XMAP215, CLASP, and Crescerin use arrayed tubulin-binding tumor overexpressed gene (TOG) domains to modulate microtubule dynamics. We hypothesized that TOGs have distinct architectures and tubulin-binding properties that underlie each family’s ability to promote microtubule polymerization or pause. As a model, we investigated the pentameric TOG array of a Drosophila melanogaster XMAP215 member, Msps. We found that Msps TOGs have distinct architectures that bind either free or polymerized tubulin, and that a polarized array drives microtubule polymerization. An engineered TOG1-2-5 array fully supported Msps-dependent microtubule polymerase activity. Requisite for this activity was a TOG5-specific N-terminal HEAT repeat that engaged microtubu...
SummaryCLASP is a key regulator of microtubule (MT) dynamics and bipolar mitotic spindle structure w...
SummaryMembers of the XMAP215/Dis1 family of microtubule-associated proteins (MAPs) are essential fo...
CLASP proteins play crucial roles in regulating microtubules. In this issue of Structure, Leano and ...
XMAP215, CLASP, and Crescerin use arrayed tubulin-binding tumor overexpressed gene (TOG) domains to ...
Microtubules (MTs) are cytoskeletal polymers composed of αβ-tubulin that undergo phases of polymeriz...
Microtubules (MTs) are dynamic polymers that regulate cellular processes including intracellular tra...
Structures of Drosophila Msps TOG4 and human ch-TOG TOG4 are presented. TOG4 departs from the other ...
Microtubule-associated proteins regulate microtubule (MT) dynamics spatially and temporally, which i...
ABSTRACT XMAP215 family members are potent microtubule (MT) polymerases, with mu-tants displaying re...
CLASP is a key regulator of microtubule (MT) dynamics and bipolar mitotic spindle structure with CLA...
An in vivo structure–function analysis of the Drosophila homologue Mini spindles (Msps) identified n...
Microtubules (MTs) are highly dynamic polymers that provide tracks for cargo transport within the ce...
How multiple spindle assembly pathways are integrated to drive bipolar spindle assembly is poorly un...
CLASP is a key regulator of microtubule (MT) dynamics and bipolar mitotic spindle formation, with mu...
© 2019 Cook et al.XMAP215/Stu2/Alp14 accelerates tubulin polymerization while processively tracking ...
SummaryCLASP is a key regulator of microtubule (MT) dynamics and bipolar mitotic spindle structure w...
SummaryMembers of the XMAP215/Dis1 family of microtubule-associated proteins (MAPs) are essential fo...
CLASP proteins play crucial roles in regulating microtubules. In this issue of Structure, Leano and ...
XMAP215, CLASP, and Crescerin use arrayed tubulin-binding tumor overexpressed gene (TOG) domains to ...
Microtubules (MTs) are cytoskeletal polymers composed of αβ-tubulin that undergo phases of polymeriz...
Microtubules (MTs) are dynamic polymers that regulate cellular processes including intracellular tra...
Structures of Drosophila Msps TOG4 and human ch-TOG TOG4 are presented. TOG4 departs from the other ...
Microtubule-associated proteins regulate microtubule (MT) dynamics spatially and temporally, which i...
ABSTRACT XMAP215 family members are potent microtubule (MT) polymerases, with mu-tants displaying re...
CLASP is a key regulator of microtubule (MT) dynamics and bipolar mitotic spindle structure with CLA...
An in vivo structure–function analysis of the Drosophila homologue Mini spindles (Msps) identified n...
Microtubules (MTs) are highly dynamic polymers that provide tracks for cargo transport within the ce...
How multiple spindle assembly pathways are integrated to drive bipolar spindle assembly is poorly un...
CLASP is a key regulator of microtubule (MT) dynamics and bipolar mitotic spindle formation, with mu...
© 2019 Cook et al.XMAP215/Stu2/Alp14 accelerates tubulin polymerization while processively tracking ...
SummaryCLASP is a key regulator of microtubule (MT) dynamics and bipolar mitotic spindle structure w...
SummaryMembers of the XMAP215/Dis1 family of microtubule-associated proteins (MAPs) are essential fo...
CLASP proteins play crucial roles in regulating microtubules. In this issue of Structure, Leano and ...