Literature DB >> 12419187

GTP binding induces filament assembly of a recombinant septin.

Manuel Mendoza1, Anthony A Hyman, Michael Glotzer.   

Abstract

The septins are a family of GTPases involved in cytokinesis in budding yeast, Drosophila, and vertebrates (see for review). Septins are associated with a system of 10 nm filaments at the S. cerevisiae bud neck, and heteromultimeric septin complexes have been isolated from cell extracts in a filamentous state. A number of septins have been shown to bind and hydrolyze guanine nucleotide. However, the role of GTP binding and hydrolysis in filament formation has not been elucidated. Furthermore, several lines of evidence suggest that not all the subunits of the septin complex are required for all aspects of septin function. To address these questions, we have reconstituted filament assembly in vitro by using a recombinant Xenopus septin, Xl Sept2. Filament assembly is GTP dependent; moreover, the coiled-coil domain common to most septins is not essential for filament formation. Septin polymerization is preceded by a lag phase, suggesting a cooperative assembly mechanism. The slowly hydrolyzable GTP analog, GTP-gamma-S, also induces polymerization, indicating that polymerization does not require GTP hydrolysis. If the properties of Xl Sept2 filaments reflect those of native septin complexes, these results imply that the growth or stability of septin filaments, or both, is regulated by the state of bound nucleotide.

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Year:  2002        PMID: 12419187     DOI: 10.1016/s0960-9822(02)01258-7

Source DB:  PubMed          Journal:  Curr Biol        ISSN: 0960-9822            Impact factor:   10.834


  39 in total

1.  Requirements of fission yeast septins for complex formation, localization, and function.

Authors:  Hanbing An; Jennifer L Morrell; Jennifer L Jennings; Andrew J Link; Kathleen L Gould
Journal:  Mol Biol Cell       Date:  2004-09-22       Impact factor: 4.138

Review 2.  Some assembly required: yeast septins provide the instruction manual.

Authors:  Matthias Versele; Jeremy Thorner
Journal:  Trends Cell Biol       Date:  2005-08       Impact factor: 20.808

3.  An RNA-binding protein, hnRNP A1, and a scaffold protein, septin 6, facilitate hepatitis C virus replication.

Authors:  Chon Saeng Kim; Su Kyoung Seol; Ok-Kyu Song; Ji Hoon Park; Sung Key Jang
Journal:  J Virol       Date:  2007-01-17       Impact factor: 5.103

4.  Role of a Cdc42p effector pathway in recruitment of the yeast septins to the presumptive bud site.

Authors:  Masayuki Iwase; Jianying Luo; Satish Nagaraj; Mark Longtine; Hyong Bai Kim; Brian K Haarer; Carlo Caruso; Zongtian Tong; John R Pringle; Erfei Bi
Journal:  Mol Biol Cell       Date:  2005-12-21       Impact factor: 4.138

5.  The Caenorhabditis elegans septin complex is nonpolar.

Authors:  Corinne M John; Richard K Hite; Christine S Weirich; Daniel J Fitzgerald; Hatim Jawhari; Mahamadou Faty; Dominik Schläpfer; Ruth Kroschewski; Fritz K Winkler; Tom Walz; Yves Barral; Michel O Steinmetz
Journal:  EMBO J       Date:  2007-06-28       Impact factor: 11.598

6.  Role of nucleotide binding in septin-septin interactions and septin localization in Saccharomyces cerevisiae.

Authors:  Satish Nagaraj; Ashok Rajendran; Charles E Jackson; Mark S Longtine
Journal:  Mol Cell Biol       Date:  2008-06-09       Impact factor: 4.272

7.  Turning it inside out: The organization of human septin heterooligomers.

Authors:  Michael A McMurray; Jeremy Thorner
Journal:  Cytoskeleton (Hoboken)       Date:  2019-10-29

Review 8.  Spatial guidance of cell asymmetry: septin GTPases show the way.

Authors:  Elias T Spiliotis; Amy S Gladfelter
Journal:  Traffic       Date:  2011-09-19       Impact factor: 6.215

9.  The role of Cdc42p GTPase-activating proteins in assembly of the septin ring in yeast.

Authors:  Juliane P Caviston; Mark Longtine; John R Pringle; Erfei Bi
Journal:  Mol Biol Cell       Date:  2003-07-25       Impact factor: 4.138

10.  Drosophila Orc6 facilitates GTPase activity and filament formation of the septin complex.

Authors:  Richard P H Huijbregts; Anton Svitin; Monica W Stinnett; Matthew B Renfrow; Igor Chesnokov
Journal:  Mol Biol Cell       Date:  2008-11-05       Impact factor: 4.138

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