Skip to main content
Top
Published in: Malaria Journal 1/2010

Open Access 01-12-2010 | Research

Structure, localization and histone binding properties of nuclear-associated nucleosome assembly protein from Plasmodium falciparum

Authors: Jasmita Gill, Anuj Kumar, Manickam Yogavel, Hassan Belrhali, SK Jain, Melanie Rug, Monica Brown, Alexander G Maier, Amit Sharma

Published in: Malaria Journal | Issue 1/2010

Login to get access

Abstract

Background

Nucleosome assembly proteins (NAPs) are histone chaperones that are crucial for the shuttling and incorporation of histones into nucleosomes. NAPs participate in the assembly and disassembly of nucleosomes thus contributing to chromatin structure organization. The human malaria parasite Plasmodium falciparum contains two nucleosome assembly proteins termed PfNapL and PfNapS.

Methods

Three-dimensional crystal structure of PfNapS has been determined and analysed. Gene knockout and localization studies were also performed on PfNapS using transfection studies. Fluorescence spectroscopy was performed to identify histone-binding sites on PfNapS. Extensive sequence and structural comparisons were done with the crystal structures available for NAP/SET family of proteins.

Results

Crystal structure of PfNapS shares structural similarity with previous structures from NAP/SET family. Failed attempts to knock-out the gene for PfNapS from malaria parasite suggest essentiality in the parasite. GFP-fused PfNapS fusion protein targeting indicates cellular localization of PfNapS in the parasite nucleus. Fluorescence spectroscopy data suggest that PfNapS interacts with core histones (tetramer, octamer, H3, H4, H2A and H2B) at a different site from its interaction with linker histone H1. This analysis illustrates two regions on the PfNapS dimer as the possible sites for histone recognition.

