Anti-TMEM30A Monoclonal Antibody (12H10)

Anti-TMEM30A Monoclonal Antibody (12H10)

Cat No: ASPC631

Summary
Host Species:
Mouse
Species Reactivity:
Human
Applications:
Enzyme-Linked Immunosorbent Assay, Flow Cytometry
Clone ID:
12H10
Clonality:
Monoclonal

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Product Information
Subcat Description Isotype Antibody Modification Conjugate Size Price Availability Quantity
ASPC631 Anti-TMEM30A Antibody (12H10) Mouse IgG1, Kappa None $460 In stock
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ASPC631-P Anti-TMEM30A Antibody (12H10), PE Mouse IgG1, Kappa PE $1,180 2-3 weeks
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ASPC631-A Anti-TMEM30A Antibody (12H10), APC Mouse IgG1, Kappa APC $980 2-3 weeks
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ASPC631-H Anti-TMEM30A Antibody (12H10), HRP Mouse IgG1, Kappa HRP $600 2-3 weeks
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ASPC631-B Anti-TMEM30A Antibody (12H10), Biotin Mouse IgG1, Kappa Biotin $680 2-3 weeks
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Custom Antibody We can also offer conjugation antibodies (Alexa Fluor, Cy, APC, etc.) and other format antibodies (low endotoxin, Fab, scFv, etc.)

  • Anti-TMEM30A Monoclonal Antibody (12H10)
    • Product Description:
      The Anti-TMEM30A antibody is a mouse monoclonal antibody recommended for use in ELISA, flow cytometry and other applications. This antibody specifically targets TMEM30A and demonstrates reactivity with human.
      Applications:
      Enzyme-Linked Immunosorbent Assay, Flow Cytometry
      Target:
      TMEM30A
      Target Species:
      Human
      Specificity:
      This antibody reacts with human TMEM30A.
      Clonality:
      Monoclonal
      Clone ID:
      12H10
      Purification:
      The antibody was purified by affinity chromatography.
      Purity:
      >95% as determined by SDS-PAGE
      Aggregation:
      <5% as determined by SEC
      Form:
      Liquid
      Endotoxin:
      Please contact us for more information.
      Formulation:
      Contact us for custom product formulation.
      Preservative:
      BSA and Azide free.
      Stabilizer:
      None
      Shipping:
      Shipped at 4°C.
      Storage:
      This antibody can be store at 2°C-8°C for one month. Upon delivery aliquot. For longer storage, store at -20°C. Avoid repeated freeze-thaw cycles.
  • Anti-TMEM30A Monoclonal Antibody (12H10) Applications
    • Note:
      Optimal dilutions/concentrations should be determined by the end user.
Gene Symbol
TMEM30A
Protein Name
Cell cycle control protein 50A
Introduction
TMEM30A functions as the beta subunit for several P4 ATPases, playing a role in their catalytic reaction cycles and regulating their correct membrane localization.
Alternative Names
TMEM30A; transmembrane protein 30A; CDC50A; C6orf67; cell cycle control protein 50A; P4-ATPase flippase complex beta subunit TMEM30A
Gene ID
UniProt
Subcellular Location
Membrane
Cell Line Specificity
Low cancer specificity
Function
Accessory component of a P4-ATPase flippase complex which catalyzes the hydrolysis of ATP coupled to the transport of aminophospholipids from the outer to the inner leaflet of various membranes and ensures the maintenance of asymmetric distribution of phospholipids. Phospholipid translocation seems also to be implicated in vesicle formation and in uptake of lipid signaling molecules. The beta subunit may assist in binding of the phospholipid substrate. Required for the proper folding, assembly and ER to Golgi exit of the ATP8A2:TMEM30A flippase complex. ATP8A2:TMEM30A may be involved in regulation of neurite outgrowth, and, reconstituted to liposomes, predomiminantly transports phosphatidylserine (PS) and to a lesser extent phosphatidylethanolamine (PE). The ATP8A1:TMEM30A flippase complex seems to play a role in regulation of cell migration probably involving flippase-mediated translocation of phosphatidylethanolamine (PE) at the plasma membrane. Required for the formation of the ATP8A2, ATP8B1 and ATP8B2 P-type ATPAse intermediate phosphoenzymes. Involved in uptake of platelet-activating factor (PAF), synthetic drug alkylphospholipid edelfosine, and, probably in association with ATP8B1, of perifosine. Also mediates the export of alpha subunits ATP8A1, ATP8B1, ATP8B2, ATP8B4, ATP10A, ATP10B, ATP10D, ATP11A, ATP11B and ATP11C from the ER to other membrane localizations.
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