Two classes of dynein power long-distance cargo transport in different cellular contexts. Cytoplasmic dynein-1 is responsible for the majority of transport toward microtubule minus ends in the cell interior. Dynein-2, also known as intraflagellar transport dynein, moves cargoes along the axoneme of eukaryotic cilia and flagella. Both dyneins operate as large ATP-driven motor complexes, whose dysfunction is associated with a group of human disorders. But how similar are their mechanisms of action and regulation? To examine this question, this review focuses on recent advances in dynein-1 and -2 research, and probes to what extent the emerging principles of dynein-1 transport could apply to or differ from those of the less well-understood dyn...
Active transport is integral to organelle localization and their distribution within the cell. Kines...
Cytoplasmic dynein 1 (hereafter referred to simply as dynein) is a dimeric motor protein that walks ...
Background: Cytoplasmic dynein is the molecular motor responsible for most retrograde microtubule-ba...
Two classes of dynein power long-distance cargo transport in different cellular contexts. Cytoplasmi...
Cilia are multi-functional organelles that are constructed using intraflagellar transport (IFT) of c...
AbstractDyneins are large multi-component microtubule-based molecular motors involved in many fundam...
Dyneins make up a family of AAA+ motors that move toward the minus end of microtubules. Cytoplasmic ...
AbstractIn neurons, cytoplasmic dynein is synthesized in the cell body, but its function is to move ...
AbstractDynein is a large cytoskeletal motor protein that belongs to the AAA+ (ATPases associated wi...
Transport of cargos not only plays a critical role on the meter scale in our daily life when we trav...
Dyneins are highly complex, multicomponent, microtubule-based molecular motors. These enzymes are re...
AbstractCytoplasmic dynein is a microtubule (MT) motor protein comprising two classes: dynein-1 and ...
This chapter provides a brief background on intraflagellar transport (IFT) and reviews the studies c...
The flagellum is a key innovation linked to eukaryogenesis. It provides motility by regulated cycles...
Active transport is integral to organelle localization and their distribution within the cell. Kines...
Active transport is integral to organelle localization and their distribution within the cell. Kines...
Cytoplasmic dynein 1 (hereafter referred to simply as dynein) is a dimeric motor protein that walks ...
Background: Cytoplasmic dynein is the molecular motor responsible for most retrograde microtubule-ba...
Two classes of dynein power long-distance cargo transport in different cellular contexts. Cytoplasmi...
Cilia are multi-functional organelles that are constructed using intraflagellar transport (IFT) of c...
AbstractDyneins are large multi-component microtubule-based molecular motors involved in many fundam...
Dyneins make up a family of AAA+ motors that move toward the minus end of microtubules. Cytoplasmic ...
AbstractIn neurons, cytoplasmic dynein is synthesized in the cell body, but its function is to move ...
AbstractDynein is a large cytoskeletal motor protein that belongs to the AAA+ (ATPases associated wi...
Transport of cargos not only plays a critical role on the meter scale in our daily life when we trav...
Dyneins are highly complex, multicomponent, microtubule-based molecular motors. These enzymes are re...
AbstractCytoplasmic dynein is a microtubule (MT) motor protein comprising two classes: dynein-1 and ...
This chapter provides a brief background on intraflagellar transport (IFT) and reviews the studies c...
The flagellum is a key innovation linked to eukaryogenesis. It provides motility by regulated cycles...
Active transport is integral to organelle localization and their distribution within the cell. Kines...
Active transport is integral to organelle localization and their distribution within the cell. Kines...
Cytoplasmic dynein 1 (hereafter referred to simply as dynein) is a dimeric motor protein that walks ...
Background: Cytoplasmic dynein is the molecular motor responsible for most retrograde microtubule-ba...