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  4. Functional characterization of AIBp, a novel Aurora-A binding protein in centrosome structure and spindle formation
 
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Functional characterization of AIBp, a novel Aurora-A binding protein in centrosome structure and spindle formation

Resource
INTERNATIONAL JOURNAL OF ONCOLOGY, 37(2), 426-436
Journal
International Journal of Oncology
Date Issued
2010
Date
2010
Author(s)
Lieu, Ann-Shung
Chang, Li-Kwan et al.  
DOI
10.3892/ijo_00000691
URI
http://ntur.lib.ntu.edu.tw//handle/246246/243179
Abstract
Aurora-A is involved in chromosome alignment, centrosome maturation, mitotic spindle assembly and regards to an oncogene. Aurora-A is also known to bind to several other proteins affecting its up-regulation or down-regulation and localization. However, how these different binding signals work together to regulate Aurora-A is not properly known. To explore more Aurora-A interacting proteins, the low-copy yeast two-hybrid screening using Aurora-A as bait protein was performed. One novel gene, AIBp, was demonstrated to associate with Aurora-A by the yeast two-hybrid method and in vitro GST pull-down assay. Molecular characterization showed that AIBp possessed a binding site at the C-terminal with Aurora-A (kinase domain). Interestingly, AIBp also interacts with hNinein at the N-terminal, which overlaps with a previously reported hNinein and GSK3beta binding site. Using a kinase assay, AIBp interacts with the Aurora-A kinase domain functions as a positive regulator, whereas AIBp binding to hNinein appears to block the phosphorylation of hNinein by both Aurora-A and GSK3beta. siRNA-mediated elimination of AIBp from HeLa cells, results in a doughnut-like shape, asymmetrical spindle pole and multiple spindle pole formation. We also demonstrated that both AIBp and Aurora-A are co-overexpressed in various brain tumors. These studies demonstrate that AIBp may not only be required for the dynamic movement of Aurora-A at the centrosomes and spindle apparatus during the cell cycle, but may also be important during brain tumorigenesis.
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journal article
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