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醋酸对布氏根霉中糖原和海藻糖的动员作用:对阴离子形式的依赖性。

Glycogen and trehalose mobilization by acetic acid in Phycomyces blakesleeanus: dependence on the anion form.

作者信息

Rúa Javier, de Cima Sergio, Del Valle Pilar, Gutiérrez-Larraínzar Marta, Busto Félix, de Arriaga Dolores

机构信息

Departamento de Biología Molecular, Universidad de León, Campus de Vegazana, 24007 León, Spain.

出版信息

Res Microbiol. 2008 Apr;159(3):200-6. doi: 10.1016/j.resmic.2008.01.002. Epub 2008 Feb 16.

Abstract

Trehalose and glycogen are reserve carbohydrates that were shown to accumulate in mycelia of the filamentous fungus Phycomyces blakesleeanus. Both carbohydrates were mobilized under glucose starvation or in the presence of acetate. Glycogen was mobilized faster than trehalose in the presence of acetate. In all cases, glycogen and trehalose mobilization followed single exponential decay. There was a direct relationship between glycogen mobilization and the concentration of the dissociated form of external acetic acid. The half-life of glycogen mobilization increased as the concentration of the external acetate anion decreased, so the dissociated form of acetate was the stressor causing glycogen mobilization. Mobilization was not due to transfer to poor carbon sources, as the dissociated form of other weak acids (butyrate, lactate, pyruvate and propionate) also produced glycogen mobilization. Previous exposure of the mycelia to a lower acetate concentration decreased glycogen mobilization by subsequent exposure to a high acetate concentration. Glycogen mobilization by acetate may be involved in production of ATP necessary for acetate uptake as well as for maintenance of the internal pH homeostasis.

摘要

海藻糖和糖原是储备碳水化合物,已证明它们会在丝状真菌布氏根霉的菌丝体中积累。在葡萄糖饥饿或存在乙酸盐的情况下,这两种碳水化合物都会被动员起来。在乙酸盐存在的情况下,糖原的动员速度比海藻糖快。在所有情况下,糖原和海藻糖的动员都遵循单指数衰减。糖原动员与外部乙酸解离形式的浓度之间存在直接关系。随着外部乙酸根阴离子浓度的降低,糖原动员的半衰期增加,因此乙酸的解离形式是导致糖原动员的应激源。动员并非由于转移到劣质碳源,因为其他弱酸(丁酸盐、乳酸盐、丙酮酸盐和丙酸盐)的解离形式也会导致糖原动员。菌丝体先前暴露于较低的乙酸盐浓度会降低随后暴露于高乙酸盐浓度时的糖原动员。乙酸盐引起的糖原动员可能参与了乙酸盐摄取以及维持内部pH稳态所需的ATP的产生。

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