Centriolin Anchoring of Exocyst and SNARE Complexes at the Midbody Is Required for Secretory-Vesicle-Mediated Abscission
نویسندگان
چکیده
The terminal step in cytokinesis, called abscission, requires resolution of the membrane connection between two prospective daughter cells. Our previous studies demonstrated that the coiled-coil protein centriolin localized to the midbody during cytokinesis and was required for abscission. Here we show that centriolin interacts with proteins of vesicle-targeting exocyst complexes and vesicle-fusion SNARE complexes. These complexes require centriolin for localization to a unique midbody-ring structure, and disruption of either complex inhibits abscission. Exocyst disruption induces accumulation of v-SNARE-containing vesicles at the midbody ring. In control cells, these v-SNARE vesicles colocalize with a GFP-tagged secreted polypeptide. The vesicles move to the midbody ring asymmetrically from one prospective daughter cell; the GFP signal is rapidly lost, suggesting membrane fusion; and subsequently the cell cleaves at the site of vesicle delivery/fusion. We propose that centriolin anchors protein complexes required for vesicle targeting and fusion and integrates membrane-vesicle fusion with abscission.
منابع مشابه
Perturbation and Modulation of Microtubule Cytoskeletal Elements in Response to the Potentially Oncogenic Molecules, Survivin and P53, and Cytokinesis: A Dissertation
List of Figures Chapter 1: Introduction Chapter 2: Survivin Modulates Microtubule Dynamics and Nucleation Throughout the Cell Cycle Chapter 3: Centriolin Anchoring of Exocyst and SNARE Complexes at the Midbody is Required for Secretory-Vesicle-Mediated Abscission Chapter 4: A Transactivation-deficient p53 Mutant Has the Potential to Induce Severe Tumor Phenotypes and Centrosome-specific Abnorma...
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ورودعنوان ژورنال:
- Cell
دوره 123 شماره
صفحات -
تاریخ انتشار 2005