Conclusions

This work presents a thorough analysis of the structural, functional and regulatory attributes of PfNapS from P. falciparum with respect to previously studied histone chaperones.
Appendix
Available only for authorised users
Literature
1.
go back to reference Luger K, Maeder AW, Richmond RK, Sargent DF, Richmond TJ: X-ray structure of the nucleosome core particle at 2.8 Å resolution. Nature. 1997, 389: 251-259. 10.1038/38444.CrossRefPubMed Luger K, Maeder AW, Richmond RK, Sargent DF, Richmond TJ: X-ray structure of the nucleosome core particle at 2.8 Å resolution. Nature. 1997, 389: 251-259. 10.1038/38444.CrossRefPubMed
2.
go back to reference Krude T: Chromatin assembly during DNA replication in somatic cells. Eur J Biochem. 1999, 263: 1-5. 10.1046/j.1432-1327.1999.00508.x.CrossRefPubMed Krude T: Chromatin assembly during DNA replication in somatic cells. Eur J Biochem. 1999, 263: 1-5. 10.1046/j.1432-1327.1999.00508.x.CrossRefPubMed
3.
go back to reference Eitoku M, Sato L, Senda T, Horikoshi M: Histone chaperones: 30 years from isolation to elucidation of the mechanisms of nucleosome assembly and disassembly. Cell Mol Life Sci. 2008, 65: 414-44. 10.1007/s00018-007-7305-6.CrossRefPubMed Eitoku M, Sato L, Senda T, Horikoshi M: Histone chaperones: 30 years from isolation to elucidation of the mechanisms of nucleosome assembly and disassembly. Cell Mol Life Sci. 2008, 65: 414-44. 10.1007/s00018-007-7305-6.CrossRefPubMed
4.
go back to reference Snow RW, Guerra CA, Abdisalan MN, Hla YM, Simon IH: The global distribution of clinical episodes of Plasmodium falciparum malaria. Nature. 2005, 434: 214-217. 10.1038/nature03342.PubMedCentralCrossRefPubMed Snow RW, Guerra CA, Abdisalan MN, Hla YM, Simon IH: The global distribution of clinical episodes of Plasmodium falciparum malaria. Nature. 2005, 434: 214-217. 10.1038/nature03342.PubMedCentralCrossRefPubMed
5.
go back to reference Chandra BR, Olivieri A, Silvestrini F, Alano P, Sharma A: Biochemical characterization of the two nucleosome assembly proteins from Plasmodium falciparum. Mol Biochem Parasitol. 2005, 142: 237-247. 10.1016/j.molbiopara.2005.04.006.CrossRefPubMed Chandra BR, Olivieri A, Silvestrini F, Alano P, Sharma A: Biochemical characterization of the two nucleosome assembly proteins from Plasmodium falciparum. Mol Biochem Parasitol. 2005, 142: 237-247. 10.1016/j.molbiopara.2005.04.006.CrossRefPubMed
6.
go back to reference Navadgi MV, Chandra BR, Mishra PC, Sharma A: The two Plasmodium falciparum nucleosome assembly proteins play distinct roles in histone transport and chromatin assembly. J Biol Chem. 2006, 281: 16978-16984. 10.1074/jbc.M602243200.CrossRefPubMed Navadgi MV, Chandra BR, Mishra PC, Sharma A: The two Plasmodium falciparum nucleosome assembly proteins play distinct roles in histone transport and chromatin assembly. J Biol Chem. 2006, 281: 16978-16984. 10.1074/jbc.M602243200.CrossRefPubMed
7.
go back to reference Gill J, Yogavel M, Kumar A, Belrhali H, Jain SK, Rug M, Brown M, Maier AG, Sharma A: Crystal structure of malaria parasite nucleosome assembly protein: Distinct Modes Of Protein Localization And Histone Recognition. J Biol Chem. 2009, 284: 10076-10087. 10.1074/jbc.M808633200.PubMedCentralCrossRefPubMed Gill J, Yogavel M, Kumar A, Belrhali H, Jain SK, Rug M, Brown M, Maier AG, Sharma A: Crystal structure of malaria parasite nucleosome assembly protein: Distinct Modes Of Protein Localization And Histone Recognition. J Biol Chem. 2009, 284: 10076-10087. 10.1074/jbc.M808633200.PubMedCentralCrossRefPubMed
8.
go back to reference Yogavel M, Gill J, Sharma A: Iodide-SAD, SIR and SIRAS phasing for structure solution of a nucleosome assembly protein. Acta Crystallogr D Biol Crystallogr. 2009, 65: 618-612. 10.1107/S0907444909013171.CrossRefPubMed Yogavel M, Gill J, Sharma A: Iodide-SAD, SIR and SIRAS phasing for structure solution of a nucleosome assembly protein. Acta Crystallogr D Biol Crystallogr. 2009, 65: 618-612. 10.1107/S0907444909013171.CrossRefPubMed
