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Molecular genetic analysis of factors which interact with an actin-binding protein cofilin of S.cerevisiae.

Molecular genetic analysis of factors which interact with an actin-binding protein cofilin of S.cerevisiae.
与酿酒酵母肌动蛋白结合蛋白丝切蛋白相互作用的因素的分子遗传学分析。
批准号:
07680786
负责人:
IIDA Kazuko
金额:
$1.41万
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (C)
财政年份:
1995
资助国家:
日本
项目状态:
已结题
起止时间:
1995 至 1996

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中文摘要
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英文摘要
Cofilin is a low-molecular weight, pH-regulated actin-binding and actin-depolymerizing protein. Cofilin is widely distributed among eukaryotes from the budding yeast S.cerevisiae to higher plants and mammals. In the budding yeast, the cfilin gene, COF1, is essential for cell growth (Iida, K.et al., Gene, 124,115-120,1993 ; Moon, A.L.et al., J.Cell Biol., 120,421-435,1993). The amino acid sequence of cofilin is well conserved among various species, and the porcine cofilin cDNA complements the lethality caused by the disruption of COF1 in the budding yeast. To clarify tye function of cofilin in the budding yeast, we isolated temperature-sensitive mutants of COF1 by in vitro random mutagenesis with hydroxylamine. All the four ts mutants obtained had amino acid changes in or very close to the dodecapeptide sequence, which had been shown to be an actin-binding region by in vitro studies (Yonezawa, N.et al., J.Biol. Chem., 266,10485-10489,1991). NMR analysis of the tertialy structure of porc … More ine destrin, an isoform of cofilin, confirmed this notion (Hatanaka, H.et al, Cell, 85,1047-1055,1996). The strains which have the ts alleles in place of the wild type COF1 showed temprtature sensitive growth. When shifted to the non-permissive temperature, the cells stopped, growth at a small-budded stage. Immunofluorescent satining showed that dofilin is localized to the actinpatches of the buds in the wild type cells. When the ts mutant strain was shifted to the nonpermissive temperature, the actin patches were dissapeared and actin-containing thick aggregates were formed in the cytopolasm. These results suggest that cofilin might be involved in the enlargement of the buds by regulating the organization of actin filaments. We next isolated a multicopy suppressor, SCF1, of the ts allele of COF1. SCF1 encodes a proetin of 615 amino acid residues. Disruption of SCF1 is synthetic lethal with the ts allele of COF1, although SCF1 is non-essential gene. This result suggests that Scflp plays important roles when the function of cofilin is imperfect. Disruption of SCF1 affects the localization of cofilin ; immunofluorescence staining with anti-cofilin antibody of SCF1-disrupted cells revealed cytoplasmic thin fibers in addition to the action patches. Scflp might be involved in the organization of actin filaments through its functions on cofilin and/or actin. Less
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K.Moriyama et al.: "Phosphorylation of Ser-3 of cofilin regulates its essential function on actin." Genes to Cells. 1. 73-86 (1996)
K.Moriyama 等人:“丝切蛋白 Ser-3 的磷酸化调节其对肌动蛋白的基本功能。”
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I.Yahara, H.Aizawa, K.Moriyama, K.Iida, N.Yonezawa, E.Nishida, H.Hatanaka and F.Inagaki: "A rele of cofilin/destrin in reorganization of actin cytoskeleton in rsponse to stresses and cell stimuli." Cell Struct. Funct.21. 421-424 (1996)
I.Yahara、H.Aizawa、K.Moriyama、K.Iida、N.Yonezawa、E.Nishida、H.Hatanaka 和 F.Inagaki:“肌丝蛋白丝切蛋白/结蛋白在肌动蛋白细胞骨架重组中响应应激和细胞的作用”
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通讯作者:
K.Moriyama, K.Iida and I.Yahara: "Phosphorylation of Ser-3 of cofilin regulates its essential function on actin." Genes to Cells. 1. 73-86 (1996)
K.Moriyama、K.Iida 和 I.Yahara:“丝切蛋白 Ser-3 的磷酸化调节其对肌动蛋白的基本功能。”
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Analysis of yeast Cch1, a homologue of animal voltage-gated calcium channel pore subunit, and its regulatory factor Mid1.
Functions of cofilin, an actin-regulating protein
Molecular genetic analysis of the in vivo function of a low molecular weight actin-binding protein, cofilin, of S.cerevisiae.
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