The glideosome of apicomplexan parasites is an actin- and myosin-based machine located at the pellicle, between the plasma membrane (PM) and inner membrane complex (IMC), that powers parasite motility, migration, and host cell invasion and egress. It is composed of myosin A, its light chain MLC1, and two gliding-associated proteins, GAP50 and GAP45. We identify GAP40, a polytopic protein of the IMC, as an additional glideosome component and show that GAP45 is anchored to the PM and IMC via its N- and C-terminal extremities, respectively. While the C-terminal region of GAP45 recruits MLC1-MyoA to the IMC, the N-terminal acylation and coiled-coil domain preserve pellicle integrity during invasion. GAP45 is essential for gliding, invasion, and...
A conserved acto-myosin motor complex is implicated in parasite motility and host invasion by a wide...
Gliding motility is an essential and fascinating apicomplexan-typical adaptation to an intracellular...
The apicomplexans are obligate intracellular protozoan parasites that rely on gliding motility for t...
SummaryThe glideosome of apicomplexan parasites is an actin- and myosin-based machine located at the...
International audienceThe glideosome of apicomplexan parasites is an actin- and myosin-based machine...
The phylum Apicomplexa are a group of obligate intracellular parasites responsible for a wide range ...
The glideosome is an actomyosin-based machinery that powers motility in Apicomplexa and participates...
The glideosome is an actomyosin-based machinery that powers motility in Apicomplexa and participates...
<div><p>The glideosome is an actomyosin-based machinery that powers motility in Apicomplexa and part...
Apicomplexan parasites possess a highly conserved molecular motor associated to motility. This machi...
An actomyosin motor complex assembled below the parasite's plasma membrane drives erythrocyte invasi...
<p><b>A.</b> The parasite motor (glideosome) is located in the space between the parasite plasma mem...
Members of the phylum Apicomplexa possess a highly conserved molecular motor complex anchored in the...
The most deadly of the human malaria parasites, Plasmodium falciparum, has different stages speciali...
Gliding motility is an essential and fascinating apicomplexan-typical adaptation to an intracellular...
A conserved acto-myosin motor complex is implicated in parasite motility and host invasion by a wide...
Gliding motility is an essential and fascinating apicomplexan-typical adaptation to an intracellular...
The apicomplexans are obligate intracellular protozoan parasites that rely on gliding motility for t...
SummaryThe glideosome of apicomplexan parasites is an actin- and myosin-based machine located at the...
International audienceThe glideosome of apicomplexan parasites is an actin- and myosin-based machine...
The phylum Apicomplexa are a group of obligate intracellular parasites responsible for a wide range ...
The glideosome is an actomyosin-based machinery that powers motility in Apicomplexa and participates...
The glideosome is an actomyosin-based machinery that powers motility in Apicomplexa and participates...
<div><p>The glideosome is an actomyosin-based machinery that powers motility in Apicomplexa and part...
Apicomplexan parasites possess a highly conserved molecular motor associated to motility. This machi...
An actomyosin motor complex assembled below the parasite's plasma membrane drives erythrocyte invasi...
<p><b>A.</b> The parasite motor (glideosome) is located in the space between the parasite plasma mem...
Members of the phylum Apicomplexa possess a highly conserved molecular motor complex anchored in the...
The most deadly of the human malaria parasites, Plasmodium falciparum, has different stages speciali...
Gliding motility is an essential and fascinating apicomplexan-typical adaptation to an intracellular...
A conserved acto-myosin motor complex is implicated in parasite motility and host invasion by a wide...
Gliding motility is an essential and fascinating apicomplexan-typical adaptation to an intracellular...
The apicomplexans are obligate intracellular protozoan parasites that rely on gliding motility for t...