Proteoliposomes with the ability to transport Ca(2+) into the vesicles and hydrolyze phosphosubstrates on their surface.
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[1] A. Tas,et al. The use of physiological solutions or media in calcium phosphate synthesis and processing. , 2014, Acta biomaterialia.
[2] Dina Abdallah,et al. Fatty acid composition in matrix vesicles and in microvilli from femurs of chicken embryos revealed selective recruitment of fatty acids. , 2014, Biochemical and biophysical research communications.
[3] Kunqian Yu,et al. Characterizing the binding of annexin V to a lipid bilayer using molecular dynamics simulations , 2014, Proteins.
[4] M. Baptista,et al. Physical damage on giant vesicles membrane as a result of methylene blue photoirradiation. , 2014, Biophysical journal.
[5] P. Ciancaglini,et al. Effects of pH on the Production of Phosphate and Pyrophosphate by Matrix Vesicles’ Biomimetics , 2013, Calcified Tissue International.
[6] D. Magne,et al. Isolation and characteristics of matrix vesicles. , 2013, Methods in molecular biology.
[7] T. Kirsch. Biomineralization—An Active or Passive Process? , 2012, Connective tissue research.
[8] M. Colhone,et al. Proteoliposomes in nanobiotechnology , 2012, Biophysical Reviews.
[9] P. Ciancaglini,et al. Thermodynamic properties and characterization of proteoliposomes rich in microdomains carrying alkaline phosphatase. , 2011, Biophysical chemistry.
[10] R. Wuthier,et al. Matrix vesicles: structure, composition, formation and function in calcification. , 2011, Frontiers in bioscience.
[11] M. McKee,et al. Loss of Skeletal Mineralization by the Simultaneous Ablation of PHOSPHO1 and Alkaline Phosphatase Function: A Unified Model of the Mechanisms of Initiation of Skeletal Calcification , 2010, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[12] E. Golub. Biomineralization and matrix vesicles in biology and pathology , 2011, Seminars in Immunopathology.
[13] P. Ciancaglini,et al. The effect of cholesterol on the reconstitution of alkaline phosphatase into liposomes. , 2010, Biophysical chemistry.
[14] T. Yen,et al. Measurement of the binding parameters of annexin derivative-erythrocyte membrane interactions. , 2010, Analytical biochemistry.
[15] K. R. Daghastanli,et al. Interaction of 10-(octyloxy) decyl-2-(trimethylammonium) ethyl phosphate with mimetic membranes and cytotoxic effect on leukemic cells. , 2010, Biochimica et biophysica acta.
[16] P. Ciancaglini,et al. Proteoliposomes as matrix vesicles' biomimetics to study the initiation of skeletal mineralization. , 2010, Brazilian journal of medical and biological research = Revista brasileira de pesquisas medicas e biologicas.
[17] P. Ciancaglini,et al. Proteoliposomes Harboring Alkaline Phosphatase and Nucleotide Pyrophosphatase as Matrix Vesicle Biomimetics , 2010, The Journal of Biological Chemistry.
[18] P. Ciancaglini,et al. Kinetic Analysis of Substrate Utilization by Native and TNAP-, NPP1-, or PHOSPHO1-Deficient Matrix Vesicles , 2009, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[19] Seamus J. Martin,et al. Expression, purification and use of recombinant annexin V for the detection of apoptotic cells , 2009, Nature Protocols.
[20] R. Buchet,et al. Matrix vesicles originate from apical membrane microvilli of mineralizing osteoblast‐like Saos‐2 cells , 2009, Journal of cellular biochemistry.
[21] R. Lipowsky,et al. Morphological transitions of vesicles induced by alternating electric fields. , 2008, Biophysical journal.
[22] M. Masserini,et al. Membrane features and activity of GPI-anchored enzymes: alkaline phosphatase reconstituted in model membranes. , 2008, Biochemistry.
[23] F. A. Leone,et al. Rat osseous plate alkaline phosphatase as Langmuir monolayer--an infrared study at the air-water interface. , 2008, Journal of colloid and interface science.
[24] C. Demetzos. Differential Scanning Calorimetry (DSC): A Tool to Study the Thermal Behavior of Lipid Bilayers and Liposomal Stability , 2008, Journal of liposome research.
[25] P. Ciancaglini,et al. Culture of osteogenic cells from human alveolar bone: A useful source of alkaline phosphatase , 2007, Cell biology international.
[26] C. le Grimellec,et al. Remodeling of ordered membrane domains by GPI-anchored intestinal alkaline phosphatase. , 2007, Langmuir : the ACS journal of surfaces and colloids.
[27] P. Ciancaglini,et al. Membrane-bound alkaline phosphatase from ectopic mineralization and rat bone marrow cell culture. , 2007, Comparative biochemistry and physiology. Part A, Molecular & integrative physiology.
[28] E. Eanes,et al. Liposome-Mediated calcium phosphate formation in metastable solutions , 1985, Calcified Tissue International.
[29] P. Ciancaglini,et al. Contribution of matrix vesicles and alkaline phosphatase to ectopic bone formation. , 2006, Brazilian journal of medical and biological research = Revista brasileira de pesquisas medicas e biologicas.
[30] K. Boesze-Battaglia,et al. Chondrocytes utilize a cholesterol-dependent lipid translocator to externalize phosphatidylserine. , 2006, Biochemistry.
[31] J. Millán. Alkaline Phosphatases , 2006, Purinergic Signalling.
[32] Le Zhang,et al. Phosphodiesterase Activity of Alkaline Phosphatase in ATP-initiated Ca2+ and Phosphate Deposition in Isolated Chicken Matrix Vesicles* , 2005, Journal of Biological Chemistry.
