40 research outputs found

    PfCK1 immunofluorescence assay on wild-type parasites and transgenic parasites expressing a GFP-tagged PfCK1.

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    <p>(A) 3D7 parasites were examined by immunofluorescence using an anti-PfCK1 serum labelled with rhodamine. DAPI was used to stain the nucleus and the scale bar represents 10 Ī¼m. A pre-immune serum used as a negative control did not yield any signal (not shown). (B) An erythrocyte culture infected with synchronised parasites expressing GFP-tagged PfCK1 from the endogenous locus was examined by immunofluorescence using an anti-GFP antibody. DAPI was used to stain the nucleus the scale bar represents 10 Ī¼m. As a negative control wild-type 3D7 parasites stained with the same anti-GFP antibody and did not yield any signal (not shown).</p

    Interaction between PfCK1 and PfNapL, PfCK2a or PfRON3.

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    <p><b>(A) Interaction between native PfCK1 and PfNapL, PfCK2a or PfRON3.</b> Immunoprecipitation was performed on protein extracts from transgenic parasites expressing GFP-tagged PfCK1 and from wild-type 3D7 parasites using GFP-trap beads. Detection of GFP, PfCK2a, PfNapL and PfRON3 was then performed by western-blot on the immunoprecipitates using the <i>ad hoc</i> antibodies. Lane 1: total extracts from PfCK1-GFP parasites; lane 2: total extracts from 3D7 WT parasites; lane 3: immunoprecipitates from PfCK1-GFP parasites; lane 4: immunoprecipitates from 3D7 WT parasites. <b>(B) Recombinant PfCK1 and PfCK2Ī± interact <i>in vitro</i>.</b> GST-PfCK1 was incubated with His-PfCK2Ī± and complexes containing the CK1 GST-tagged protein were then purified using glutathione agarose beads. The His-tagged proteins were detected by Western blot analysis using an anti-His antibody and the corresponding Coomassie blue-stained gels are shown. Lane1: Bound material after incubation of GST agarose beads with soluble His-PfCK2Ī±; lane 2: bound material after incubation of GST-PfCK1 agarose beads with soluble His-PfCK2Ī±; lane 3: soluble His-PfCK2Ī± control. <b>(C) Recombinant PfCK1 and PfRON3 interact <i>in vitro</i>.</b> GST-PfCK1 was incubated with His-PfRON3 and complexes containing the CK1 GST-tagged protein were then purified using glutathione agarose beads. The His-tagged proteins were detected by Western blot analysis using an anti-His antibody and the corresponding Coomassie blue-stained gels are shown. Lane 1: bound material after incubation of GST agarose beads with soluble His-PfRON3; lane 2: bound material after incubation of GST-PfCK1 agarose beads with soluble His-PfRON3; lane 3: soluble His-PfRON3 control.</p

    PfCK1 expression and kinase activity.

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    <p>(A) PfCK1 protein was detected by western blot using a peptide-derived anti-PfCK1 antibody. R: Rings; T: trophozoites; S: Schizonts; G: Gametocytes. Detection of 2-Cys-peroxiredoxin was used as a loading control (bottom panel). (B) Casein kinase activity immunoprecipitated with an anti-PfCK1 antibody from parasite extracts from a mixed asexual culture. Kinase assays were set up with casein as a substrate. Lane 1 (ā€œ-ā€œ), no immunoprecipitated added; lane 2 (ā€œPreimā€); immunoprecipitate obtained with a pre-immune serum lane 3 (ā€œCK1ā€), immunoprecipitate obtained with the anti-PfCK1 antiserum. Reactions were subsequently analysed by SDS-PAGE and autoradiography. (C) Endogenously GFP tagged PfCK1. Western blot of parasite extracts from wild-type 3D7 parasites and parasites expressing GFP-tagged PfCK1 from the endogenous locus using anti-PfCK1, anti-GFP and anti-2-Cys-peroxiredoxin antibodies. (D) Kinase activity after immunoprecipitation from parasite extracts using an anti-GFP antibody. Kinase assays were set up with casein as a substrate. Lane 1, no immunoprecipitated added; lane 2, immunoprecipitate obtained from wild-type 3D7 parasites; lane 3, immunoprecipitate from parasites expressing GFP-tagged PfCK1 from the endogenous locus. Reactions were subsequently analysed by SDS-PAGE and autoradiography. (E) Endogenously His tagged PfCK1. Western Blot of parasite extracts from wild-type 3D7 parasites and parasites expressing His-tagged PfCK1 from the endogenous locus using anti-His and anti-PfCK1 antibodies. (F) Kinase activity after immunoprecipitation from parasite extracts using an anti-His antibody. Kinase assays were set up with casein as a substrate. Lane 1, immunoprecipitate obtained from wild-type 3D7 parasites; lane 2, immunoprecipitate from parasites expressing His-tagged PfCK1 from the endogenous locus. Reactions were subsequently analysed by SDS-PAGE and autoradiography.</p

    PfCK1 kinase activity in culture supernatants.

