SummaryIn motile fibroblasts, stable microtubules (MTs) are oriented toward the leading edge of cells [1]. How these polarized MT arrays are established and maintained, and the cellular processes they control, have been the subject of many investigations. Several MT “plus-end-tracking proteins,” or +TIPs [2], have been proposed to regulate selective MT stabilization, including the CLASPs [3], a complex of CLIP-170, IQGAP1, activated Cdc42 or Rac1 [4], a complex of APC, EB1, and mDia1 [5], and the actin-MT crosslinking factor ACF7 [6]. By using mouse embryonic fibroblasts (MEFs) in a wound-healing assay, we show here that CLASP2 is required for the formation of a stable, polarized MT array but that CLIP-170 and an APC-EB1 interaction are not...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
Mammalian cytoplasmic linker associated protein 1 and -2 (CLASP1 and -2) are microtubule (MT) plus-e...
SummaryIn motile fibroblasts, stable microtubules (MTs) are oriented toward the leading edge of cell...
In motile fibroblasts, stable microtubules (MTs) are oriented toward the leading edge of cells. How ...
Contains fulltext : 50157.pdf (publisher's version ) (Closed access)In motile fibr...
SummaryCLASPs are mammalian microtubule-stabilizing proteins that can mediate the interaction betwee...
SummaryMammalian CLASPs are microtubule plus-end tracking proteins whose essential function as regul...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
SummaryMicrotubule (MT) plus-end tracking proteins (+TIPs) preferentially localize to MT plus ends. ...
AbstractOne of the most intriguing aspects of mitosis is the ability of kinetochores to hold onto pl...
Mammalian cytoplasmic linker associated protein 1 and -2 (CLASP1 and -2) are microtubule (MT) plus-e...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
Mammalian cytoplasmic linker associated protein 1 and -2 (CLASP1 and -2) are microtubule (MT) plus-e...
SummaryIn motile fibroblasts, stable microtubules (MTs) are oriented toward the leading edge of cell...
In motile fibroblasts, stable microtubules (MTs) are oriented toward the leading edge of cells. How ...
Contains fulltext : 50157.pdf (publisher's version ) (Closed access)In motile fibr...
SummaryCLASPs are mammalian microtubule-stabilizing proteins that can mediate the interaction betwee...
SummaryMammalian CLASPs are microtubule plus-end tracking proteins whose essential function as regul...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
SummaryMicrotubule (MT) plus-end tracking proteins (+TIPs) preferentially localize to MT plus ends. ...
AbstractOne of the most intriguing aspects of mitosis is the ability of kinetochores to hold onto pl...
Mammalian cytoplasmic linker associated protein 1 and -2 (CLASP1 and -2) are microtubule (MT) plus-e...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
Spatial regulation of microtubule (MT) dynamics contributes to cell polarity and cell division. MT r...
Mammalian cytoplasmic linker associated protein 1 and -2 (CLASP1 and -2) are microtubule (MT) plus-e...