Correlation Engine 2.0
Clear Search sequence regions
Bookmark Forward Export SNPs

QuickView for Atp1a1 (gene)


Gene Symbol:
ATP1A1 Homo sapiens Homo sapiens
Full name:
ATPase Na+/K+ transporting subunit alpha 1
Synonyms:
sodium/potassium-transporting ATPase subunit alpha-1, ATPase, Na+/K+ transporting, alpha 1 polypeptide, Na(+)/K(+) ATPase alpha-1 subunit, Na+/K+ ATPase 1, Na, K-ATPase, alpha-A catalytic polypeptide, Na,K-ATPase alpha-1 subunit, Na,K-ATPase catalytic subunit alpha-A protein, sodium pump subunit alpha-1, sodium-potassium ATPase catalytic subunit alpha-1, sodium-potassium-ATPase, alpha 1 polypeptide
Genomic Location:
Chr 1: 116717359-116748919
Description:
The protein encoded by this gene belongs to the family of P-type cation transport ATPases, and to the subfamily of Na+/K+ -ATPases. Na+/K+ -ATPase is an integral membrane protein responsible for establishing and maintaining the electrochemical gradients of Na and K ions across the plasma membrane. These gradients are essential for osmoregulation, f...
Orthologs:
Mus musculus Rattus norvegicus Macaca mulatta Bos taurus Gallus gallus Canis lupus familiaris Pan troglodytes Danio rerio
External Links:
Entrez Gene
Transcription Factor
Binding Sites:
miRNA binding sites
(Source: TargetScan):
Cytogenetic Map:
chr 1
1p13.1





GO Molecular Function

potassium-transporting ATPase activity | phosphatidylinositol 3-kinase binding | kinase binding | ADP binding | ATPase activity, coupled to transmembrane movement of substances | cation binding | protein kinase binding | ATPase activity, coupled to transmembrane movement of ions, phosphorylative mechanism | enzyme binding | ribonucleotide binding | transmembrane transporter activity | lipid binding | nucleotide binding | phosphatase activity | hydrolase activity | potassium ion binding | carbohydrate derivative binding | ATPase activity | pyrophosphatase activity | catalytic activity | chaperone binding | steroid hormone binding | protein domain specific binding | ATP binding | cytoskeletal protein binding | anion binding | adenyl nucleotide binding | nucleoside-triphosphatase activity | cation transmembrane transporter activity | ATPase activity, coupled | cation-transporting ATPase activity | active transmembrane transporter activity | purine nucleotide binding | transporter activity | hydrolase activity, acting on ester bonds | ion transmembrane transporter activity | ion binding | ankyrin binding | organic cyclic compound binding | hormone binding | purine ribonucleoside triphosphate binding | protein binding | metal ion transmembrane transporter activity | potassium ion transmembrane transporter activity | phosphoric ester hydrolase activity | hydrolase activity, acting on acid anhydrides | sodium ion transmembrane transporter activity | sodium ion binding | ATPase coupled ion transmembrane transporter activity | inorganic cation transmembrane transporter activity | purine ribonucleotide binding | monovalent inorganic cation transmembrane transporter activity | adenyl ribonucleotide binding | drug binding | sodium:potassium-exchanging ATPase activity | steroid binding | metal ion binding | heterocyclic compound binding | hydrolase activity, acting on acid anhydrides, in phosphorus-containing anhydrides | small molecule binding

