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Mouse Anti-Porcine Stomatin-Like 2 (STOML2) Monoclonal Antibody

Cat. No.VD8N227

Product TypeAnimal-targeted Antibodies

Size

Product Overview

BioVenic mouse monoclonal antibody is specific for stomatin-like 2. It is affinity purified by protein A. It can be applied to WB, IP, IHC and ELISA assays of stomatin-like 2.

Specifications

Application WB; IP; IHC; ELISA
Clonality Monoclonal
Classification Primary Antibody
Clone G5N40
Host Mouse
Target Species Porcine
Species Reactivity Porcine
Specificity Stomatin-Like 2
Isotype IgG2
Immunogen Recombinant protein of stomatin-like 2
Purification Protein A Purified
Concentration 1600 μg/mL
Conjugation Unconjugated
Preservative and Stabilizer 0.1% Sodium Azide
Buffer Phosphate Buffered Saline with 50% Glycerol, pH 7.3
Physical State Liquid

Target Information

Porcine stomatin-like 2 (pSTOML2) is a member of the stomatin-like protein family, which are integral membrane proteins implicated in various cellular processes, including ion transport and vesicular trafficking. pSTOML2 is expressed in a range of tissues and is particularly relevant to the regulation of endosomal and lysosomal function in pig cells. This protein is known to play a role in the maintenance of endosomal pH balance, which is critical for the proper functioning of hydrolytic enzymes within lysosomes. By influencing the acidification of endosomal compartments, pSTOML2 contributes to the regulation of membrane trafficking and the sorting of proteins and lipids.

Target Stomatin-Like 2
Gene ID 100625031
UniProt ID A0A4X1W169

Shipping and Storage

This product is shipped with ice gel packs. Store at -20°C (up to 12 months) on receipt.

Documents

COA

To request a Certificate of Analysis, please enter the Lot No. in the search box. Note: Certificate of Analysis not available for kits.

The product is for research use only.
Not for commercial, prophylactic, diagnostic, or therapeutic applications.

References

  1. Hu, Yuntao, et al. "Stomatin-like protein 2 deficiency exacerbates adverse cardiac remodeling." Cell Death Discovery 9.1 (2023): 63.
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