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酵母营养细胞和子囊孢子中的环磷酸腺苷含量及海藻糖酶激活

Cyclic-AMP content and trehalase activation in vegetative cells and ascospores of yeast.

作者信息

Thevelein J M

出版信息

Arch Microbiol. 1984 May;138(1):64-7. doi: 10.1007/BF00425409.

Abstract

Addition of glucose to yeast ascospores, glucose-grown vegetative cells from the stationary growth-phase or acetate-grown vegetative cells from the logarithmic growth-phase induces a rapid tenfold increase in the activity of trehalase. Trehalase activation is followed by a period of slow inactivation. It was possible to reverse the inactivation in the presence of glucose in all cell types immediately and completely by subsequent addition of a nitrogen source. This reactivation by nitrogen sources is in disagreement with proteolytic breakdown being responsible for trehalase inactivation in the presence of glucose. The addition of glucose induced in all cell types a rapid transient increase of the cellular cyclic-AMP content. In ascospores the increase of the cyclic-AMP level was about twofold, in glucose-grown stationary-phase vegetative cells four- to fivefold and in acetate-grown vegetative cells about sevenfold. Subsequent addition in the presence of glucose of a nitrogen source caused a new twofold increase of the cyclic-AMP level in ascospores. In the other two cell types however addition of a nitrogen source after the initial transient increase of the cyclic-AMP level did not produce a significant new increase. Although the data obtained for ascospores at first seemed to confirm the crucial role of the increase in the cyclic-AMP level for the activation of trehalase, the data obtained afterwards for vegetative cells indicated that it is possible to activate trehalase in yeast without a concomitant increase of the total cellular cyclic-AMP content.

摘要

向酵母子囊孢子、处于静止生长期的葡萄糖培养的营养细胞或对数生长期的乙酸盐培养的营养细胞中添加葡萄糖,会导致海藻糖酶活性迅速增加十倍。海藻糖酶激活后会有一段缓慢失活的时期。在所有细胞类型中,随后添加氮源可立即且完全地在葡萄糖存在的情况下逆转失活。氮源的这种再激活与在葡萄糖存在下蛋白酶分解导致海藻糖酶失活的观点不一致。添加葡萄糖会使所有细胞类型中的细胞环磷酸腺苷(cAMP)含量迅速短暂增加。在子囊孢子中,cAMP水平增加约两倍,在葡萄糖培养的静止期营养细胞中增加四至五倍,在乙酸盐培养的营养细胞中增加约七倍。随后在葡萄糖存在下添加氮源会使子囊孢子中的cAMP水平再次增加两倍。然而,在另外两种细胞类型中,在cAMP水平最初短暂增加后添加氮源并未产生显著的再次增加。尽管最初从子囊孢子获得的数据似乎证实了cAMP水平升高对海藻糖酶激活的关键作用,但后来从营养细胞获得的数据表明,在酵母中有可能在细胞总cAMP含量不伴随增加的情况下激活海藻糖酶。

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