2007
DOI: 10.1038/sj.onc.1210867
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MCAK associates with EB1

Abstract: The microtubule (MT)-associated protein EB1 localizes to and promotes growth at MT plus ends. The MT depolymerizing kinesin MCAK has also been reported to track growing MT plus ends. Here, we confirm that human MCAK colocalizes with EB1 at growing MT ends when expressed as a GFP fusion protein in transfected cells. We show that MCAK associates with the C-terminus of EB1 and EB3 but much less efficiently with RP1. EB1 associates with the N-terminal localization and regulatory domain in MCAK but not with the mot… Show more

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Cited by 66 publications
(62 citation statements)
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“…5 and 6B), KIF18B is suggested to perform following functions. First, it may be involved in transporting target molecules (or organelles) through interaction with interphase MTs like many other kinesins and references therein) or in regulating MT dynamics and reorganization as done by MCAK, a MT-depolymerizing kinesin (Lee et al, 2008). Second, up-regulation at late G 2 through metaphase may be required in positioning of the spindle poles through interaction with astral MTs in early mitotic cells.…”
Section: Discussionmentioning
confidence: 99%
“…5 and 6B), KIF18B is suggested to perform following functions. First, it may be involved in transporting target molecules (or organelles) through interaction with interphase MTs like many other kinesins and references therein) or in regulating MT dynamics and reorganization as done by MCAK, a MT-depolymerizing kinesin (Lee et al, 2008). Second, up-regulation at late G 2 through metaphase may be required in positioning of the spindle poles through interaction with astral MTs in early mitotic cells.…”
Section: Discussionmentioning
confidence: 99%
“…Another example is the direct association of EB1 family members with MCAK, a potent microtubule depolymerase [Lee et al, 2008]. In an in vitro reconstitution system, EB3, which facilitates tubulin assembly, targets MCAK to the growing microtubule ends and enhances the capacity of MCAK to induce catastrophes, resulting in increase of overall microtubule dynamicity in the system [Montenegro Gouveia et al, 2010].…”
Section: Molecules Involved In Microtubule End Positioningmentioning
confidence: 99%
“…Human MAPRE1 (EB1), MAPRE2 (EB2/RP1), and MAPRE3 (EB3/EBF3) have been shown to associate with microtubules both in vivo and in vitro (17)(18)(19). These microtubule associated proteins display specific localization to growing plus ends of the microtubules, thereby regulating their dynamics (19).…”
Section: Discussionmentioning
confidence: 99%