overnight at +4°C with ab198594 at 1/100 dilution (shown in green) and ab195889, Mouse monoclonal to alpha Tubulin (Alexa Fluor® 594), at 1/250 dilution (shown in red). Nuclear DNA was labelled with DAPI (shown in blue).

Image was taken with a confocal microscope (Leica-Microsystems, TCS SP8).

Key facts

Host species

Mouse

Clonality

Monoclonal

Clone number

10G5AB2

Isotype

IgG1

Conjugation

Alexa Fluor® 488

Excitation/Emission

Ex: 495nm, Em: 519nm

Carrier free

No

Reacts with

Human

Applications

Flow Cyt (Intra), ICC/IF

applications

Immunogen

The exact immunogen used to generate this antibody is proprietary information.

Reactivity data

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Product details

Alexa Fluor® is a registered trademark of Molecular Probes, Inc, a Thermo Fisher Scientific Company. The Alexa Fluor® dye included in this product is provided under an intellectual property license from Life Technologies Corporation. As this product contains the Alexa Fluor® dye, the purchase of this product conveys to the buyer the non-transferable right to use the purchased product and components of the product only in research conducted by the buyer (whether the buyer is an academic or for-profit entity). As this product contains the Alexa Fluor® dye the sale of this product is expressly conditioned on the buyer not using the product or its components, or any materials made using the product or its components, in any activity to generate revenue, which may include, but is not limited to use of the product or its components: in manufacturing; (ii) to provide a service, information, or data in return for payment (iii) for therapeutic, diagnostic or prophylactic purposes; or (iv) for resale, regardless of whether they are sold for use in research. For information on purchasing a license to this product for purposes other than research, contact Life Technologies Corporation, 5781 Van Allen Way, Carlsbad, CA 92008 USA or outlicensing@thermofisher.com.

Properties and storage information

Form
Liquid
Purification technique
Affinity purification
Purification notes
ab173006 is purified to near homogeneity as judged by SDS-PAGE. The antibody was produced in vitro using hybridomas grown in serum-free medium, and then purified by biochemical fractionation.
Storage buffer
pH: 7.4 Preservative: 0.02% Sodium azide Constituents: PBS, 30% Glycerol (glycerin, glycerine), 1% BSA
Shipped at conditions
Blue Ice
Appropriate short-term storage duration
1-2 weeks
Appropriate short-term storage conditions
+4°C
Appropriate long-term storage conditions
-20°C
Aliquoting information
Upon delivery aliquot
Storage information
Avoid freeze / thaw cycle|Store in the dark

Supplementary information

This supplementary information is collated from multiple sources and compiled automatically.

ATP5H also known as ATP synthase subunit d is a component of the ATP synthase complex an important enzyme found in the mitochondria. It weighs approximately 18.4 kDa. This protein is part of the F1F0 ATP synthase complex specifically the F0 domain. ATP5H is highly expressed in tissues with high energy demand such as skeletal muscle and cardiac muscle indicating its important role in the cellular energy production.
Biological function summary

ATP5H facilitates the production of ATP the energy currency of the cell. It is essential in the synthesis of ATP from ADP and inorganic phosphate driven by a proton gradient across the mitochondrial membrane. ATP5H is integral to the structure of the F1F0 ATP synthase complex ensuring efficient proton translocation and ATP synthesis. This subunit is critical for the overall function and stability of the ATP synthase complex.

Pathways

ATP5H plays a role in oxidative phosphorylation and energy metabolism pathways. This protein interacts closely with other ATP synthase subunits including ATP5B and ATP5O orchestrating the conversion of energy derived from nutrients to ATP. The oxidative phosphorylation pathway is central to energy production in eukaryotic cells and ATP5H forms an essential link in this process.

ATP5H is implicated in mitochondrial dysfunctions and related conditions such as mitochondrial myopathies. Alterations or deficiencies in ATP5H can disrupt ATP production potentially leading to neuromuscular disorders. Additionally connections to ATP5A1 another subunit of ATP synthase are noted. Dysregulation in these interactions can provide insight into the molecular mechanisms of these diseases providing potential therapeutic targets.

Product protocols

For this product, it's our understanding that no specific protocols are required. You can visit:

Target data

Subunit d, of the mitochondrial membrane ATP synthase complex (F(1)F(0) ATP synthase or Complex V) that produces ATP from ADP in the presence of a proton gradient across the membrane which is generated by electron transport complexes of the respiratory chain (PubMed : 37244256). ATP synthase complex consist of a soluble F(1) head domain - the catalytic core - and a membrane F(1) domain - the membrane proton channel (PubMed : 37244256). These two domains are linked by a central stalk rotating inside the F(1) region and a stationary peripheral stalk (PubMed : 37244256). During catalysis, ATP synthesis in the catalytic domain of F(1) is coupled via a rotary mechanism of the central stalk subunits to proton translocation (Probable). In vivo, can only synthesize ATP although its ATP hydrolase activity can be activated artificially in vitro (By similarity). Part of the complex F(0) domain (PubMed : 37244256). Part of the complex F(0) domain and the peripheric stalk, which acts as a stator to hold the catalytic alpha(3)beta(3) subcomplex and subunit a/ATP6 static relative to the rotary elements (By similarity).
See full target information ATP5PD

Alternative Names

ATP5H, My032, ATP5PD, ATPase subunit d, ATP synthase peripheral stalk subunit d

Publications (1)

Recent publications for all applications. Explore the full list and refine your search

Cell death & disease 14:82 PubMed36737598

2023

Metformin induces pyroptosis in leptin receptor-defective hepatocytes via overactivation of the AMPK axis.

Applications

Unspecified application

Species

Unspecified reactive species

Bingli Liu,Jingyuan Xu,Linyao Lu,Lili Gao,Shengjuan Zhu,Yi Sui,Ting Cao,Tao Yang
View all publications

Product promise

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