ATP2B1B
Species | Cat.# | Product name | Source (Host) | Tag | Protein Length | Price |
---|---|---|---|---|---|---|
Zebrafish | ATP2B1B-7191Z | Recombinant Zebrafish ATP2B1B | Mammalian Cell | His |
- Involved Pathway
- Protein Function
- Interacting Protein
ATP2B1B involved in several pathways and played different roles in them. We selected most pathways ATP2B1B participated on our site, such as Hemostasis, Ion channel transport, Ion transport by P-type ATPases, which may be useful for your reference. Also, other proteins which involved in the same pathway with ATP2B1B were listed below. Creative BioMart supplied nearly all the proteins listed, you can search them on our site.
Pathway Name | Pathway Related Protein |
---|---|
Hemostasis | NADL1.1;STXBP3A;DOCK9;GRB7;CLU;SERPINB8;AASS;KIF4;GATA1A |
Ion channel transport | CLCN7;ATP13A1;TTYH2;CLCN4-2;CLCA1;TRPM4A;ATP10A;TRPC5;TRPA1A |
Ion transport by P-type ATPases | ATP13A5;ATP11C;ATP2C1;CUTC;FXYD6;FXYD3;FXYD6-FXYD2;ATP1A1A.4;ATP8B1 |
Platelet calcium homeostasis | ATP2B1B;SLC8A2A;ATP2B3A |
Platelet homeostasis | ATP2B3A;APOER2;KCNMA1;SLC8A2A;KCNMB2;KCNMB1;PDE10A;ATP2B1B |
Reduction of cytosolic Ca++ levels | ATP2B1B;ATP2B3A;SLC8A2A |
Transmembrane transport of small molecules | NIPAL3;ANO10A;SLC2A7;CLCN6;MIP;UNC79;TFR1B;FXYD7;ATP1A1A.3 |
ATP2B1B has several biochemical functions, for example, ATP binding, PDZ domain binding, calcium-transporting ATPase activity. Some of the functions are cooperated with other proteins, some of the functions could acted by ATP2B1B itself. We selected most functions ATP2B1B had, and list some proteins which have the same functions with ATP2B1B. You can find most of the proteins on our site.
Function | Related Protein |
---|---|
ATP binding | OPLAH;ABCB11;TAOK2;SGK1;TRAP1;ATPBD4;ABCC8;NME1;SPS2 |
PDZ domain binding | ARHGEF16;CFTR;ADRB1;PTEN;FZD7;NSF;PROSAPIP1;ADAM17;KCNJ4 |
calcium-transporting ATPase activity | ATP2C2;ATP2B3A;ATP2A1;ATP2B2;ATP2B4;ATP2A1L;ATP2A2B;ATP2B1B;ATP2B1A |
hydrolase activity | MEST;CAPN8;TDRD9;ABHD2A;KLK1B1;OVCA2;FURINA;AGBL1;MPPED1 |
metal ion binding | GLI3;ZFP207;MMP25;PHC2A;KDM7AB;RNASEL;ZNF362B;PNKD;PON2 |
nucleotide binding | FIGN;TUBA2;MYHZ2;TUBA8L4;ARL4AB;HNRNPA1A;MSI2B;SBK3;HSPA4A |
ATP2B1B has direct interactions with proteins and molecules. Those interactions were detected by several methods such as yeast two hybrid, co-IP, pull-down and so on. We selected proteins and molecules interacted with ATP2B1B here. Most of them are supplied by our site. Hope this information will be useful for your research of ATP2B1B.
- Q&As
- Reviews
Q&As (6)
Ask a questionThe ATP2B1B protein reduces intracellular Ca 2 + concentrations by using energy to pump Ca 2 + out of the cell.
ATP2B1B protein plays a key role in several biological processes such as nerve transmission, muscle contraction, and heart beating.
ATP2B1B protein interacts with several proteins, such as other cell membrane proteins, signal transduction molecules, to maintain intracellular calcium homeostasis and regulate related biological processes. These interactions can vary by cell type and physiological state.
It mainly plays a role in the transport and regulation of intracellular calcium ions. It is responsible for discharging intracellular calcium ions to the outside of the cell and maintaining the balance of intracellular and extracellular calcium concentrations.
This protein is an ion pump with a basic structure consisting of multiple transmembrane helical segments, ATP binding sites and calcium binding sites.
Yes, mutated or abnormally expressed ATP2B1B protein has been implicated in several diseases, such as cardiac arrhythmias and neurological disorders.
Customer Reviews (3)
Write a reviewThe production process of ATP2B1B focuses on sustainable development. Through optimizing the production process and equipment, it realizes the maximum utilization of energy and resources and is very environmentally friendly.
Because the stability and reproducibility of ATP2B1B are impressive! Therefore, no matter what the environment, it can maintain stable performance, and the scientific research results are more reliable.
Due to the short half-life and high clearance characteristics of ATP2B1B, it can be better adapted to the treatment needs of patients with different ages and physiological states.
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