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Merck

HPA012945

Sigma-Aldrich

Anti-ATP2B1 antibody produced in rabbit

enhanced validation

Prestige Antibodies® Powered by Atlas Antibodies, affinity isolated antibody, buffered aqueous glycerol solution

Synonym(e):

Anti-PMCA1, Anti-Plasma membrane calcium ATPase isoform 1, Anti-Plasma membrane calcium pump isoform 1, Anti-Plasma membrane calcium-transporting ATPase 1

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About This Item

UNSPSC-Code:
12352203
Human Protein Atlas-Nummer:
NACRES:
NA.43

Biologische Quelle

rabbit

Qualitätsniveau

Konjugat

unconjugated

Antikörperform

affinity isolated antibody

Antikörper-Produkttyp

primary antibodies

Klon

polyclonal

Produktlinie

Prestige Antibodies® Powered by Atlas Antibodies

Form

buffered aqueous glycerol solution

Speziesreaktivität

human

Erweiterte Validierung

orthogonal RNAseq
Learn more about Antibody Enhanced Validation

Methode(n)

immunohistochemistry: 1:50-1:200
western blot: 0.04-0.4 μg/mL

Immunogene Sequenz

GDMANNSVAYSGVKNSLKEANHDGDFGITLAELRALMELRSTDALRKIQESYGDVYGICTKLKTSPNEGLSGNPADLERREAVFGKNFIP

UniProt-Hinterlegungsnummer

Versandbedingung

wet ice

Lagertemp.

−20°C

Posttranslationale Modifikation Target

unmodified

Angaben zum Gen

human ... ATP2B1(490)

Allgemeine Beschreibung

The gene encoding plasma membrane calcium-transporting ATPase 1 (ATP2B1) is located on chromosome 12q21-q23. It is localized to the basolateral membrane of cells and expressed widely in many tissues. ATP2B1 is known as the “housekeeping” isoform.

Immunogen

Plasma membrane calcium-transporting ATPase 1 recombinant protein epitope signature tag (PrEST)

Anwendung

All Prestige Antibodies Powered by Atlas Antibodies are developed and validated by the Human Protein Atlas (HPA) project and as a result, are supported by the most extensive characterization in the industry.

The Human Protein Atlas project can be subdivided into three efforts: Human Tissue Atlas, Cancer Atlas, and Human Cell Atlas. The antibodies that have been generated in support of the Tissue and Cancer Atlas projects have been tested by immunohistochemistry against hundreds of normal and disease tissues and through the recent efforts of the Human Cell Atlas project, many have been characterized by immunofluorescence to map the human proteome not only at the tissue level but now at the subcellular level. These images and the collection of this vast data set can be viewed on the Human Protein Atlas (HPA) site by clicking on the Image Gallery link. We also provide Prestige Antibodies® protocols and other useful information.

Biochem./physiol. Wirkung

Plasma membrane calcium-transporting ATPase 1 (ATP2B1) pumps Ca2+ out of the cell. It is thus involved in maintaining intracellular Ca2+ levels and regulates Ca2+ signaling in cells. ATP2B1 dysfunctioning has been shown to be involved with hypertension and arterial stiffness.

Leistungsmerkmale und Vorteile

Prestige Antibodies® are highly characterized and extensively validated antibodies with the added benefit of all available characterization data for each target being accessible via the Human Protein Atlas portal linked just below the product name at the top of this page. The uniqueness and low cross-reactivity of the Prestige Antibodies® to other proteins are due to a thorough selection of antigen regions, affinity purification, and stringent selection. Prestige antigen controls are available for every corresponding Prestige Antibody and can be found in the linkage section.

Every Prestige Antibody is tested in the following ways:
  • IHC tissue array of 44 normal human tissues and 20 of the most common cancer type tissues.
  • Protein array of 364 human recombinant protein fragments.

Verlinkung

Corresponding Antigen APREST71544

Physikalische Form

Solution in phosphate-buffered saline, pH 7.2, containing 40% glycerol and 0.02% sodium azide

Rechtliche Hinweise

Prestige Antibodies is a registered trademark of Merck KGaA, Darmstadt, Germany

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Lagerklassenschlüssel

10 - Combustible liquids

WGK

WGK 1

Flammpunkt (°F)

Not applicable

Flammpunkt (°C)

Not applicable

Persönliche Schutzausrüstung

Eyeshields, Gloves, multi-purpose combination respirator cartridge (US)


Analysenzertifikate (COA)

Suchen Sie nach Analysenzertifikate (COA), indem Sie die Lot-/Chargennummer des Produkts eingeben. Lot- und Chargennummern sind auf dem Produktetikett hinter den Wörtern ‘Lot’ oder ‘Batch’ (Lot oder Charge) zu finden.

Besitzen Sie dieses Produkt bereits?

In der Dokumentenbibliothek finden Sie die Dokumentation zu den Produkten, die Sie kürzlich erworben haben.

Die Dokumentenbibliothek aufrufen

Ján Lehotsky et al.
Frontiers in bioscience : a journal and virtual library, 7, d53-d84 (2002-01-10)
The biochemical function of the plasma membrane calcium ATPases (PMCAs) is the extrusion of cytosolic Ca2+ from the cell. Although this general function is well documented, the role of the complex isoform diversity and especially the contribution of specific isoforms
Qiuxin Wu et al.
Molecular and cellular biochemistry, 382(1-2), 263-272 (2013-07-03)
Ultraviolet B (UVB) could lead to the apoptosis of human lens epithelial cell and be hypothesized to be one of the important factors of cataractogenesis. In the human lens, Ca(2+)-ATPase is a major determinant of calcium homeostasis. Plasma membrane calcium
S Olson et al.
Genomics, 9(4), 629-641 (1991-04-01)
Human plasma membrane Ca2(+)-ATPase (PMCA) isoforms are encoded by at least four separate genes and the diversity of these enzymes is further increased by alternative splicing of transcripts. Cloned cDNAs for two of these isoforms have been used as probes
Michael C Chicka et al.
The Journal of biological chemistry, 278(20), 18464-18470 (2003-03-08)
Plasma membrane Ca(2+)-ATPases (PMCAs) are involved in local Ca(2+) signaling and in the spatial control of Ca(2+) extrusion, but how different PMCA isoforms are targeted to specific membrane domains is unknown. In polarized MDCK epithelial cells, a green fluorescent protein-tagged
Geoffrey M Goellner et al.
Annals of the New York Academy of Sciences, 986, 461-471 (2003-05-24)
Plasma membrane Ca(2+) ATPases (PMCAs) maintain intracellular Ca(2+) homeostasis and participate in the local regulation of Ca(2+) signaling. Spatially separate demands for Ca(2+) regulation require proper membrane targeting of PMCAs, but the mechanism of PMCA targeting is unknown. Using the

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