The augmin complex plays an essential role in microtubule (MT)-dependent MT nucleation by recruiting the γ-tubulin complex to MT walls to generate new MTs [1]. The complex contains eight subunits (designated AUG) including AUG8, which is an MT-associated protein (MAP). When this complex is isolated from etiolated seedlings consisting of primarily interphase cells in Arabidopsis thaliana, AUG8 is an integral component [ 2]. EDE1 (Endosperm DEfective 1) is homologous to AUG8 [3]. Here, we demonstrate that EDE1, but not AUG8, is associated with acentrosomal spindle and phragmoplast MT arrays in patterns indistinguishable from those of the AUG1–7 subunits and the γ-tubulin complex proteins (GCPs) that exhibit biased localization toward MT minus...
Bipolar spindle formation is pivotal for accurate segregation of mitotic chromosomes during cell div...
Accurate segregation of chromosomes is required to maintain genome integrity during cell division. T...
© The Author(s), 2013. This article is distributed under the terms of the Creative Commons Attribut...
The augmin complex plays an essential role in microtubule (MT)-dependent MT nucleation by recruiting...
SummaryMicrotubule (MT)-dependent MT nucleation by γ-tubulin is required for interphase plant cells ...
Microtubule (MT)-dependent MT nucleation by γ-tubulin is required for interphase plant cells to esta...
Eukaryotic cell division requires the mitotic spindle, a microtubule (MT)-based structure which accu...
Mitosis is a fundamental process of eukaryotic cell proliferation. However, the molecular mechanisms...
Augmin is a protein complex that binds to spindle microtubules (MTs), recruits the potent MT nucleat...
Augmin is a protein complex that binds to spindle microtubules (MTs), recruits the potent MT nucleat...
In order for life to continue, proper segregation of genetic materials by the process of mitosis is ...
<div><p>Augmin is a protein complex that binds to spindle microtubules (MTs), recruits the potent MT...
Cell division critically requires amplification of microtubules (MTs) in the bipolar mitotic spindle...
In angiosperms, mitosis and cytokinesis take place in the absence of structurally defined microtubul...
The Arabidopsis thaliana MOR1 (MICROTUBULE ORGANIZATION1) protein belongs to the MAP215/Dis1 family ...
Bipolar spindle formation is pivotal for accurate segregation of mitotic chromosomes during cell div...
Accurate segregation of chromosomes is required to maintain genome integrity during cell division. T...
© The Author(s), 2013. This article is distributed under the terms of the Creative Commons Attribut...
The augmin complex plays an essential role in microtubule (MT)-dependent MT nucleation by recruiting...
SummaryMicrotubule (MT)-dependent MT nucleation by γ-tubulin is required for interphase plant cells ...
Microtubule (MT)-dependent MT nucleation by γ-tubulin is required for interphase plant cells to esta...
Eukaryotic cell division requires the mitotic spindle, a microtubule (MT)-based structure which accu...
Mitosis is a fundamental process of eukaryotic cell proliferation. However, the molecular mechanisms...
Augmin is a protein complex that binds to spindle microtubules (MTs), recruits the potent MT nucleat...
Augmin is a protein complex that binds to spindle microtubules (MTs), recruits the potent MT nucleat...
In order for life to continue, proper segregation of genetic materials by the process of mitosis is ...
<div><p>Augmin is a protein complex that binds to spindle microtubules (MTs), recruits the potent MT...
Cell division critically requires amplification of microtubules (MTs) in the bipolar mitotic spindle...
In angiosperms, mitosis and cytokinesis take place in the absence of structurally defined microtubul...
The Arabidopsis thaliana MOR1 (MICROTUBULE ORGANIZATION1) protein belongs to the MAP215/Dis1 family ...
Bipolar spindle formation is pivotal for accurate segregation of mitotic chromosomes during cell div...
Accurate segregation of chromosomes is required to maintain genome integrity during cell division. T...
© The Author(s), 2013. This article is distributed under the terms of the Creative Commons Attribut...