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Items: 1 to 20 of 166

1.

SAS-6 defines a protein family required for centrosome duplication in C. elegans and in human cells.

Leidel S, Delattre M, Cerutti L, Baumer K, Gönczy P.

Nat Cell Biol. 2005 Feb;7(2):115-25.

PMID:
15665853
2.

Centriolar SAS-5 is required for centrosome duplication in C. elegans.

Delattre M, Leidel S, Wani K, Baumer K, Bamat J, Schnabel H, Feichtinger R, Schnabel R, Gönczy P.

Nat Cell Biol. 2004 Jul;6(7):656-64.

PMID:
15232593
3.

Sequential protein recruitment in C. elegans centriole formation.

Delattre M, Canard C, Gönczy P.

Curr Biol. 2006 Sep 19;16(18):1844-9.

4.

PP2A phosphatase acts upon SAS-5 to ensure centriole formation in C. elegans embryos.

Kitagawa D, Flückiger I, Polanowska J, Keller D, Reboul J, Gönczy P.

Dev Cell. 2011 Apr 19;20(4):550-62. doi: 10.1016/j.devcel.2011.02.005.

5.

Phosphorylation of SAS-6 by ZYG-1 is critical for centriole formation in C. elegans embryos.

Kitagawa D, Busso C, Flückiger I, Gönczy P.

Dev Cell. 2009 Dec;17(6):900-7. doi: 10.1016/j.devcel.2009.11.002.

6.

SAS-4 is a C. elegans centriolar protein that controls centrosome size.

Kirkham M, Müller-Reichert T, Oegema K, Grill S, Hyman AA.

Cell. 2003 Feb 21;112(4):575-87.

7.

Centriole assembly in Caenorhabditis elegans.

Pelletier L, O'Toole E, Schwager A, Hyman AA, Müller-Reichert T.

Nature. 2006 Nov 30;444(7119):619-23.

PMID:
17136092
8.

The C. elegans zyg-1 gene encodes a regulator of centrosome duplication with distinct maternal and paternal roles in the embryo.

O'Connell KF, Caron C, Kopish KR, Hurd DD, Kemphues KJ, Li Y, White JG.

Cell. 2001 May 18;105(4):547-58.

9.

The Caenorhabditis elegans centrosomal protein SPD-2 is required for both pericentriolar material recruitment and centriole duplication.

Pelletier L, Ozlü N, Hannak E, Cowan C, Habermann B, Ruer M, Müller-Reichert T, Hyman AA.

Curr Biol. 2004 May 25;14(10):863-73. Erratum in: Curr Biol. 2006 Jun 20;16(12):1255.

11.

Asterless is a centriolar protein required for centrosome function and embryo development in Drosophila.

Varmark H, Llamazares S, Rebollo E, Lange B, Reina J, Schwarz H, Gonzalez C.

Curr Biol. 2007 Oct 23;17(20):1735-45. Epub 2007 Oct 11.

12.

Centrosome duplication and nematodes: recent insights from an old relationship.

Leidel S, Gönczy P.

Dev Cell. 2005 Sep;9(3):317-25. Review.

13.

Centrosome duplication: of rules and licenses.

Nigg EA.

Trends Cell Biol. 2007 May;17(5):215-21. Epub 2007 Mar 26. Review.

PMID:
17383880
14.

Centrosome maturation and duplication in C. elegans require the coiled-coil protein SPD-2.

Kemp CA, Kopish KR, Zipperlen P, Ahringer J, O'Connell KF.

Dev Cell. 2004 Apr;6(4):511-23.

15.

Self-assembling SAS-6 multimer is a core centriole building block.

Gopalakrishnan J, Guichard P, Smith AH, Schwarz H, Agard DA, Marco S, Avidor-Reiss T.

J Biol Chem. 2010 Mar 19;285(12):8759-70. doi: 10.1074/jbc.M109.092627. Epub 2010 Jan 18.

16.

The mammalian SPD-2 ortholog Cep192 regulates centrosome biogenesis.

Zhu F, Lawo S, Bird A, Pinchev D, Ralph A, Richter C, Müller-Reichert T, Kittler R, Hyman AA, Pelletier L.

Curr Biol. 2008 Jan 22;18(2):136-41. doi: 10.1016/j.cub.2007.12.055.

17.

The arithmetic of centrosome biogenesis.

Delattre M, Gönczy P.

J Cell Sci. 2004 Apr 1;117(Pt 9):1619-30. Review.

18.

Dispatch. Centrosome biology: a SAS-sy centriole in the cell cycle.

Wong C, Stearns T.

Curr Biol. 2003 Apr 29;13(9):R351-2. Review.

19.

Direct binding of SAS-6 to ZYG-1 recruits SAS-6 to the mother centriole for cartwheel assembly.

Lettman MM, Wong YL, Viscardi V, Niessen S, Chen SH, Shiau AK, Zhou H, Desai A, Oegema K.

Dev Cell. 2013 May 13;25(3):284-98. doi: 10.1016/j.devcel.2013.03.011.

20.

The MST1 and hMOB1 tumor suppressors control human centrosome duplication by regulating NDR kinase phosphorylation.

Hergovich A, Kohler RS, Schmitz D, Vichalkovski A, Cornils H, Hemmings BA.

Curr Biol. 2009 Nov 3;19(20):1692-702. doi: 10.1016/j.cub.2009.09.020.

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