[33] José Augusto Baranauskas,et al. SigrafW: An easy‐to‐use program for fitting enzyme kinetic data , 2005, Biochemistry and molecular biology education : a bimonthly publication of the International Union of Biochemistry and Molecular Biology.
[34] P. Ciancaglini,et al. Na,K-ATPase reconstituted in liposomes: effects of lipid composition on hydrolytic activity and enzyme orientation. , 2005, Colloids and surfaces. B, Biointerfaces.
[35] F. A. Leone,et al. Effect of molecular surface packing on the enzymatic activity modulation of an anchored protein on phospholipid Langmuir monolayers. , 2005, Langmuir : the ACS journal of surfaces and colloids.
[36] Rumiana Dimova,et al. Electro-deformation and poration of giant vesicles viewed with high temporal resolution. , 2005, Biophysical journal.
[37] T. Kirsch. Annexins - their role in cartilage mineralization. , 2005, Frontiers in bioscience : a journal and virtual library.
[38] F. A. Leone,et al. Characterization of the phosphatidylinositol-specific phospholipase C-released form of rat osseous plate alkaline phosphatase and its possible significance on endochondral ossification , 1995, Molecular and Cellular Biochemistry.
[39] H. Anderson. Matrix vesicles and calcification , 2003, Current rheumatology reports.
[40] Le Zhang,et al. The roles of annexins and alkaline phosphatase in mineralization process. , 2003, Acta biochimica Polonica.
[41] P. Ciancaglini,et al. Erythrocyte ghost cell-alkaline phosphatase: construction and characterization of a vesicular system for use in biomineralization studies. , 2002, Biochimica et biophysica acta.
[42] K. R. Daghastanli,et al. Construction of an alkaline phosphatase-liposome system: a tool for biomineralization study. , 2002, The international journal of biochemistry & cell biology.
[43] F. Ronzon,et al. Behavior of a GPI-anchored protein in phospholipid monolayers at the air-water interface. , 2002, Biochimica et biophysica acta.
[44] A. Arsenault,et al. Changes in Phospholipid Extractability and Composition Accompany Mineralization of Chicken Growth Plate Cartilage Matrix Vesicles* , 2002, The Journal of Biological Chemistry.
[45] O. G. Mouritsen,et al. Association of acylated cationic decapeptides with dipalmitoylphosphatidylserine-dipalmitoylphosphatidylcholine lipid membranes. , 2001, Chemistry and physics of lipids.
[46] A. Renault,et al. Interaction of the third helix of Antennapedia homeodomain and a phospholipid monolayer, studied by ellipsometry and PM-IRRAS at the air-water interface. , 2000, Biochimica et biophysica acta.
[47] N. Camacho,et al. Isolation of calcifiable vesicles from human atherosclerotic aortas. , 1999, Atherosclerosis.
[48] I. Schreibman,et al. Interaction between terminal complement proteins C5b-7 and anionic phospholipids. , 1998, Blood.
[49] Analyse Your Tweets. Connect. , 2020, Nature genetics.
[50] B. Seaton,et al. Domain structure and molecular conformation in annexin V/1,2-dimyristoyl-sn-glycero-3-phosphate/Ca2+ aqueous monolayers: a Brewster angle microscopy/infrared reflection-absorption spectroscopy study. , 1998, Biophysical journal.
[51] R. Huber,et al. Three-dimensional structure of annexins , 1997, Cellular and Molecular Life Sciences CMLS.
[52] M. Pacifici,et al. Annexin V-mediated calcium flux across membranes is dependent on the lipid composition: implications for cartilage mineralization. , 1997, Biochemistry.
[53] L. N. Wu,et al. Physicochemical Characterization of the Nucleational Core of Matrix Vesicles* , 1997, The Journal of Biological Chemistry.
[54] B. Genge,et al. In Situ Levels of Intracellular Ca2+ and pH in Avian Growth Plate Cartilage , 1997, Clinical orthopaedics and related research.
[55] F. A. Leone,et al. Allosteric modulation by ATP, calcium and magnesium ions of rat osseous plate alkaline phosphatase. , 1993, Biochimica et biophysica acta.
[56] H. Hemker,et al. Clustering of lipid-bound annexin V may explain its anticoagulant effect. , 1992, The Journal of biological chemistry.
[57] D. Schlaepfer,et al. Inhibition of protein kinase C by annexin V. , 1992, Biochemistry.
[58] R. Huber,et al. The crystal and molecular structure of human annexin V, an anticoagulant protein that binds to calcium and membranes. , 1990, The EMBO journal.
[59] E. Dennis,et al. Binding and inhibition studies on lipocortins using phosphatidylcholine vesicles and phospholipase A2 from snake venom, pancreas, and a macrophage-like cell line. , 1990, The Journal of biological chemistry.
[60] I. Maurer-Fogy,et al. Vascular anticoagulant β: a novel human Ca2+/phospholipid binding protein that inhibits coagulation and phospholipase A2 activity , 1989 .
[61] B. Boyan,et al. Role of lipids in calcification of cartilage , 1989, The Anatomical record.
[62] R. McElhaney. Differential scanning calorimetric studies of lipid-protein interactions in model membrane systems. , 1986, Biochimica et biophysica acta.
[63] Faraday Discuss , 1985 .
[64] R. McElhaney. The use of differential scanning calorimetry and differential thermal analysis in studies of model and biological membranes. , 1982, Chemistry and physics of lipids.
[65] D. Papahadjopoulos,et al. Effects of proteins on thermotropic phase transitions of phospholipid membranes. , 1975, Biochimica et biophysica acta.
[66] Zainul Abidin,et al. Scan , 2020, Mind and mental health magazine.
[67] E. Hartree,et al. Determination of protein: a modification of the Lowry method that gives a linear photometric response. , 1972, Analytical biochemistry.