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    <p>(A) CK1 peptide phosphorylation by culture supernatants. (B) PfCK1 activity immunoprecipitated from culture supernatants of uninfected (uRBCs) or 3D7-infected (iRBC) red blood cells using an anti-PfCK1 antibody (Ī±-PfCK1). A pre-immune serum (preim) was used as control. (C) Accumulation of casein kinase activity immunoprecipitated from supernatants of synchronised trophozoite cultures using antibodies against PfPK7, PfNek-1 and PfCK1. All three kinases immunoprecipitated from parasite extracts gave strong signals (not shown). (D) Secretion of endogenous GFP-tagged PfCK1. Anti-GFP Western blot showing GFP-tagged PfCK1 in the supernatant of transgenic parasites expressing GFP-tagged PfCK1, but not in supernatants of WT parasites. (E) Kinase activity immunoprecipitated with an anti-GFP antibody from culture supernatants. Lane 1: supernatant from a wild-type 3D7 culture; lane 2: supernatant from a transgenic line expressing GFP-tagged PfCK1.</p

    Label-free quantitative analysis of PfCK1 interacting proteins.

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    <p>Volcano plot representing the logarithmic ratio of protein LFQ intensities in the CK1/3D7 experiments plotted against negative logarithmic p-values of the <i>t</i> test performed from triplicates (FDR threshold = 0.1, S0 = 0.5). A hyperbolic curve separates specific CK1-interacting proteins (dark blue dots) from background (light blue dots). PfCK1 and PfRON3 are highlighted with a red square and a red triangle respectively. (B) Distribution of potential PfCK1 interactors across metabolic processes. Histogram representing the number of potential PfCK1 interactors distributed among the various metabolic processes described in the Metabolic Pathways of Malaria Parasites website (<a href="http://sites.huji.ac.il/malaria/" target="_blank">http://sites.huji.ac.il/malaria/</a>). The total number of proteins in the most represented pathway is represented in brackets. (C) Distribution of potential PfCK1 interactors across specific pathways in the transcription process. The histogram represents the number of potential PfCK1 interactors across the various pathways present in the ā€œTranscriptionā€ process.</p

    Localisation of PfCK1 in micronemes.

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    <p>(A) Localisation of PfCK1 and PfRON3 in schizonts and segmenters. DAPI was used to stain the nucleus and the scale bar represents 10Ī¼m. (B) Localisation of PfCK1 and AMA-1 in merozoites. DAPI was used to stain the nucleus and the scale bar represents 1Ī¼m.</p

    List of histone phospho-modifications identified in this study using MaxQuant requiring site a probability score &gt;0.75 and a difference score &gt;5.

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    *<p>Histone phospho-modifications identified in Treeck et al., 2011. For other histone phospho-modifications identified in that study see bottom <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0053179#pone.0053179.s022" target="_blank">Table S1</a>.</p>ā€ <p>Talbert PB, Ahmad K, Almouzni G, Ausio J, Berger F, et al. (2012) A unified phylogeny-based nomenclature for histone variants. Epigenetics Chromatin 5āˆ¶7.</p

    14-3-3 protein binding studies to native histones and phosphorylated histone H3 peptides.

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    <p>A) Interaction between purified histone sample and GST-tagged recombinant Pf14-3-3I, Pf14-3-3II, and Pf-HP1-CD was observed by ELISA-based binding assay. B) Binding of GST-14-3-3I and GST-14-3-3II to different synthetic peptides listed in <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0053179#pone-0053179-t002" target="_blank">Table 2</a> was tested by ELISA-based binding assay. C) ELISA-based binding assay was performed with GST-14-3-3I and phosphatase treated and untreated H3S28ph and H3S28phS32ph peptides.</p

    Kinase activity of recombinant PfCK1 on potential interactors.

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    <p>(A) Autoradiograms and Coomassie blue stained gels of <i>in vitro</i> standard kinase reactions. Assays were performed with 500 ng of recombinant GST-PfCK1wild-type or with GST-PfCK1 K38M (ā€œkinase dead mutantā€). Both kinases were incubated with 3 Ī¼g of Ī±-casein, or CK1 peptide substrate. GST-PfCK1 wt shows activity towards these 2 substrates whereas no signal was obtained with the control mutant. Lane 1: Ī±-casein + CK1 substrate; lane 2: GST-PfCK1 WT + Ī±-casein; Lane 3: GST-PfCK1 WT + CK1 substrate peptide; lane 4: GST-PfCK1[K38M]+ Ī±-casein; lane 5: GST-CK1[K38M] + CK1 peptide substrate. (B) Phosphorylation of Ī±-casein and PfNapL, but not PfNapS, by GST-PfCK1. Lane 1: GST-PfCK1 + Ī±-casein; lane 2: GST-PfCK1 + His-PfNapL; lane 3: GST-PfCK1 + His-PfNapS. (C) Phosphorylation of PfRON3 and PfAlba4 by GST-PfCK1. Lane 1: GST-PfCK1+ Ī±-casein; lane 2: GST-PfCK1 + GST; lane 3: GST-PfCK1 + His PfRON3; lane 4: GST-PfCK1 + GST-PfAlba 4.</p

    Subcellular location of 14-3-3 in asexual blood stage parasites.

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    <p>A) Cellular localization of Pf14-3-3I was investigated by probing cytoplasmic and nuclear fraction prepared from asynchronous 3D7 parasite culture with anti-14-3-3I antibody in western blot analysis. Aldolase and histone H3 antibodies were used to check the purity of cytoplasmic and nuclear fraction respectively. Protein extract from non infected red blood cells (RBC) was used as control to show that anti Pf14-3- antibody does not recognized mammalian homologues present in human erythrocytes. B) Using anti-14-3-3I antibody in immunofluorescence assay, the Pf14-3-3I protein was localized in both nuclear and cytoplasmic compartments.</p
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