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Characterization of the ubiquitylating components of the human malaria parasite's protein degradation pathway
by
Chung, Duk-Won D.
, Prudhomme, Jacques
, Ponts, Nadia
, Le Roch, Karine G.
, Unité de recherche Mycologie et Sécurité des Aliments (MycSA)
, Rodrigues, Elisandra M.
in
Amino Acid Sequence
/ Antimalarial activity
/ Antimalarial agents
/ Biodegradation
/ Biology
/ Cytosol
/ Degradation
/ Dihydrofolate reductase
/ Drug development
/ Endoplasmic reticulum
/ Endoplasmic Reticulum - drug effects
/ Endoplasmic Reticulum - metabolism
/ Endoplasmic Reticulum - parasitology
/ Endoplasmic Reticulum-Associated Degradation
/ Enzymes
/ Erythrocytes
/ Gene disruption
/ Host-Parasite Interactions
/ Humans
/ Hydrazones - pharmacology
/ Hydroxyurea - analogs & derivatives
/ Hydroxyurea - pharmacology
/ Immunoblotting
/ Immunofluorescence
/ Life Sciences
/ Ligases
/ Machinery
/ Machinery and equipment
/ Malaria
/ Malaria - parasitology
/ Medicine
/ Membranes
/ Molecular Sequence Data
/ Multiple myeloma
/ Neurosciences
/ Parasites
/ Plasmodium
/ Plasmodium falciparum
/ Plasmodium falciparum - genetics
/ Plasmodium falciparum - metabolism
/ Plasmodium falciparum - physiology
/ Proteasome inhibitors
/ Protein folding
/ Proteins
/ Proteolysis
/ Protozoan Proteins - genetics
/ Protozoan Proteins - metabolism
/ Sequence Homology, Amino Acid
/ Studies
/ Ubiquitin
/ Ubiquitin - metabolism
/ Ubiquitin-protein ligase
/ Ubiquitin-Protein Ligases - genetics
/ Ubiquitin-Protein Ligases - metabolism
/ Ubiquitinated Proteins - metabolism
/ Ubiquitination
/ Vector-borne diseases
2012
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Characterization of the ubiquitylating components of the human malaria parasite's protein degradation pathway
by
Chung, Duk-Won D.
, Prudhomme, Jacques
, Ponts, Nadia
, Le Roch, Karine G.
, Unité de recherche Mycologie et Sécurité des Aliments (MycSA)
, Rodrigues, Elisandra M.
in
Amino Acid Sequence
/ Antimalarial activity
/ Antimalarial agents
/ Biodegradation
/ Biology
/ Cytosol
/ Degradation
/ Dihydrofolate reductase
/ Drug development
/ Endoplasmic reticulum
/ Endoplasmic Reticulum - drug effects
/ Endoplasmic Reticulum - metabolism
/ Endoplasmic Reticulum - parasitology
/ Endoplasmic Reticulum-Associated Degradation
/ Enzymes
/ Erythrocytes
/ Gene disruption
/ Host-Parasite Interactions
/ Humans
/ Hydrazones - pharmacology
/ Hydroxyurea - analogs & derivatives
/ Hydroxyurea - pharmacology
/ Immunoblotting
/ Immunofluorescence
/ Life Sciences
/ Ligases
/ Machinery
/ Machinery and equipment
/ Malaria
/ Malaria - parasitology
/ Medicine
/ Membranes
/ Molecular Sequence Data
/ Multiple myeloma
/ Neurosciences
/ Parasites
/ Plasmodium
/ Plasmodium falciparum
/ Plasmodium falciparum - genetics
/ Plasmodium falciparum - metabolism
/ Plasmodium falciparum - physiology
/ Proteasome inhibitors
/ Protein folding
/ Proteins
/ Proteolysis
/ Protozoan Proteins - genetics
/ Protozoan Proteins - metabolism
/ Sequence Homology, Amino Acid
/ Studies
/ Ubiquitin
/ Ubiquitin - metabolism
/ Ubiquitin-protein ligase
/ Ubiquitin-Protein Ligases - genetics
/ Ubiquitin-Protein Ligases - metabolism
/ Ubiquitinated Proteins - metabolism
/ Ubiquitination
/ Vector-borne diseases
2012
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Characterization of the ubiquitylating components of the human malaria parasite's protein degradation pathway
by
Chung, Duk-Won D.