10.
go back to reference Muto S, Senda M, Akai Y, Sato L, Suzuki T, Nagai R, Senda T, Horikoshi M: Relationship between the structure of SET/TAF-Iβ/INHAT and its histone chaperone activity. Proc Natl Acad Sci USA. 2007, 104: 4285-4290. 10.1073/pnas.0603762104.PubMedCentralCrossRefPubMed Muto S, Senda M, Akai Y, Sato L, Suzuki T, Nagai R, Senda T, Horikoshi M: Relationship between the structure of SET/TAF-Iβ/INHAT and its histone chaperone activity. Proc Natl Acad Sci USA. 2007, 104: 4285-4290. 10.1073/pnas.0603762104.PubMedCentralCrossRefPubMed
11.
go back to reference Tang Y, Meeth K, Jiang E, Luo C, Marmorstein R: Structure of Vps75 and implications for histone chaperone function. Proc Natl Acad Sci USA. 2008, 105: 12206-12211. 10.1073/pnas.0802393105.PubMedCentralCrossRefPubMed Tang Y, Meeth K, Jiang E, Luo C, Marmorstein R: Structure of Vps75 and implications for histone chaperone function. Proc Natl Acad Sci USA. 2008, 105: 12206-12211. 10.1073/pnas.0802393105.PubMedCentralCrossRefPubMed
12.
go back to reference Berndsen CE, Tsubota T, Lindner SE, Lee S, Holton JM, Kaufman PD, Keck JL, Denu JM: Molecular functions of the histone acetyltransferase chaperone complex Rtt109-Vps75. Nat Struct Mol Biol. 2008, 948-956. 10.1038/nsmb.1459. Berndsen CE, Tsubota T, Lindner SE, Lee S, Holton JM, Kaufman PD, Keck JL, Denu JM: Molecular functions of the histone acetyltransferase chaperone complex Rtt109-Vps75. Nat Struct Mol Biol. 2008, 948-956. 10.1038/nsmb.1459.
13.
go back to reference McPherson A: Current approaches to macromolecular crystallization. Eur J Biochem. 1990, 189: 1-23. 10.1111/j.1432-1033.1990.tb15454.x.CrossRefPubMed McPherson A: Current approaches to macromolecular crystallization. Eur J Biochem. 1990, 189: 1-23. 10.1111/j.1432-1033.1990.tb15454.x.CrossRefPubMed
14.
go back to reference Otwinowski Z, Minor W: Processing of X-ray diffraction data collected in oscillation mode. Methods Enzymol. 1997, 276: 307-326. full_text.CrossRef Otwinowski Z, Minor W: Processing of X-ray diffraction data collected in oscillation mode. Methods Enzymol. 1997, 276: 307-326. full_text.CrossRef
15.
go back to reference Vonrhein C, Blanc E, Roversi P, Bricogne G: Automated structure solution with autoSHARP. Methods Mol Biol. 2007, 364: 215-230.PubMed Vonrhein C, Blanc E, Roversi P, Bricogne G: Automated structure solution with autoSHARP. Methods Mol Biol. 2007, 364: 215-230.PubMed
16.
go back to reference Adams PD, Grosse-Kunstleve RW, Hung LW, Ioerger TR, McCoy AJ, Moriarty NW, Read RJ, Sacchettini JC, Sauter NK, Terwilliger TC: PHENIX: building new software for automated crystallographic structure determination. Acta Cryst Sect D. 2002, 58: 1948-1954. 10.1107/S0907444902016657.CrossRef Adams PD, Grosse-Kunstleve RW, Hung LW, Ioerger TR, McCoy AJ, Moriarty NW, Read RJ, Sacchettini JC, Sauter NK, Terwilliger TC: PHENIX: building new software for automated crystallographic structure determination. Acta Cryst Sect D. 2002, 58: 1948-1954. 10.1107/S0907444902016657.CrossRef
17.
go back to reference Emsley P, Cowtan K: Coot: model-building tools for molecular graphics. Acta Cryst Sect D. 2004, 60: 2126-2132. 10.1107/S0907444904019158.CrossRef Emsley P, Cowtan K: Coot: model-building tools for molecular graphics. Acta Cryst Sect D. 2004, 60: 2126-2132. 10.1107/S0907444904019158.CrossRef
18.
go back to reference Brunger AT, Adams PD, Clore GM, Gros P, Grosse-Kunstleve RW, Kuszewski JS, Jiang J, Nilges N, Pannu NS, Read RJ, Rice LM, Simonson T, Warren GL: Crystallography & NMR system: A new software suite for macromolecular structure determination. Acta Cryst Sect D. 1998, 54: 905-921. 10.1107/S0907444998003254.CrossRef Brunger AT, Adams PD, Clore GM, Gros P, Grosse-Kunstleve RW, Kuszewski JS, Jiang J, Nilges N, Pannu NS, Read RJ, Rice LM, Simonson T, Warren GL: Crystallography & NMR system: A new software suite for macromolecular structure determination. Acta Cryst Sect D. 1998, 54: 905-921. 10.1107/S0907444998003254.CrossRef
