ATP-dependent severing of microtubules was first reported in Xenopus laevis egg extracts in 1991. Two years later this observation led to the purification of the first known microtubule-severing enzyme, katanin. Katanin homologs have now been identified throughout the animal kingdom and in plants. Moreover, members of two closely related enzyme subfamilies, spastin and fidgetin, have been found to sever microtubules and might act alongside katanins in some contexts (Roll-Mecak and McNally, 2010; Yu et al., 2008; Zhang et al., 2007). Over the past few years, it has become clear that microtubule-severing enzymes contribute to a wide range of cellular activities including mitosis and meiosis, morphogenesis, cilia biogenesis and disassembly, an...
Katanin is a heterodimer that exhibits ATP-dependent microtubule-severing activity in vitro. In Xeno...
Cytoskeleton is a dynamic system which contributes to a variety of cellular pro- cesses, for example...
The katanin family of microtubule-severing enzymes is critical for cytoskeletal rearrangements that ...
Microtubule-severing enzymes generate internal breaks in microtubules. They are conserved in eukaryo...
Although considerable in girth (25 nm) and held together by multiple tubulin–tubulin interactions, m...
Two related enzymes, katanin and spastin, use the energy from ATP hydrolysis to sever microtubules. ...
Microtubule (MT) length and location is tightly controlled in cells. One novel family of MT-associat...
AbstractMicrotubule (MT) length and location is tightly controlled in cells. One novel family of MT-...
AbstractThe microtubule-severing enzyme katanin uses ATP hydrolysis to disrupt noncovalent bonds bet...
ABSTRACT The microtubule-severing enzyme katanin uses ATP hydrolysis to disrupt noncovalent bonds be...
AbstractMicrotubule dynamics in cells are regulated by associated proteins that can be either stabil...
Ewkaryotic cells rapidly reorganize their microtubule cytoskeleton during the cell cycle, differenti...
Summary: Katanin was the first microtubule (MT)-severing enzyme discovered, but how katanin executes...
Microtubule cytoskeleton is a dynamic filamentous network, whose reorga- nization underpins importan...
Microtubule severing is a biochemical reaction that generates an internal break in a microtubule and...
Katanin is a heterodimer that exhibits ATP-dependent microtubule-severing activity in vitro. In Xeno...
Cytoskeleton is a dynamic system which contributes to a variety of cellular pro- cesses, for example...
The katanin family of microtubule-severing enzymes is critical for cytoskeletal rearrangements that ...
Microtubule-severing enzymes generate internal breaks in microtubules. They are conserved in eukaryo...
Although considerable in girth (25 nm) and held together by multiple tubulin–tubulin interactions, m...
Two related enzymes, katanin and spastin, use the energy from ATP hydrolysis to sever microtubules. ...
Microtubule (MT) length and location is tightly controlled in cells. One novel family of MT-associat...
AbstractMicrotubule (MT) length and location is tightly controlled in cells. One novel family of MT-...
AbstractThe microtubule-severing enzyme katanin uses ATP hydrolysis to disrupt noncovalent bonds bet...
ABSTRACT The microtubule-severing enzyme katanin uses ATP hydrolysis to disrupt noncovalent bonds be...
AbstractMicrotubule dynamics in cells are regulated by associated proteins that can be either stabil...
Ewkaryotic cells rapidly reorganize their microtubule cytoskeleton during the cell cycle, differenti...
Summary: Katanin was the first microtubule (MT)-severing enzyme discovered, but how katanin executes...
Microtubule cytoskeleton is a dynamic filamentous network, whose reorga- nization underpins importan...
Microtubule severing is a biochemical reaction that generates an internal break in a microtubule and...
Katanin is a heterodimer that exhibits ATP-dependent microtubule-severing activity in vitro. In Xeno...
Cytoskeleton is a dynamic system which contributes to a variety of cellular pro- cesses, for example...
The katanin family of microtubule-severing enzymes is critical for cytoskeletal rearrangements that ...