GO Biological Process

positive regulation of heart contraction | potassium-transporting ATPase activity | ATP hydrolysis coupled cation transmembrane transport | regulation of muscle system process | heart process | positive regulation of blood circulation | actin filament-based process | regulation of localization | regulation of sodium ion transport | ATPase activity, coupled to transmembrane movement of substances | establishment of localization | response to hormone | negative regulation of cellular process | response to drug | cellular chemical homeostasis | relaxation of cardiac muscle | cellular process | proton transmembrane transport | localization | cellular homeostasis | regulation of steroid hormone biosynthetic process | metal ion transport | cellular sodium ion homeostasis | establishment or maintenance of transmembrane electrochemical gradient | negative regulation of lipid biosynthetic process | sodium ion export across plasma membrane | ATPase activity, coupled to transmembrane movement of ions, phosphorylative mechanism | negative regulation of cellular metabolic process | actin filament-based movement | regulation of cellular process | cellular response to lipid | membrane repolarization during action potential | regulation of metabolic process | transmembrane transporter activity | heart contraction | actin-mediated cell contraction | phosphatase activity | muscle contraction | response to stimulus | cellular response to mechanical stimulus | ATP hydrolysis coupled transmembrane transport | regulation of blood circulation | regulation of cardiac muscle cell contraction | negative regulation of glucocorticoid biosynthetic process | cellular response to organic cyclic compound | blood circulation | negative regulation of metabolic process | regulation of steroid biosynthetic process | regulation of steroid metabolic process | metal ion homeostasis | cell communication by electrical coupling | regulation of membrane potential | cellular response to hormone stimulus | sodium ion homeostasis | phosphorus metabolic process | relaxation of muscle | membrane hyperpolarization | potassium ion import | regulation of muscle contraction | ATP hydrolysis coupled ion transmembrane transport | regulation of hormone levels | ion transmembrane transport | response to lipid | regulation of blood pressure | sodium ion transport | cation transmembrane transporter activity | cellular ion homeostasis | cation-transporting ATPase activity | monovalent inorganic cation transport | active transmembrane transporter activity | regulation of cellular component movement | cellular potassium ion transport | cardiac muscle cell action potential involved in contraction | regulation of the force of heart contraction | ion transmembrane transporter activity | potassium ion transport | ATP hydrolysis coupled proton transport | regulation of hormone metabolic process | cell communication by electrical coupling involved in cardiac conduction | regulation of heart contraction | cation homeostasis | phosphate-containing compound metabolic process | regulation of striated muscle contraction | cellular cation homeostasis | cell communication | regulation of cellular metabolic process | cardiac muscle cell contraction | potassium ion homeostasis | regulation of cardiac muscle contraction | potassium ion import across plasma membrane | homeostatic process | striated muscle contraction | regulation of lipid biosynthetic process | cation transmembrane transport | regulation of glucocorticoid biosynthetic process | response to organic substance | cellular potassium ion homeostasis | response to glycoside | response to mechanical stimulus | import into cell | metal ion transmembrane transporter activity | potassium ion transmembrane transporter activity | negative regulation of lipid metabolic process | metabolic process | negative regulation of steroid hormone biosynthetic process | cell communication involved in cardiac conduction | positive regulation of striated muscle contraction | negative regulation of heart contraction | chemical homeostasis | positive regulation of muscle contraction | sodium ion transmembrane transport | negative regulation of biosynthetic process | energy coupled proton transmembrane transport, against electrochemical gradient | membrane repolarization during cardiac muscle cell action potential | ion homeostasis | sodium ion transmembrane transporter activity | inorganic cation transmembrane transport | cellular response to steroid hormone stimulus | membrane repolarization | negative regulation of hormone biosynthetic process | ATPase coupled ion transmembrane transporter activity | dephosphorylation | transmembrane transport | action potential | signaling | inorganic cation transmembrane transporter activity | response to organic cyclic compound | cellular monovalent inorganic cation homeostasis | monovalent inorganic cation transmembrane transporter activity | cation transport | regulation of ion transport | negative regulation of steroid metabolic process | sodium:potassium-exchanging ATPase activity | inorganic cation import across plasma membrane | regulation of transport | cardiac muscle cell action potential | potassium ion transmembrane transport | cellular metal ion homeostasis | regulation of lipid metabolic process | regulation of actin filament-based process | ion transport | cardiac muscle contraction | cellular metabolic process | regulation of glucocorticoid metabolic process | cellular response to organic substance | response to steroid hormone | negative regulation of steroid biosynthetic process | muscle system process | cardiac conduction | regulation of hormone biosynthetic process | multicellular organismal process

GO Cellular Component

intercalated disc | integral component of membrane | intracellular membrane-bounded organelle | sarcolemma | synapse | catalytic complex | apical plasma membrane | cytoplasmic vesicle | cell | plasma membrane protein complex | intrinsic component of membrane | cytoplasm | intracellular organelle | endoplasmic reticulum | membrane microdomain | apical part of cell | melanosome | cell-cell junction | cell-cell contact zone | cation-transporting ATPase complex | Golgi apparatus | protein-containing complex | endomembrane system | sodium:potassium-exchanging ATPase complex | postsynapse | plasma membrane | membrane raft | vesicle | postsynaptic density | extracellular exosome | asymmetric synapse | integral component of plasma membrane | T-tubule | endosome | extracellular region | membrane-bounded organelle | extracellular vesicle | organelle | postsynaptic specialization | extracellular space | cell periphery | basolateral plasma membrane | transmembrane transporter complex | ATPase complex | plasma membrane raft | intracellular vesicle | intracellular | cell junction | myelin sheath | caveola | membrane | intrinsic component of plasma membrane