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酿酒酵母IRR1蛋白间接参与菌落形成。

Saccharomyces cerevisiae IRR1 protein is indirectly involved in colony formation.

作者信息

Kurlandzka A, Rytka J, Rózalska B, Wysocka M

机构信息

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Warszawa, Poland.

出版信息

Yeast. 1999 Jan 15;15(1):23-33. doi: 10.1002/(SICI)1097-0061(19990115)15:1<23::AID-YEA337>3.0.CO;2-E.

Abstract

The ability of a microorganism to adhere to a solid support and to initiate a colony is often the first stage of microbial infections. To date, studies on S. cerevisiae cell-cell and cell-solid support interactions concerned only cell agglutination during mating and flocculation. Colony formation has not been studied before probably because this species is not pathogenic. However, S. cerevisiae can be a convenient model to study this process, thanks to well-developed genetics and the full knowledge of its nucleotide sequence. A preliminary characterization of the recently cloned essential IRR1 gene indicated that it may participate in cell-cell/substrate interactions. Here we show that lowering the level of expression of IRR1 (after fusion with a regulatory catalase A gene promoter) affects colony formation and disturbs zygote formation and spore germination. All these processes involve cell-cell or cell-solid support contacts. The IRR1 protein is localized in the cytosol as verified by immunofluorescence microscopy, and confirmed by cell fractionation and Western blotting. This indicates that Irr1p is not directly involved in the cell-solid support adhesion, but may be an element of a communication pathway between the cell and its surroundings.

摘要

微生物附着于固体支持物并形成菌落的能力通常是微生物感染的第一阶段。迄今为止,关于酿酒酵母细胞间和细胞与固体支持物相互作用的研究仅涉及交配和絮凝过程中的细胞凝集。此前尚未对菌落形成进行研究,可能是因为该物种不具有致病性。然而,由于酿酒酵母拥有完善的遗传学和完整的核苷酸序列知识,它可以成为研究这一过程的便捷模型。最近克隆的必需基因IRR1的初步表征表明,它可能参与细胞间/细胞与底物的相互作用。在此我们表明,降低IRR1的表达水平(与调节性过氧化氢酶A基因启动子融合后)会影响菌落形成,并干扰合子形成和孢子萌发。所有这些过程都涉及细胞间或细胞与固体支持物的接触。通过免疫荧光显微镜验证,并经细胞分级分离和蛋白质免疫印迹确认,IRR1蛋白定位于细胞质中。这表明Irr1p并不直接参与细胞与固体支持物的黏附,但可能是细胞与其周围环境之间通讯途径的一个元件。

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