, Prudhomme, Jacques
, Ponts, Nadia
, Le Roch, Karine G.
, Unité de recherche Mycologie et Sécurité des Aliments (MycSA)
, Rodrigues, Elisandra M.
in
Amino Acid Sequence
/ Antimalarial activity
/ Antimalarial agents
/ Biodegradation
/ Biology
/ Cytosol
/ Degradation
/ Dihydrofolate reductase
/ Drug development
/ Endoplasmic reticulum
/ Endoplasmic Reticulum - drug effects
/ Endoplasmic Reticulum - metabolism
/ Endoplasmic Reticulum - parasitology
/ Endoplasmic Reticulum-Associated Degradation
/ Enzymes
/ Erythrocytes
/ Gene disruption
/ Host-Parasite Interactions
/ Humans
/ Hydrazones - pharmacology
/ Hydroxyurea - analogs & derivatives
/ Hydroxyurea - pharmacology
/ Immunoblotting
/ Immunofluorescence
/ Life Sciences
/ Ligases
/ Machinery
/ Machinery and equipment
/ Malaria
/ Malaria - parasitology
/ Medicine
/ Membranes
/ Molecular Sequence Data
/ Multiple myeloma
/ Neurosciences
/ Parasites
/ Plasmodium
/ Plasmodium falciparum
/ Plasmodium falciparum - genetics
/ Plasmodium falciparum - metabolism
/ Plasmodium falciparum - physiology
/ Proteasome inhibitors
/ Protein folding
/ Proteins
/ Proteolysis
/ Protozoan Proteins - genetics
/ Protozoan Proteins - metabolism
/ Sequence Homology, Amino Acid
/ Studies
/ Ubiquitin
/ Ubiquitin - metabolism
/ Ubiquitin-protein ligase
/ Ubiquitin-Protein Ligases - genetics
/ Ubiquitin-Protein Ligases - metabolism
/ Ubiquitinated Proteins - metabolism
/ Ubiquitination
/ Vector-borne diseases
2012
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Characterization of the ubiquitylating components of the human malaria parasite's protein degradation pathway
Journal Article
Characterization of the ubiquitylating components of the human malaria parasite's protein degradation pathway
2012
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Overview
Ubiquitin-dependent protein degradation within malarial parasites is a burgeoning field of interest due to several encouraging reports of proteasome inhibitors that were able to confer antimalarial activity. Despite the growing interest in the Plasmodium proteasome system, relatively little investigation has been done to actually characterize the parasite degradation machinery. In this report, we provide an initial biological investigation of the ubiquitylating components of the endoplasmic reticulum-associated degradation (ERAD) system, which is a major pathway in targeting misfolded proteins from the ER to the cytosol for proteasome degradation. We are able to show that the ERAD system is essential for parasite survival and that the putative Plasmodium HRD1 (E3 ubiquitin ligase), UBC (E2 ubiquitin conjugating enzyme) and UBA1 (E1 ubiquitin activating enzyme) are able to mediate in vitro ubiquitylation. Furthermore, by using immunofluorescence, we report that Plasmodium HRD1 localizes to the ER membranes, while the Plasmodium UBC and UBA1 localize to the cytosol. In addition, our gene disruption experiments indicate that the Plasmodium HRD1 is likely essential. We have conducted an initial characterization of the ubiquitylating components of the Plasmodium ERAD system, a major pathway for protein degradation and parasite maintenance. In conjunction with promising proteasome inhibitor studies, we explore the possibility of targeting the Plasmodium ERAD system for future bottom-up drug development approaches.
Publisher
CCSD,Public Library of Science,Public Library of Science (PLoS)
Subject
/ Biology
/ Cytosol
/ Endoplasmic Reticulum - drug effects
/ Endoplasmic Reticulum - metabolism
/ Endoplasmic Reticulum - parasitology
/ Endoplasmic Reticulum-Associated Degradation
/ Enzymes
/ Humans
/ Hydroxyurea - analogs & derivatives
/ Ligases
/ Malaria
/ Medicine
/ Plasmodium falciparum - genetics
/ Plasmodium falciparum - metabolism
/ Plasmodium falciparum - physiology
/ Proteins
/ Protozoan Proteins - genetics
/ Protozoan Proteins - metabolism
/ Sequence Homology, Amino Acid
/ Studies
/ Ubiquitin-Protein Ligases - genetics
/ Ubiquitin-Protein Ligases - metabolism
ISBN
0003080637001
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