Biochemical characterization of P-type copper ATPases.

PubWeight™: 0.84‹?›

🔗 View Article (PMC 4179477)

Published in Biochem J on October 15, 2014

Authors

Giuseppe Inesi1, Rajendra Pilankatta2, Francesco Tadini-Buoninsegni3

Author Affiliations

1: *California Pacific Medical Center Research Institute, San Francisco, CA 94920, U.S.A.
2: †Department of Biochemistry and Molecular Biology, Central University of Kerala, Padennakkad (P.O), Nileshwar, Kasaragod-671 314, Kerala, India.
3: ‡Department of Chemistry "Ugo Schiff", University of Florence, 50019 Sesto Fiorentino, Italy.

Articles cited by this

Crystal structure of the calcium pump of sarcoplasmic reticulum at 2.6 A resolution. Nature (2000) 9.44

The Wilson disease gene is a putative copper transporting P-type ATPase similar to the Menkes gene. Nat Genet (1993) 5.97

Crystal structure of the sodium-potassium pump. Nature (2007) 5.12

Isolation of a candidate gene for Menkes disease and evidence that it encodes a copper-transporting ATPase. Nat Genet (1993) 4.93

The Wilson disease gene is a copper transporting ATPase with homology to the Menkes disease gene. Nat Genet (1993) 4.70

Evolution of substrate specificities in the P-type ATPase superfamily. J Mol Evol (1998) 4.14

Biochemistry of Na,K-ATPase. Annu Rev Biochem (2001) 4.00

Energy interconversion by the Ca2+-dependent ATPase of the sarcoplasmic reticulum. Annu Rev Biochem (1979) 3.82

Crystal structure of the sodium-potassium pump at 2.4 A resolution. Nature (2009) 3.49

Function and regulation of human copper-transporting ATPases. Physiol Rev (2007) 3.38

CPx-type ATPases: a class of P-type ATPases that pump heavy metals. Trends Biochem Sci (1996) 3.15

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. EMBO J (1996) 3.04

Biology, structure and mechanism of P-type ATPases. Nat Rev Mol Cell Biol (2004) 3.00

Phosphoryl transfer and calcium ion occlusion in the calcium pump. Science (2004) 2.69

Crystal structure of a copper-transporting PIB-type ATPase. Nature (2011) 2.51

P-type ATPases. Annu Rev Biophys (2011) 2.29

Organization of P-type ATPases: significance of structural diversity. Biochemistry (1995) 2.15

Identification of ion-selectivity determinants in heavy-metal transport P1B-type ATPases. J Membr Biol (2003) 2.14

Cellular accumulation of the anticancer agent cisplatin: a review. Br J Cancer (1993) 2.10

The structure and function of heavy metal transport P1B-ATPases. Biometals (2007) 1.97

Mechanism of calcium transport. Annu Rev Physiol (1985) 1.97

Characterization of the Wilson disease gene encoding a P-type copper transporting ATPase: genomic organization, alternative splicing, and structure/function predictions. Hum Mol Genet (1994) 1.88

Affinity gradients drive copper to cellular destinations. Nature (2010) 1.82

Metallochaperones and metal-transporting ATPases: a comparative analysis of sequences and structures. Genome Res (2002) 1.80

Trafficking of the copper-ATPases, ATP7A and ATP7B: role in copper homeostasis. Arch Biochem Biophys (2007) 1.79

Structure of a copper pump suggests a regulatory role for its metal-binding domain. Structure (2008) 1.74

Solution structure of the N-domain of Wilson disease protein: distinct nucleotide-binding environment and effects of disease mutations. Proc Natl Acad Sci U S A (2006) 1.72

Copper-transporting P-type adenosine triphosphatase (ATP7B) is associated with cisplatin resistance. Cancer Res (2000) 1.70

N-terminal domains of human copper-transporting adenosine triphosphatases (the Wilson's and Menkes disease proteins) bind copper selectively in vivo and in vitro with stoichiometry of one copper per metal-binding repeat. J Biol Chem (1997) 1.69

Mechanism of Cu+-transporting ATPases: soluble Cu+ chaperones directly transfer Cu+ to transmembrane transport sites. Proc Natl Acad Sci U S A (2008) 1.65

Copper transporters regulate the cellular pharmacology and sensitivity to Pt drugs. Crit Rev Oncol Hematol (2005) 1.61

Copper transport in mammalian cells: special care for a metal with special needs. J Biol Chem (2009) 1.60

How processing of aspartylphosphate is coupled to lumenal gating of the ion pathway in the calcium pump. Proc Natl Acad Sci U S A (2007) 1.55

Structure of the two transmembrane Cu+ transport sites of the Cu+ -ATPases. J Biol Chem (2008) 1.43

Structure of the ATP binding domain from the Archaeoglobus fulgidus Cu+-ATPase. J Biol Chem (2006) 1.41

Modulation of the cellular pharmacology of cisplatin and its analogs by the copper exporters ATP7A and ATP7B. Mol Pharmacol (2004) 1.41

Characterization of a thermophilic P-type Ag+/Cu+-ATPase from the extremophile Archaeoglobus fulgidus. J Biol Chem (2001) 1.38