19.
go back to reference Laskowski RA, MacArthur MW, Moss DS, Thornton JM: PROCHECK : a program to check the stereochemical quality of protein structures. J Appl Crystallography. 1993, 26: 283-291. 10.1107/S0021889892009944.CrossRef Laskowski RA, MacArthur MW, Moss DS, Thornton JM: PROCHECK : a program to check the stereochemical quality of protein structures. J Appl Crystallography. 1993, 26: 283-291. 10.1107/S0021889892009944.CrossRef
20.
go back to reference Pettersen EF, Goddard TD, Huang CC, Couch GS, Greenblatt DM, Meng EC, Ferrin TE: UCSF Chimera-a visualization system for exploratory research and analysis. J Comp Chem. 2004, 25: 1605-1612. 10.1002/jcc.20084.CrossRef Pettersen EF, Goddard TD, Huang CC, Couch GS, Greenblatt DM, Meng EC, Ferrin TE: UCSF Chimera-a visualization system for exploratory research and analysis. J Comp Chem. 2004, 25: 1605-1612. 10.1002/jcc.20084.CrossRef
21.
go back to reference Kleywegt GJ: Use of non-crystallographic symmetry in protein structure refinement. Acta Cryst Sect D. 1996, 52: 842-857. 10.1107/S0907444995016477.CrossRef Kleywegt GJ: Use of non-crystallographic symmetry in protein structure refinement. Acta Cryst Sect D. 1996, 52: 842-857. 10.1107/S0907444995016477.CrossRef
22.
go back to reference Nair R, Rost B: Mimicking cellular sorting improves prediction of subcellular localization. J Mol Biol. 2005, 348: 85-100. 10.1016/j.jmb.2005.02.025.CrossRefPubMed Nair R, Rost B: Mimicking cellular sorting improves prediction of subcellular localization. J Mol Biol. 2005, 348: 85-100. 10.1016/j.jmb.2005.02.025.CrossRefPubMed
23.
go back to reference Rug M, Prescott SW, Fernandez KM, Cooke BM, Cowman AF: The role of KAHRP domains in knob formation and cytoadherence of P. falciparum-infected human erythrocytes. Blood. 2006, 108: 370-378. 10.1182/blood-2005-11-4624.PubMedCentralCrossRefPubMed Rug M, Prescott SW, Fernandez KM, Cooke BM, Cowman AF: The role of KAHRP domains in knob formation and cytoadherence of P. falciparum-infected human erythrocytes. Blood. 2006, 108: 370-378. 10.1182/blood-2005-11-4624.PubMedCentralCrossRefPubMed
24.
go back to reference Crabb BS, Rug M, Gilberger T, Thompson JK, Triglia T, Maier AG, Cowman AF: Transfection of the human malaria parasite Plasmodium falciparum. Methods in Molecular Biology. Edited by: Melville, SE. 2004, Parasite Genomics Protocols. Totowa, NJ: Humana Press Inc, 270: Crabb BS, Rug M, Gilberger T, Thompson JK, Triglia T, Maier AG, Cowman AF: Transfection of the human malaria parasite Plasmodium falciparum. Methods in Molecular Biology. Edited by: Melville, SE. 2004, Parasite Genomics Protocols. Totowa, NJ: Humana Press Inc, 270:
25.
go back to reference Maier AG, Rug M, Brown MT, O'Neill M, Chakravorty S, Szestak T, Chesson J, Wu Y, Hughes K, Coppel R, Newbold C, Beeson J, Craig A, Crabb BS, Cowman AF: Exported proteins required for virulence and rigidity of Plasmodium falciparum-infected human erythrocytes. Cell. 2008, 134: 48-61. 10.1016/j.cell.2008.04.051.PubMedCentralCrossRefPubMed Maier AG, Rug M, Brown MT, O'Neill M, Chakravorty S, Szestak T, Chesson J, Wu Y, Hughes K, Coppel R, Newbold C, Beeson J, Craig A, Crabb BS, Cowman AF: Exported proteins required for virulence and rigidity of Plasmodium falciparum-infected human erythrocytes. Cell. 2008, 134: 48-61. 10.1016/j.cell.2008.04.051.PubMedCentralCrossRefPubMed
26.
go back to reference Fidock DA, Wellems TE: Transformation with human dihydrofolate reductase renders malaria parasites insensitive to WR99210 but does not affect the intrinsic activity of proguanil. Proc Natl Acad Sci USA. 1997, 94: 10931-10936. 10.1073/pnas.94.20.10931.PubMedCentralCrossRefPubMed Fidock DA, Wellems TE: Transformation with human dihydrofolate reductase renders malaria parasites insensitive to WR99210 but does not affect the intrinsic activity of proguanil. Proc Natl Acad Sci USA. 1997, 94: 10931-10936. 10.1073/pnas.94.20.10931.PubMedCentralCrossRefPubMed
27.
