Lis1 acts as a "clutch" between the ATPase and microtubule-binding domains of the dynein motor.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 22939623.
- Also identified by DOI 10.1016/j.cell.2012.07.022 and PMC identifier 3438448.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
The lissencephaly protein Lis1 has been reported to regulate the mechanical behavior of cytoplasmic dynein, the primary minus-end-directed microtubule motor. However, the regulatory mechanism remains poorly understood. Here, we address this issue using purified proteins from Saccharomyces cerevisiae and a combination of techniques, including single-molecule imaging and single-particle electron microscopy. We show that rather than binding to the main ATPase site within dynein's AAA+ ring or its microtubule-binding stalk directly, Lis1 engages the interface between these elements. Lis1 causes individual dynein motors to remain attached to microtubules for extended periods, even during cycles of ATP hydrolysis that would canonically induce detachment. Thus, Lis1 operates like a "clutch" that prevents dynein's ATPase domain from transmitting a detachment signal to its track-binding domain. We discuss how these findings provide a conserved mechanism for dynein functions in living cells that require prolonged microtubule attachments.
Medical subject headings
- 1-Alkyl-2-acetylglycerophosphocholine Esterase
- Dyneins
- Microtubule-Associated Proteins