Functional properties of the copper-transporting ATPase ATP7B (the Wilson's disease protein) expressed in insect cells. J Biol Chem (2001) 1.37

Functional roles of metal binding domains of the Archaeoglobus fulgidus Cu(+)-ATPase CopA. Biochemistry (2003) 1.31

Transport of cisplatin by the copper efflux transporter ATP7B. Mol Pharmacol (2007) 1.30

The distinct roles of the N-terminal copper-binding sites in regulation of catalytic activity of the Wilson's disease protein. J Biol Chem (2003) 1.23

Expression, purification, and metal binding properties of the N-terminal domain from the wilson disease putative copper-transporting ATPase (ATP7B). J Biol Chem (1997) 1.22

Role of the copper-binding domain in the copper transport function of ATP7B, the P-type ATPase defective in Wilson disease. J Biol Chem (1999) 1.22

Charge translocation by the Na+/K+-ATPase investigated on solid supported membranes: rapid solution exchange with a new technique. Biophys J (1999) 1.21

The transport mechanism of bacterial Cu+-ATPases: distinct efflux rates adapted to different function. Biometals (2011) 1.18

The regulation of catalytic activity of the menkes copper-translocating P-type ATPase. Role of high affinity copper-binding sites. J Biol Chem (2001) 1.14

Functional interactions of Cu-ATPase ATP7B with cisplatin and the role of ATP7B in the resistance of cells to the drug. J Biol Chem (2009) 1.12

Structure of the actuator domain from the Archaeoglobus fulgidus Cu(+)-ATPase. Biochemistry (2006) 1.10

The copper export pump ATP7B modulates the cellular pharmacology of carboplatin in ovarian carcinoma cells. Mol Pharmacol (2003) 1.10

The multi-layered regulation of copper translocating P-type ATPases. Biometals (2009) 1.06

The soluble metal-binding domain of the copper transporter ATP7B binds and detoxifies cisplatin. Biochem J (2009) 1.05

Domain organization and movements in heavy metal ion pumps: papain digestion of CopA, a Cu+-transporting ATPase. J Biol Chem (2007) 1.05

An NMR study of the interaction of the N-terminal cytoplasmic tail of the Wilson disease protein with copper(I)-HAH1. J Biol Chem (2009) 1.04

The role of copper transporters in the development of resistance to Pt drugs. J Inorg Biochem (2004) 1.03

Intermediate phosphorylation reactions in the mechanism of ATP utilization by the copper ATPase (CopA) of Thermotoga maritima. J Biol Chem (2008) 1.03

High yield heterologous expression of wild-type and mutant Cu+-ATPase (ATP7B, Wilson disease protein) for functional characterization of catalytic activity and serine residues undergoing copper-dependent phosphorylation. J Biol Chem (2009) 1.01

Membrane structure of CtrA3, a copper-transporting P-type-ATPase from Aquifex aeolicus. J Mol Biol (2008) 1.00

The mechanism of Cu+ transport ATPases: interaction with CU+ chaperones and the role of transient metal-binding sites. J Biol Chem (2012) 1.00

Chaperone-mediated Cu+ delivery to Cu+ transport ATPases: requirement of nucleotide binding. J Biol Chem (2009) 0.99

ATP dependent charge movement in ATP7B Cu+-ATPase is demonstrated by pre-steady state electrical measurements. FEBS Lett (2010) 0.97

Solution structures of the actuator domain of ATP7A and ATP7B, the Menkes and Wilson disease proteins. Biochemistry (2009) 0.96

Copper-transporting P-type ATPases use a unique ion-release pathway. Nat Struct Mol Biol (2013) 0.95

Nucleotide recognition by CopA, a Cu+-transporting P-type ATPase. EMBO J (2009) 0.95

Metal transport across biomembranes: emerging models for a distinct chemistry. J Biol Chem (2012) 0.93

Distinctive features of catalytic and transport mechanisms in mammalian sarco-endoplasmic reticulum Ca2+ ATPase (SERCA) and Cu+ (ATP7A/B) ATPases. J Biol Chem (2012) 0.91

The CXXC motifs in the metal binding domains are required for ATP7B to mediate resistance to cisplatin. J Inorg Biochem (2012) 0.91

Structural models of the human copper P-type ATPases ATP7A and ATP7B. Biol Chem (2012) 0.88

Reaction cycle of Thermotoga maritima copper ATPase and conformational characterization of catalytically deficient mutants. Biochemistry (2009) 0.87

Involvement of protein kinase D in expression and trafficking of ATP7B (copper ATPase). J Biol Chem (2010) 0.87

Comparative features of copper ATPases ATP7A and ATP7B heterologously expressed in COS-1 cells. Biochemistry (2010) 0.86

Ca(2+)/H (+) exchange, lumenal Ca(2+) release and Ca (2+)/ATP coupling ratios in the sarcoplasmic reticulum ATPase. J Cell Commun Signal (2013) 0.85

Translocation of platinum anticancer drugs by human copper ATPases ATP7A and ATP7B. Angew Chem Int Ed Engl (2013) 0.81