TY - JOUR
T1 - Requirements of fission yeast septins for complex formation, localization, and function
AU - An, Hanbing
AU - Morrell, Jennifer L.
AU - Jennings, Jennifer L.
AU - Link, Andrew J.
AU - Gould, Kathleen L.
PY - 2004/12
Y1 - 2004/12
N2 - Septins are GTP binding proteins important for cytokinesis in many eukaryotes. The Schizosaccaromyces pombe genome sequence predicts orthologues of four of five Saccharomyces cerevisiae septins involved in cytokinesis and these are named Spns1-4p. That spns1-4 are not essential genes permitted the application of a combined genetic and proteomics approach to determine their functional relationships. Our findings indicate that Spns1-4p are present throughout interphase as a diffusely localized ∼8.5S complex containing two copies of each septin linked together as a chain in the order Spn3p-Spn4p-Spn1p-Spn2p. Septin recruitment to the medial region of the cell is genetically separable from ring formation, and whereas it is normally restricted to mitosis, it can be promoted without activation of the mitotic cell cycle machinery. Coalescence into ring structures requires Spn1p and Spn4p associate with at least one other septin subunit and the expression of Mid2p that is normally restricted to mitosis. This study establishes the functional requirements for septin complex organization in vivo.
AB - Septins are GTP binding proteins important for cytokinesis in many eukaryotes. The Schizosaccaromyces pombe genome sequence predicts orthologues of four of five Saccharomyces cerevisiae septins involved in cytokinesis and these are named Spns1-4p. That spns1-4 are not essential genes permitted the application of a combined genetic and proteomics approach to determine their functional relationships. Our findings indicate that Spns1-4p are present throughout interphase as a diffusely localized ∼8.5S complex containing two copies of each septin linked together as a chain in the order Spn3p-Spn4p-Spn1p-Spn2p. Septin recruitment to the medial region of the cell is genetically separable from ring formation, and whereas it is normally restricted to mitosis, it can be promoted without activation of the mitotic cell cycle machinery. Coalescence into ring structures requires Spn1p and Spn4p associate with at least one other septin subunit and the expression of Mid2p that is normally restricted to mitosis. This study establishes the functional requirements for septin complex organization in vivo.
UR - http://www.scopus.com/inward/record.url?scp=9444229392&partnerID=8YFLogxK
U2 - 10.1091/mbc.E04-07-0640
DO - 10.1091/mbc.E04-07-0640
M3 - Article
C2 - 15385632
AN - SCOPUS:9444229392
SN - 1059-1524
VL - 15
SP - 5551
EP - 5564
JO - Molecular Biology of the Cell
JF - Molecular Biology of the Cell
IS - 12
ER -