The bipolar spindle forms without centrosomes naturally in female meiosis and by experimental manipulation in mitosis. Augmin is a recently discovered protein complex required for centrosome-independent microtubule generation within the spindle in Drosophila melanogaster cultured cells. Five subunits of Augmin have been identified so far, but neither their organization within the complex nor their role in developing organisms is known. In this study, we report a new Augmin subunit, wee Augmin component (Wac). Wac directly interacts with another Augmin subunit, Dgt2, via its coiled-coil domain. Wac depletion in cultured cells, especially without functional centrosomes, causes severe defects in spindle assembly. We found that a wac deletion m...
Cell division critically requires amplification of microtubules (MTs) in the bipolar mitotic spindle...
The hetero-octameric protein complex, Augmin, recruits γ-Tubulin Ring Complex (γ-TuRC) to pre-existi...
Bipolar spindle formation is pivotal for accurate segregation of mitotic chromosomes during cell div...
The bipolar spindle forms without centrosomes naturally in female meiosis and by experimental manipu...
The bipolar spindle forms without centrosomes naturally in female meiosis and by experimental manipu...
In order for life to continue, proper segregation of genetic materials by the process of mitosis is ...
© 2008 Goshima et al. This article is distributed under the terms of a Creative Commons License (Att...
Since the discovery of gamma-tubulin, attention has focused on its involvement as a microtubule nucl...
Since the discovery of gamma-tubulin, attention has focused on its involvement as a microtubule nucl...
In the oocytes of many animals including humans, the meiotic spindle assembles without centrosomes. ...
Eukaryotic cell division requires the mitotic spindle, a microtubule (MT)-based structure which accu...
SummaryBackgroundThe assembly of a robust microtubule-based mitotic spindle is a prerequisite for th...
Animal cells divide using a microtubule-based, bipolar spindle. Both somatic, mitotic cells and sper...
Accurate segregation of chromosomes is required to maintain genome integrity during cell division. T...
BACKGROUND: The assembly of a robust microtubule-based mitotic spindle is a prerequisite for the acc...
Cell division critically requires amplification of microtubules (MTs) in the bipolar mitotic spindle...
The hetero-octameric protein complex, Augmin, recruits γ-Tubulin Ring Complex (γ-TuRC) to pre-existi...
Bipolar spindle formation is pivotal for accurate segregation of mitotic chromosomes during cell div...
The bipolar spindle forms without centrosomes naturally in female meiosis and by experimental manipu...
The bipolar spindle forms without centrosomes naturally in female meiosis and by experimental manipu...
In order for life to continue, proper segregation of genetic materials by the process of mitosis is ...
© 2008 Goshima et al. This article is distributed under the terms of a Creative Commons License (Att...
Since the discovery of gamma-tubulin, attention has focused on its involvement as a microtubule nucl...
Since the discovery of gamma-tubulin, attention has focused on its involvement as a microtubule nucl...
In the oocytes of many animals including humans, the meiotic spindle assembles without centrosomes. ...
Eukaryotic cell division requires the mitotic spindle, a microtubule (MT)-based structure which accu...
SummaryBackgroundThe assembly of a robust microtubule-based mitotic spindle is a prerequisite for th...
Animal cells divide using a microtubule-based, bipolar spindle. Both somatic, mitotic cells and sper...
Accurate segregation of chromosomes is required to maintain genome integrity during cell division. T...
BACKGROUND: The assembly of a robust microtubule-based mitotic spindle is a prerequisite for the acc...
Cell division critically requires amplification of microtubules (MTs) in the bipolar mitotic spindle...
The hetero-octameric protein complex, Augmin, recruits γ-Tubulin Ring Complex (γ-TuRC) to pre-existi...
Bipolar spindle formation is pivotal for accurate segregation of mitotic chromosomes during cell div...