The Katanin family of microtubule-severing enzymes is critical for remodeling microtubule-based structures that influence cell division, motility, morphogenesis and signaling. Katanin is composed of a catalytic p60 subunit (A subunit, KATNA1) and a regulatory p80 subunit (B subunit, KATNB1). The mammalian genome also encodes two additional A-like subunits (KATNAL1 and KATNAL2) and one additional B-like subunit (KATNBL1) that have remained poorly characterized. To better understand the factors and mechanisms controlling mammalian microtubule-severing, we have taken a mass proteomic approach to define the protein interaction module for each mammalian Katanin subunit and to generate the mammalian Katanin family interaction network (Katan-ome)....
AbstractMicrotubule disassembly at centrosomes is involved in mitotic spindle function. The microtub...
Microtubule severing regulates cytoskeletal rearrangement underlying various cellular functions. Kat...
Summary: Katanin was the first microtubule (MT)-severing enzyme discovered, but how katanin executes...
The Katanin family of microtubule-severing enzymes is critical for remodeling microtubule-based stru...
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 is a biochemical reaction that generates an internal break in a microtubule and...
Katanin is a microtubule-severing enzyme that is crucial for many cellular processes. Katanin consis...
Katanin microtubule-severing enzymes are crucial executers of microtubule regulation. Here, we have ...
CAMSAP/Patronin family members regulate the organization and stability of microtubule minus ends in ...
<div><p>The completion of cytokinesis is crucial for mitotic cell division. Cleavage furrow ingressi...
Microtubule cytoskeleton is a dynamic filamentous network, whose reorga- nization underpins importan...
The completion of cytokinesis is crucial for mitotic cell division. Cleavage furrow ingression is fo...
Microtubule severing is a biochemical reaction that generates an internal break in a microtubule and...
Katanin is an evolutionarily conserved microtubule-severing complex implicated in multiple aspects o...
AbstractMicrotubule disassembly at centrosomes is involved in mitotic spindle function. The microtub...
Microtubule severing regulates cytoskeletal rearrangement underlying various cellular functions. Kat...
Summary: Katanin was the first microtubule (MT)-severing enzyme discovered, but how katanin executes...
The Katanin family of microtubule-severing enzymes is critical for remodeling microtubule-based stru...
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 is a biochemical reaction that generates an internal break in a microtubule and...
Katanin is a microtubule-severing enzyme that is crucial for many cellular processes. Katanin consis...
Katanin microtubule-severing enzymes are crucial executers of microtubule regulation. Here, we have ...
CAMSAP/Patronin family members regulate the organization and stability of microtubule minus ends in ...
<div><p>The completion of cytokinesis is crucial for mitotic cell division. Cleavage furrow ingressi...
Microtubule cytoskeleton is a dynamic filamentous network, whose reorga- nization underpins importan...
The completion of cytokinesis is crucial for mitotic cell division. Cleavage furrow ingression is fo...
Microtubule severing is a biochemical reaction that generates an internal break in a microtubule and...
Katanin is an evolutionarily conserved microtubule-severing complex implicated in multiple aspects o...
AbstractMicrotubule disassembly at centrosomes is involved in mitotic spindle function. The microtub...
Microtubule severing regulates cytoskeletal rearrangement underlying various cellular functions. Kat...
Summary: Katanin was the first microtubule (MT)-severing enzyme discovered, but how katanin executes...