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AB205387

Anti-ASIC1 antibody - C-terminal

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(1 Publication)

Goat Polyclonal ASIC1 antibody. C-terminal. Suitable for WB, IHC-P and reacts with Mouse, Human samples. Cited in 1 publication. Immunogen corresponding to Synthetic Peptide within Human ASIC1 aa 500-550.

View Alternative Names

ACCN2, BNAC2, ASIC1, Acid-sensing ion channel 1, Brain sodium channel 2

1 Images
Western blot - Anti-ASIC1 antibody - C-terminal (AB205387)
  • WB

Supplier Data

Western blot - Anti-ASIC1 antibody - C-terminal (AB205387)

All lanes:

Western blot - Anti-ASIC1 antibody - C-terminal (ab205387) at 0.3 µg/mL

All lanes:

Mouse fetal brain lysate at 35 µg

Predicted band size: 60 kDa

Observed band size: 70 kDa

true

Key facts

Host species

Goat

Clonality

Polyclonal

Isotype

IgG

Carrier free

No

Reacts with

Mouse, Human

Applications

IHC-P, WB

applications

Immunogen

Synthetic Peptide within Human ASIC1 aa 500-550. The exact immunogen used to generate this antibody is proprietary information.

P78348

Specificity

ab205387 is expected to recognize all reported isoforms (NP_064423.2; NP_001086.2; NP_001243759.1).

Reactivity data

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Properties and storage information

Form
Liquid
Purification technique
Affinity purification Immunogen
Purification notes
ab205387 was purified from goat serum by ammonium sulphate precipitation followed by antigen affinity chromatography using the immunizing peptide.
Storage buffer
pH: 7.3 Preservative: 0.02% Sodium azide Constituents: Tris buffered saline, 0.5% 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

Supplementary information

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

The ASIC1 or acid-sensing ion channel 1 is also known as ASIC or ACCN2. It is part of a group of proton-gated cation channels. ASIC1 has a molecular mass of approximately 60 kDa. This ion channel plays a role in the detection of acidosis where it mediates proton influx across cell membranes affecting changes in membrane potential. ASIC1 is expressed in neurons of the central and peripheral nervous systems with particular abundance in the brain. Its localization to regions such as the amygdala suggests a possible role in processing emotions and pain perception.
Biological function summary

This ion channel aids in neuronal response to pH drops serving as a sensor for acidification. The ASIC1 subunit can form homotrimers or heterotrimers with other ASIC subunits which impacts the ion conductance properties. This protein's activity affects synaptic plasticity and is involved in both short-term and long-term modulation of neuronal circuits. Changes in its activity can influence neurotransmission and has implications in neurological functionality.

Pathways

ASIC1 is part of the neurophysiological signaling pathways affecting synaptic transmission. It interacts with other proteins like ASIC2 and ASIC3 being implicated in the modulation of sensory perception and pain. Involvement in pathways like the pain-transducing signaling pathway places ASIC1 in a context where it can regulate nociceptive signals. It participates in ion flux alterations that contribute to neuronal excitability and synaptic strength.

ASIC1 has connections to neurodegenerative conditions and pain syndromes. It is implicated in the pathophysiology of disorders such as ischemia where acidosis occurs during stress and tissue damage and chronic pain conditions. ASIC1 interacts with proteins such as the NMDA receptor in the context of these diseases suggesting a role in excitotoxicity. Dysfunction or altered regulation of ASIC1 may exacerbate neurodegeneration or chronic pain symptoms highlighting its potential as a therapeutic target.

Product protocols

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

Target data

Forms voltage-independent, pH-gated trimeric sodium channels that act as postsynaptic excitatory receptors in the nervous system, playing a crucial role in regulating synaptic plasticity, learning, and memory (PubMed : 21036899, PubMed : 32915133, PubMed : 34319232). Upon extracellular pH drop this channel elicits transient, fast activating, and completely desensitizing inward currents (PubMed : 21036899). Displays high selectivity for sodium ions but can also permit the permeation of other cations (PubMed : 21036899). Regulates more or less directly intracellular calcium concentration and CaMKII phosphorylation, and thereby the density of dendritic spines. Modulates neuronal activity in the circuits underlying innate fear (By similarity).. Isoform Asic1a. Has high selectivity for sodium ions, but can also be permeable to other cations including calcium, lithium and potassium.. Isoform Asic1b. Produces acid activated currents with a reduced amplitude and inactivates faster (PubMed : 21036899). Has high selectivity for sodium ions but also supports a calcium-mediated current which is sustained and maintained as long as acidic conditions are present (PubMed : 21036899). Also potentially permeable to lithium and potassium (PubMed : 21036899).. Isoform 1. Has no measurable proton-gated sodium channel activity in vitro.
See full target information ASIC1

Publications (1)

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

Journal of cellular biochemistry 120:14885-14898 PubMed31044454

2019

Upregulation of microRNA-140-3p inhibits epithelial-mesenchymal transition, invasion, and metastasis of hepatocellular carcinoma through inactivation of the MAPK signaling pathway by targeting GRN.

Applications

Unspecified application

Species

Unspecified reactive species

Qiu-Yin Zhang,Chang-Jun Men,Xue-Wei Ding
View all publications

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