Calcium and copper transport ATPases: analogies and diversities in transduction and signaling mechanisms
Explore this paper's citation graph
Summary
The calcium transport ATPase and the copper transport ATPases are members of the P-ATPase family and retain an analogous catalytic mechanism for ATP utilization, including intermediate phosphoryl transfer to a conserved aspartyl residue, vectorial displacement of bound cation, and final hydrolytic cleavage of Pi.
- Type
- article
- Published
- 2011-06-09
- Cited by
- 10
- References
- 74
- Access
- Open access
- OpenAlex
- https://openalex.org/W21656155
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:12821959
Keywords
Political science
References
- Downregulation of Ca2+ signalling proteins in cardiac hypertrophy.
- Ligand‐regulated transport of the Menkes copper P‐type ATPase efflux pump from the Golgi apparatus to the plasma membrane: a novel mechanism of regulated trafficking.
- Identification of Ion-Selectivity Determinants in Heavy-Metal Transport P1B-type ATPases
- Multidrug efflux pumps: Substrate selection in ATP‐binding cassette multidrug efflux pumps – first come, first served?
- Sarcoplasmic reticulum calcium pump in cardiac and slow twitch skeletal muscle but not fast twitch skeletal muscle undergoes phosphorylation by endogenous and exogenous Ca2+/calmodulin-dependent protein kinase. Characterization of optimal conditions for calcium pump phosphorylation.
- Inhibition of the sarcoplasmic reticulum Ca2+ transport ATPase by thapsigargin at subnanomolar concentrations.
- Copper-induced trafficking of the Cu-ATPases: A key mechanism for copper homeostasis
- Cooperative calcium binding and ATPase activation in sarcoplasmic reticulum vesicles.
- Functional consequences of alterations to Glu309, Glu771, and Asp800 in the Ca(2+)-ATPase of sarcoplasmic reticulum.
- Hepatocyte-specific localization and copper-dependent trafficking of the Wilson's disease protein in the liver.
- Coupling of Phosphorylation to Electron and Hydrogen Transfer by a Chemi-Osmotic type of Mechanism
- Mechanism of Cu+-transporting ATPases: Soluble Cu+ chaperones directly transfer Cu+ to transmembrane transport sites
- Effects of thapsigargin and phenylephrine on calcineurin and protein kinase C signaling functions in cardiac myocytes.
- Amino-acid sequence of a Ca2++Mg2+-dependent ATPase from rabbit muscle sarcoplasmic reticulum, deduced from its complementary DNA sequence
- Structure of the ATP Binding Domain from the Archaeoglobus fulgidus Cu+-ATPase*
- NH2-terminal signals in ATP7B Cu-ATPase mediate its Cu-dependent anterograde traffic in polarized hepatic cells.
- Phosphorylation regulates copper-responsive trafficking of the Menkes copper transporting P-type ATPase.
- Reaction Cycle of Thermotoga maritima Copper ATPase and Conformational Characterization of Catalytically Deficient Mutants
- Direct Demonstration of Ca2+ Binding Defects in Sarco-Endoplasmic Reticulum Ca2+ ATPase Mutants Overexpressed in COS-1 Cells Transfected with Adenovirus Vectors*
- An NMR Study of the Interaction of the N-terminal Cytoplasmic Tail of the Wilson Disease Protein with Copper(I)-HAH1*
Cited by
- Caractérisation génétique, biochimique et structurale de l’ATP synthase des mycobactéries, la cible d’un nouvel antituberculeux de la famille des diarylquinolines
- Characterization of the PIB-Type ATPases Present in Thermus thermophilus
- Entropy facilitated active transport
- The characterisation of adipose derived stem cells on coralline scaffolds for bone tissue engineering
- A phthalimide-based ESIPT fluorescent probe for sensitive detection of Cu2+ in complete aqueous solution
- Entropy and its significance in transport of ions through the cell membrane
- Protein Kinases in Copper Homeostasis: A Review on Cu+-ATPase Modulation
- Leishmania major-induced alteration of host cellular and systemic copper homeostasis drives the fate of infection
- Bacterial Calcium Binding Proteins
- Recording of Pump and Transporter Activity Using Solid‐Supported Membranes (SSM‐Based Electrophysiology)
Related papers
No related papers recorded.