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  The C. elegans RSA complex localizes protein phosphatase 2A to centrosomes and regulates mitotic spindle assembly

Schlaitz, A.-L., Srayko, M., Dammermann, A., Quintin, S., Wielsch, N., MacLeod, I., et al. (2007). The C. elegans RSA complex localizes protein phosphatase 2A to centrosomes and regulates mitotic spindle assembly. Cell, 128(1), 115-127.

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 Creators:
Schlaitz, Anne-Lore1, Author           
Srayko, Martin1, Author           
Dammermann, Alexander, Author
Quintin, Sophie1, Author           
Wielsch, Natalie1, Author           
MacLeod, Ian, Author
Robillard, Quentin de, Author
Zinke, Andrea1, Author           
Yates, John R., Author
Muller-Reichert, Thomas1, Author           
Shevchenko, Andrej1, Author           
Oegema, Karen1, Author           
Hyman, Anthony A.1, Author           
Affiliations:
1Max Planck Institute of Molecular Cell Biology and Genetics, Max Planck Society, ou_2340692              

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 Abstract: Microtubule behavior changes during the cell cycle and during spindle assembly. However, it remains unclear how these changes are regulated and coordinated. We describe a complex that targets the Protein Phosphatase 2A holoenzyme (PP2A) to centrosomes in C. elegans embryos. This complex includes Regulator of Spindle Assembly 1 (RSA-1), a targeting subunit for PP2A, and RSA-2, a protein that binds and recruits RSA-1 to centrosomes. In contrast to the multiple functions of the PP2A catalytic subunit, RSA-1 and RSA-2 are specifically required for microtubule outgrowth from centrosomes and for spindle assembly. The centrosomally localized RSA-PP2A complex mediates these functions in part by regulating two critical mitotic effectors: the microtubule destabilizer KLP-7 and the C. elegans regulator of spindle assembly TPXL-1. By regulating a subset of PP2A functions at the centrosome, the RSA complex could therefore provide a means of coordinating microtubule outgrowth from centrosomes and kinetochore microtubule stability during mitotic spindle assembly.

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 Dates: 2007
 Publication Status: Issued
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 Identifiers: eDoc: 348595
Other: 823
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Title: Cell
Source Genre: Journal
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Pages: - Volume / Issue: 128 (1) Sequence Number: - Start / End Page: 115 - 127 Identifier: -