about
sameAs
Surface attachment, promoted by the actomyosin system of Toxoplasma gondii is important for efficient gliding motility and invasionParasites lacking the micronemal protein MIC2 are deficient in surface attachment and host cell egress, but remain virulent in vivoToxoplasma as a novel system for motility.The transcription machinery and the molecular toolbox to control gene expression in Toxoplasma gondii and other protozoan parasites.Toxoplasma gondii F-actin forms an extensive filamentous network required for material exchange and parasite maturationInvasion factors of apicomplexan parasites: essential or redundant?Multiple essential functions of Plasmodium falciparum actin-1 during malaria blood-stage development.A unique dynamin-related protein is essential for mitochondrial fission in Toxoplasma gondii.RNA polymerase I holoenzyme-promoter complexes include an associated CK2-like protein kinaseFormin-2 drives polymerisation of actin filaments enabling segregation of apicoplasts and cytokinesis inA highly dynamic F-actin network regulates transport and recycling of micronemes in Toxoplasma gondii vacuolesApicomplexan F-actin is required for efficient nuclear entry during host cell invasionAn endocytic-secretory cycle participates in Toxoplasma gondii in motility
P50
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P50
description
researcher
@en
wetenschapper
@nl
հետազոտող
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name
Markus Meissner
@ast
Markus Meissner
@en
Markus Meissner
@es
Markus Meissner
@nl
type
label
Markus Meissner
@ast
Markus Meissner
@en
Markus Meissner
@es
Markus Meissner
@nl
prefLabel
Markus Meissner
@ast
Markus Meissner
@en
Markus Meissner
@es
Markus Meissner
@nl
P106
P31
P4012
P496
0000-0002-4816-5221