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The BUD4 protein of yeast, required for axial budding, is localized to the mother/BUD neck in a cell cycle-dependent manner

机译:轴向萌芽所需的酵母BUD4蛋白以细胞周期依赖性方式定位在母亲/ BUD脖子上

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摘要

A and alpha cells of the yeast Saccharomyces cerevisiae exhibit an axial budding pattern, whereas a/alpha diploid cells exhibit a bipolar pattern. Mutations in BUD3, BUD4, and AXL1 cause a and alpha cells to exhibit the bipolar pattern, indicating that these genes are necessary to specify the axial budding pattern (Chant, J., and I. Herskowitz. 1991. Cell. 65:1203-1212; Fujita, A., C. Oka, Y. Arikawa, T. Katagi, A. Tonouchi, S. Kuhara, and Y. Misumi. 1994. Nature (Lond.). 372:567-570). We cloned and sequenced BUD4, which codes for a large, novel protein (Bud4p) with a potential GTP-binding motif. Bud4p is expressed and localized to the mother/bud neck in all cell types. Most mitotic cells contain two apparent rings of Bud4 immunoreactive staining, as observed for Bud3p (Chant, J., M. Mischke, E. Mitchell, I. Herskowitz, and J.R. Pringle. 1995. J. Cell Biol. 129: 767-778). Early G1 cells contain a single ring of Bud4p immunoreactive staining, whereas cells at START and in S phase lack these rings. The level of Bud4p is also regulated in a cell cycle-dependent manner. Bud4p is inefficiently localized in bud3 mutants and after a temperature shift of a temperature-sensitive mutant, cdc12, defective in the neck filaments. These observations suggest that Bud4p and Bud3p cooperate to recognize a spatial landmark (the neck filaments) during mitosis and support the hypothesis that they subsequently become a landmark for establishing the axial budding pattern in G1.
机译:酵母酿酒酵母的α和α细胞表现出轴向出芽模式,而α/α二倍体细胞表现出双极模式。 BUD3,BUD4和AXL1中的突变导致α和α细胞表现出双极型模式,表明这些基因对于指定轴向萌芽模式是必需的(Chant,J。和I. Herskowitz。1991. Cell。65:1203- 1212; Fujita,A.,C.Oka,Y.Arikawa,T.Katagi,A.Tonouchi,S.Kuhara和Y.Misumi.1994.Nature(Lond。)。372:567-570)。我们克隆并测序了BUD4,它编码具有潜在GTP结合基序的大型新型蛋白质(Bud4p)。在所有细胞类型中,Bud4p均表达并定位于母亲/芽颈。如对Bud3p所观察到的那样,大多数有丝分裂细胞都包含两个明显的Bud4免疫反应染色环(Chant,J.,M. Mischke,E. Mitchell,I.Herskowitz和JR Pringle。1995. J. Cell Biol。129:767-778 )。早期的G1细胞仅包含一个单环的Bud4p免疫反应性染色,而处于START和S期的细胞则缺少这些环。 Bud4p的水平也以细胞周期依赖性方式调节。 Bud4p不能有效地定位在bud3突变体中,并且在对温度敏感的突变体cdc12发生温度变化后,颈部细丝也将出现缺陷。这些观察结果表明,Bud4p和Bud3p协同识别有丝分裂期间的空间界标(颈部细丝),并支持以下假设:它们随后成为在G1中建立轴向萌芽模式的界标。

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