go back to reference Lambros C, Vanderberg JP: Synchronization of Plasmodium falciparum erythrocytic stages in culture. J Parasitol. 1979, 65: 418-420. 10.2307/3280287.CrossRefPubMed Lambros C, Vanderberg JP: Synchronization of Plasmodium falciparum erythrocytic stages in culture. J Parasitol. 1979, 65: 418-420. 10.2307/3280287.CrossRefPubMed
29.
go back to reference Prendergast FG, Meyer M, Carlson GL, Iida S, Potter JD: Synthesis, spectral properties and use of 6-acryloyl-2-dimethyl-aminonaphthalene (acrylodan). J Biol Chem. 1983, 258: 7541-7544.PubMed Prendergast FG, Meyer M, Carlson GL, Iida S, Potter JD: Synthesis, spectral properties and use of 6-acryloyl-2-dimethyl-aminonaphthalene (acrylodan). J Biol Chem. 1983, 258: 7541-7544.PubMed
30.
go back to reference Hibbs RE, Talley TT, Taylor P: Acrylodan-conjugated cysteine side chains reveal conformational state and ligand site locations of the acetylcholine-binding protein. J Biol Chem. 2004, 279: 28483-28491. 10.1074/jbc.M403713200.CrossRefPubMed Hibbs RE, Talley TT, Taylor P: Acrylodan-conjugated cysteine side chains reveal conformational state and ligand site locations of the acetylcholine-binding protein. J Biol Chem. 2004, 279: 28483-28491. 10.1074/jbc.M403713200.CrossRefPubMed
31.
go back to reference Nagata K, Saito S, Okuwaki M, Kawase H, Furuya A, Kusano A, Hanai N, Okuda A, Kikuchi A: Cellular localization and expression of template-activating factor I in different cell types. Exp Cell Res. 1998, 240: 274-281. 10.1006/excr.1997.3930.CrossRefPubMed Nagata K, Saito S, Okuwaki M, Kawase H, Furuya A, Kusano A, Hanai N, Okuda A, Kikuchi A: Cellular localization and expression of template-activating factor I in different cell types. Exp Cell Res. 1998, 240: 274-281. 10.1006/excr.1997.3930.CrossRefPubMed
32.
go back to reference Miyaji-Yamaguchi M, Kato K, Nakano R, Akashi T, Kikuchi A, Nagata K: Involvement of nucleocytoplasmic shuttling of yeast Nap1 in mitotic progression. Mol Cell Biol. 2003, 23: 6672-6684. 10.1128/MCB.23.18.6672-6684.2003.PubMedCentralCrossRefPubMed Miyaji-Yamaguchi M, Kato K, Nakano R, Akashi T, Kikuchi A, Nagata K: Involvement of nucleocytoplasmic shuttling of yeast Nap1 in mitotic progression. Mol Cell Biol. 2003, 23: 6672-6684. 10.1128/MCB.23.18.6672-6684.2003.PubMedCentralCrossRefPubMed
33.
go back to reference Selth L, Svejstrup JQ: Vps75, a new yeast member of the NAP histone chaperone family. J Biol Chem. 2007, 282: 12358-12362. 10.1074/jbc.C700012200.CrossRefPubMed Selth L, Svejstrup JQ: Vps75, a new yeast member of the NAP histone chaperone family. J Biol Chem. 2007, 282: 12358-12362. 10.1074/jbc.C700012200.CrossRefPubMed
35.
go back to reference Rodriguez P, Munroe D, Prawitt D, Chu LL, Bric E, Kim J, Reid LH, Davies C, Nakagama H, Loebbert R, Winterpacht A, Petruzzi M, Higgins MJ, Nowak N, Evans G, Shows T, Weissman BE, Zabel B, Housman DE, Pelletier J: Functional characterization of human nucleosome assembly protein-2 (NAP1L4) suggests a role as a histone chaperone. Genomics. 1997, 44: 253-265. 10.1006/geno.1997.4868.CrossRefPubMed Rodriguez P, Munroe D, Prawitt D, Chu LL, Bric E, Kim J, Reid LH, Davies C, Nakagama H, Loebbert R, Winterpacht A, Petruzzi M, Higgins MJ, Nowak N, Evans G, Shows T, Weissman BE, Zabel B, Housman DE, Pelletier J: Functional characterization of human nucleosome assembly protein-2 (NAP1L4) suggests a role as a histone chaperone. Genomics. 1997, 44: 253-265. 10.1006/geno.1997.4868.CrossRefPubMed
36.
go back to reference Lankenau S, Barnickel T, Marhold J, Lyko F, Mechler BM, Lankenau D: Knockout targeting of the Drosophila Nap1 gene and examination of DNA repair tracts in the recombination products. Genetics. 2003, 163: 611-623.PubMedCentralPubMed Lankenau S, Barnickel T, Marhold J, Lyko F, Mechler BM, Lankenau D: Knockout targeting of the Drosophila Nap1 gene and examination of DNA repair tracts in the recombination products. Genetics. 2003, 163: 611-623.PubMedCentralPubMed
37.
