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KCNK3 blocking peptide

KCNK3 Blocking Peptide

Gene Names
KCNK3; OAT1; PPH4; TASK; TBAK1; K2p3.1; TASK-1
Reactivity
Human, Mouse, Rat
Applications
Blocking (BL)
Purity
>85%
Synonyms
KCNK3; KCNK3 Blocking Peptide; TASK; TASK1; Potassium channel subfamily K member 3; Acid-sensitive potassium channel protein TASK-1; TWIK-related acid-sensitive K(+) channel 1; Two pore potassium channel KT3.1; Two pore K(+) channel KT3.1; KCNK3 blocking peptide
Ordering
For Research Use Only!
Host
Synthetic
Reactivity
Human, Mouse, Rat
Purity/Purification
>85%
Form/Format
Lyophilized Powder
Sequence Length
394
Applicable Applications for KCNK3 blocking peptide
Blocking (BL)
Application Notes
Blocking Peptide to the diluted primary antibody in a molar ratio of 10:1 (peptide to antibody) and incubate the mixture at 4 degree C for overnight or at room temperature for 2 hours.
Quality Control
The quality of the peptide was evaluated by reversed-phase HPLC and by mass spectrometry.
Preparation and Storage
Shipped at 4 degree C. Store at -20 degree C for one year.
Related Product Information for KCNK3 blocking peptide
The peptide is used to block Anti-KCNK3 Antibody reactivity.

NCBI and Uniprot Product Information

NCBI GI #
NCBI GeneID
UniProt Accession #
Molecular Weight
43,518 Da
NCBI Official Full Name
Potassium channel subfamily K member 3
NCBI Official Synonym Full Names
potassium two pore domain channel subfamily K member 3
NCBI Official Symbol
KCNK3
NCBI Official Synonym Symbols
OAT1; PPH4; TASK; TBAK1; K2p3.1; TASK-1
NCBI Protein Information
potassium channel subfamily K member 3
UniProt Protein Name
Potassium channel subfamily K member 3
UniProt Gene Name
KCNK3
UniProt Synonym Gene Names
TASK; TASK1; Two pore K(+) channel KT3.1
UniProt Entry Name
KCNK3_HUMAN

NCBI Description

This gene encodes a member of the superfamily of potassium channel proteins that contain two pore-forming P domains. The encoded protein is an outwardly rectifying channel that is sensitive to changes in extracellular pH and is inhibited by extracellular acidification. Also referred to as an acid-sensitive potassium channel, it is activated by the anesthetics halothane and isoflurane. Although three transcripts are detected in northern blots, there is currently no sequence available to confirm transcript variants for this gene. [provided by RefSeq, Aug 2008]

Uniprot Description

KCNK3: pH-dependent, voltage-insensitive, background potassium channel protein. Rectification direction results from potassium ion concentration on either side of the membrane. Acts as an outward rectifier when external potassium concentration is low. When external potassium concentration is high, current is inward. Widespread expression in adult. Strongest expression in pancreas and placenta. Lower expression in brain, lung, prostate, heart, kidney, uterus, small intestine and colon. Belongs to the two pore domain potassium channel (TC 1.A.1.8) family.

Protein type: Membrane protein, multi-pass; Membrane protein, integral; Channel, potassium

Chromosomal Location of Human Ortholog: 2p23

Cellular Component: cytosol; integral to plasma membrane; plasma membrane

Molecular Function: ion channel activity; open rectifier potassium channel activity; potassium channel activity; potassium ion leak channel activity; protein C-terminus binding; protein heterodimerization activity; protein homodimerization activity

Biological Process: brain development; potassium ion transport; reduction of cytosolic calcium ion concentration; response to drug; stabilization of membrane potential; synaptic transmission

Disease: Pulmonary Hypertension, Primary, 4

Research Articles on KCNK3

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Product Notes

The KCNK3 kcnk3 (Catalog #AAA8243758) is a Blocking Peptide produced from Synthetic and is intended for research purposes only. The product is available for immediate purchase. The KCNK3 Blocking Peptide reacts with Human, Mouse, Rat and may cross-react with other species as described in the data sheet. AAA Biotech's KCNK3 can be used in a range of immunoassay formats including, but not limited to, Blocking (BL). Blocking Peptide to the diluted primary antibody in a molar ratio of 10:1 (peptide to antibody) and incubate the mixture at 4 degree C for overnight or at room temperature for 2 hours. Researchers should empirically determine the suitability of the KCNK3 kcnk3 for an application not listed in the data sheet. Researchers commonly develop new applications and it is an integral, important part of the investigative research process. It is sometimes possible for the material contained within the vial of "KCNK3, Blocking Peptide" to become dispersed throughout the inside of the vial, particularly around the seal of said vial, during shipment and storage. We always suggest centrifuging these vials to consolidate all of the liquid away from the lid and to the bottom of the vial prior to opening. Please be advised that certain products may require dry ice for shipping and that, if this is the case, an additional dry ice fee may also be required.

Precautions

All products in the AAA Biotech catalog are strictly for research-use only, and are absolutely not suitable for use in any sort of medical, therapeutic, prophylactic, in-vivo, or diagnostic capacity. By purchasing a product from AAA Biotech, you are explicitly certifying that said products will be properly tested and used in line with industry standard. AAA Biotech and its authorized distribution partners reserve the right to refuse to fulfill any order if we have any indication that a purchaser may be intending to use a product outside of our accepted criteria.

Disclaimer

Though we do strive to guarantee the information represented in this datasheet, AAA Biotech cannot be held responsible for any oversights or imprecisions. AAA Biotech reserves the right to adjust any aspect of this datasheet at any time and without notice. It is the responsibility of the customer to inform AAA Biotech of any product performance issues observed or experienced within 30 days of receipt of said product. To see additional details on this or any of our other policies, please see our Terms & Conditions page.

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