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酵母菌落形成中的氨信号传导。

Ammonia signaling in yeast colony formation.

作者信息

Palková Zdena, Vachova Libuse

机构信息

Department of Genetics and Microbiology, Charles University, 12844 Prague 2, Czech Republic.

出版信息

Int Rev Cytol. 2003;225:229-72. doi: 10.1016/s0074-7696(05)25006-4.

Abstract

Multicellular structures formed by microorganisms possess various properties, which make them interesting in terms of processes that occur in tissues of higher eukaryotes. These include processes important for morphogenesis and development of multicellular structures as well as those evoked by stress, starvation, and aging. Investigation of colonies created by simple nonmotile yeast cells revealed the existence of various regulators involved in their development. One of the identified signaling compounds, unprotonated volatile ammonia, is produced by colonies in pulses and seems to represent a long-distance signal notifying the colony population of incoming nutrient starvation. This alarm evokes changes in colonies that are important for their long-term survival. Models of the action of ammonia on yeast cells as well as the routes of its production are proposed. Interestingly, ammonia/ammonium also act as a signaling molecule in other organisms. Ammonia regulates several steps of the multicellular development of Dictyostelium discoideum and evidence indicates that ammonia/ammonium plays a role in neural tissues of higher eukaryotes.

摘要

微生物形成的多细胞结构具有多种特性,这使得它们在高等真核生物组织中发生的过程方面具有吸引力。这些过程包括对多细胞结构的形态发生和发育重要的过程,以及由应激、饥饿和衰老引发的过程。对由简单的不运动酵母细胞形成的菌落的研究揭示了参与其发育的各种调节因子的存在。一种已鉴定的信号化合物——未质子化的挥发性氨,由菌落脉冲式产生,似乎代表一种长距离信号,通知菌落群体即将到来的营养饥饿。这种警报引发菌落中对其长期存活很重要的变化。提出了氨对酵母细胞的作用模型及其产生途径。有趣的是,氨/铵在其他生物体中也作为信号分子起作用。氨调节盘基网柄菌多细胞发育的几个步骤,并且有证据表明氨/铵在高等真核生物的神经组织中起作用。

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