The massive dynein motor complexes that drive ciliary and flagellar motility require cytoplasmic preassembly, a process requiring dedicated dynein assembly factors (DNAAFs). How DNAAFs interact with molecular chaperones to control dynein assembly is not clear. By analogy with the well-known multifunctional HSP90-associated cochaperone, R2TP, several DNAAFs have been suggested to perform novel R2TP-like functions. However, the involvement of R2TP itself (canonical R2TP) in dynein assembly remains unclear. Here we show that in Drosophila melanogaster, the R2TP-associated factor, Wdr92, is required exclusively for axonemal dynein assembly, likely in association with canonical R2TP. Proteomic analyses suggest that in addition to being a regulat...
Dyneins are highly complex, multicomponent, microtubule-based molecular motors. These enzymes are re...
Cilia are highly conserved microtubule-based structures that perform a variety of sensory and motili...
Cilia are highly conserved microtubule-based structures that perform a variety of sensory and motili...
Motile cilia are specialised cell-types which in humans have important roles in the linings of the...
Molecular chaperones promote the folding and macromolecular assembly of a diverse set of ‘client’ pr...
Motile cilia have many developmental and physiological functions. The hallmark of motile cilia are ...
By moving essential body fluids and molecules, motile cilia and flagella govern respiratory mucocili...
Motile cilia and flagella are essential to many biological functions that require cellular or fluid ...
By moving essential body fluids and molecules, motile cilia and flagella govern respiratory mucocili...
Dyneins are highly complex, multicomponent, microtubule-based molecular motors. These enzymes are re...
Cilia are highly conserved microtubule-based structures that perform a variety of sensory and motili...
Cilia are highly conserved microtubule-based structures that perform a variety of sensory and motili...
Motile cilia are specialised cell-types which in humans have important roles in the linings of the...
Molecular chaperones promote the folding and macromolecular assembly of a diverse set of ‘client’ pr...
Motile cilia have many developmental and physiological functions. The hallmark of motile cilia are ...
By moving essential body fluids and molecules, motile cilia and flagella govern respiratory mucocili...
Motile cilia and flagella are essential to many biological functions that require cellular or fluid ...
By moving essential body fluids and molecules, motile cilia and flagella govern respiratory mucocili...
Dyneins are highly complex, multicomponent, microtubule-based molecular motors. These enzymes are re...
Cilia are highly conserved microtubule-based structures that perform a variety of sensory and motili...
Cilia are highly conserved microtubule-based structures that perform a variety of sensory and motili...