go back to reference Tyler JK, Adams CR, Chen SR, Kobayashi R, Kamakaka RT, Kadonaga JT: The RCAF complex mediates chromatin assembly during DNA replication and repair. Nature. 1999, 402: 555-560. 10.1038/990147.CrossRefPubMed Tyler JK, Adams CR, Chen SR, Kobayashi R, Kamakaka RT, Kadonaga JT: The RCAF complex mediates chromatin assembly during DNA replication and repair. Nature. 1999, 402: 555-560. 10.1038/990147.CrossRefPubMed
38.
go back to reference Mazurkiewicz J, Kepert JF, Rippe K: On the mechanism of nucleosome assembly by histone chaperone NAP1. J Biol Chem. 2006, 281: 16462-16472. 10.1074/jbc.M511619200.CrossRefPubMed Mazurkiewicz J, Kepert JF, Rippe K: On the mechanism of nucleosome assembly by histone chaperone NAP1. J Biol Chem. 2006, 281: 16462-16472. 10.1074/jbc.M511619200.CrossRefPubMed
39.
go back to reference Andrews AJ, Downing G, Brown K, Park YJ, Luger K: A thermodynamic model for Nap1-histone interactions. J Biol Chem. 2008, 283: 32412-32418. 10.1074/jbc.M805918200.PubMedCentralCrossRefPubMed Andrews AJ, Downing G, Brown K, Park YJ, Luger K: A thermodynamic model for Nap1-histone interactions. J Biol Chem. 2008, 283: 32412-32418. 10.1074/jbc.M805918200.PubMedCentralCrossRefPubMed
40.
go back to reference English CM, Adkins MW, Carson JJ, Churchill ME, Tyler JK: Structural basis for the histone chaperone activity of Asf1. Cell. 2006, 127: 458-460. 10.1016/j.cell.2006.08.047.CrossRef English CM, Adkins MW, Carson JJ, Churchill ME, Tyler JK: Structural basis for the histone chaperone activity of Asf1. Cell. 2006, 127: 458-460. 10.1016/j.cell.2006.08.047.CrossRef
41.
go back to reference Natsume R, Eitoku M, Akai Y, Sano N, Horikoshi M, Senda T: Structure and function of the histone chaperone CIA/ASF1 complexed with histones H3 and H4. Nature. 2007, 446: 338-341. 10.1038/nature05613.CrossRefPubMed Natsume R, Eitoku M, Akai Y, Sano N, Horikoshi M, Senda T: Structure and function of the histone chaperone CIA/ASF1 complexed with histones H3 and H4. Nature. 2007, 446: 338-341. 10.1038/nature05613.CrossRefPubMed
42.
go back to reference LaCount JD, Vignali M, Chettier R, Phansalkar A, Bell R, Hesselberth JR, Schoenfeld LW, Ota I, Sahasrabudhe S, Kurschner C, Fields S, Hughes RE: A protein interaction network of the malaria parasite Plasmodium falciparum. Nature. 2005, 438: 103-107. 10.1038/nature04104.CrossRefPubMed LaCount JD, Vignali M, Chettier R, Phansalkar A, Bell R, Hesselberth JR, Schoenfeld LW, Ota I, Sahasrabudhe S, Kurschner C, Fields S, Hughes RE: A protein interaction network of the malaria parasite Plasmodium falciparum. Nature. 2005, 438: 103-107. 10.1038/nature04104.CrossRefPubMed
Metadata
Title
Structure, localization and histone binding properties of nuclear-associated nucleosome assembly protein from Plasmodium falciparum
Authors
Jasmita Gill
Anuj Kumar
Manickam Yogavel
Hassan Belrhali
SK Jain
Melanie Rug
Monica Brown
Alexander G Maier
Amit Sharma
Publication date
01-12-2010
Publisher
BioMed Central
Published in
Malaria Journal / Issue 1/2010
Electronic ISSN: 1475-2875
DOI
https://doi.org/10.1186/1475-2875-9-90

Other articles of this Issue 1/2010

Malaria Journal 1/2010 Go to the issue
Live Webinar | 27-06-2024 | 18:00 (CEST)

Keynote webinar | Spotlight on medication adherence

Live: Thursday 27th June 2024, 18:00-19:30 (CEST)

WHO estimates that half of all patients worldwide are non-adherent to their prescribed medication. The consequences of poor adherence can be catastrophic, on both the individual and population level.

Join our expert panel to discover why you need to understand the drivers of non-adherence in your patients, and how you can optimize medication adherence in your clinics to drastically improve patient outcomes.

Prof. Kevin Dolgin
Prof. Florian Limbourg
Prof. Anoop Chauhan
Developed by: Springer Medicine
Obesity Clinical Trial Summary

At a glance: The STEP trials

A round-up of the STEP phase 3 clinical trials evaluating semaglutide for weight loss in people with overweight or obesity.

Developed by: Springer Medicine