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Anaerobic peroxisomes in Entamoeba histolytica metabolize myo-inositol
by
Le, Tien
, Narayanasamy, Ravi Kumar
, Verner, Zdeněk
, König, Constantin
, Belišová, Darja
, Hrdý, Ivan
, Bruchhaus, Iris
, Žárský, Vojtěch
, Rozbeský, Daniel
, Rada, Petr
, Makki, Abhijith
, Tachezy, Jan
, Vancová, Marie
, Lender, Corinna
in
Affinity
/ Anaerobes
/ Anaerobiosis
/ Analysis
/ Antiparasitic agents
/ Bacterial proteins
/ Biology and Life Sciences
/ Biosynthesis
/ Chemical properties
/ Datasets
/ Drug development
/ Endoplasmic reticulum
/ Endosomes
/ Entamoeba histolytica
/ Entamoeba histolytica - metabolism
/ Enzymes
/ Glucose
/ Identification and classification
/ Immunoelectron microscopy
/ Immunofluorescence
/ Inositol
/ Inositol - metabolism
/ Inositols
/ Localization
/ Metabolism
/ Microscopy
/ Mitochondria
/ Mutation
/ NAD
/ Pelomyxa
/ Peroxins - metabolism
/ Peroxisomal Targeting Signals
/ Peroxisomes
/ Peroxisomes - metabolism
/ Phylogeny
/ Proteins
/ Proteomics
/ Protozoan Proteins - genetics
/ Protozoan Proteins - metabolism
/ Receptors
/ Substrates
/ Vesicles
2021
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Anaerobic peroxisomes in Entamoeba histolytica metabolize myo-inositol
by
Le, Tien
, Narayanasamy, Ravi Kumar
, Verner, Zdeněk
, König, Constantin
, Belišová, Darja
, Hrdý, Ivan
, Bruchhaus, Iris
, Žárský, Vojtěch
, Rozbeský, Daniel
, Rada, Petr
, Makki, Abhijith
, Tachezy, Jan
, Vancová, Marie
, Lender, Corinna
in
Affinity
/ Anaerobes
/ Anaerobiosis
/ Analysis
/ Antiparasitic agents
/ Bacterial proteins
/ Biology and Life Sciences
/ Biosynthesis
/ Chemical properties
/ Datasets
/ Drug development
/ Endoplasmic reticulum
/ Endosomes
/ Entamoeba histolytica
/ Entamoeba histolytica - metabolism
/ Enzymes
/ Glucose
/ Identification and classification
/ Immunoelectron microscopy
/ Immunofluorescence
/ Inositol
/ Inositol - metabolism
/ Inositols
/ Localization
/ Metabolism
/ Microscopy
/ Mitochondria
/ Mutation
/ NAD
/ Pelomyxa
/ Peroxins - metabolism
/ Peroxisomal Targeting Signals
/ Peroxisomes
/ Peroxisomes - metabolism
/ Phylogeny
/ Proteins
/ Proteomics
/ Protozoan Proteins - genetics
/ Protozoan Proteins - metabolism
/ Receptors
/ Substrates
/ Vesicles
2021
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Anaerobic peroxisomes in Entamoeba histolytica metabolize myo-inositol
by
Le, Tien
, Narayanasamy, Ravi Kumar
, Verner, Zdeněk
, König, Constantin
, Belišová, Darja
, Hrdý, Ivan
, Bruchhaus, Iris
, Žárský, Vojtěch
, Rozbeský, Daniel
, Rada, Petr
, Makki, Abhijith
, Tachezy, Jan
, Vancová, Marie
, Lender, Corinna
in
Affinity
/ Anaerobes
/ Anaerobiosis
/ Analysis
/ Antiparasitic agents
/ Bacterial proteins
/ Biology and Life Sciences
/ Biosynthesis
/ Chemical properties
/ Datasets
/ Drug development
/ Endoplasmic reticulum
/ Endosomes
/ Entamoeba histolytica
/ Entamoeba histolytica - metabolism
/ Enzymes
/ Glucose
/ Identification and classification
/ Immunoelectron microscopy
/ Immunofluorescence
/ Inositol
/ Inositol - metabolism
/ Inositols
/ Localization
/ Metabolism
/ Microscopy
/ Mitochondria
/ Mutation
/ NAD
/ Pelomyxa
/ Peroxins - metabolism
/ Peroxisomal Targeting Signals
/ Peroxisomes
/ Peroxisomes - metabolism
/ Phylogeny
/ Proteins
/ Proteomics
/ Protozoan Proteins - genetics
/ Protozoan Proteins - metabolism
/ Receptors
/ Substrates
/ Vesicles
2021
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Anaerobic peroxisomes in Entamoeba histolytica metabolize myo-inositol
Journal Article
Anaerobic peroxisomes in Entamoeba histolytica metabolize myo-inositol
2021
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Overview
Entamoeba histolytica
is believed to be devoid of peroxisomes, like most anaerobic protists. In this work, we provided the first evidence that peroxisomes are present in
E
.
histolytica
, although only seven proteins responsible for peroxisome biogenesis (peroxins) were identified (Pex1, Pex6, Pex5, Pex11, Pex14, Pex16, and Pex19). Targeting matrix proteins to peroxisomes is reduced to the PTS1-dependent pathway mediated via the soluble Pex5 receptor, while the PTS2 receptor Pex7 is absent. Immunofluorescence microscopy showed that peroxisomal markers (Pex5, Pex14, Pex16, Pex19) are present in vesicles distinct from mitosomes, the endoplasmic reticulum, and the endosome/phagosome system, except Pex11, which has dual localization in peroxisomes and mitosomes. Immunoelectron microscopy revealed that Pex14 localized to vesicles of approximately 90–100 nm in diameter. Proteomic analyses of affinity-purified peroxisomes and
in silico
PTS1 predictions provided datasets of 655 and 56 peroxisomal candidates, respectively; however, only six proteins were shared by both datasets, including
myo
-inositol dehydrogenase (
myo
-IDH). Peroxisomal NAD-dependent
myo
-IDH appeared to be a dimeric enzyme with high affinity to
myo
-inositol (Km 0.044 mM) and can utilize also
scyllo
-inositol, D-glucose and D-xylose as substrates. Phylogenetic analyses revealed that orthologs of
myo
-IDH with PTS1 are present in
E
.
dispar
,
E
.
nutalli
and
E
.
moshkovskii
but not in
E
.
invadens
, and form a monophyletic clade of mostly peroxisomal orthologs with free-living
Mastigamoeba balamuthi
and
Pelomyxa schiedti
. The presence of peroxisomes in
E
.
histolytica
and other archamoebae breaks the paradigm of peroxisome absence in anaerobes and provides a new potential target for the development of antiparasitic drugs.
Publisher
Public Library of Science,Public Library of Science (PLoS)
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