Gancedo Carlos, Flores Carmen-Lisset
Albert Sols Institute of Biomedical Research, CSIC-UAM, C/ Arturo Duperier 4, 28029 Madrid, Spain.
FEMS Yeast Res. 2004 Jan;4(4-5):351-9. doi: 10.1016/S1567-1356(03)00222-8.
The view of the role of trehalose in yeast has changed in the last few years. For a long time considered a reserve carbohydrate, it gained new importance when its function in the acquisition of thermotolerance was demonstrated. More recently the cellular processes in which the trehalose biosynthetic pathway has been implicated range from the control of glycolysis to sporulation and infectivity by certain fungal pathogens. There is now enough experimental evidence to conclude that trehalose 6-phosphate, an intermediate of trehalose biosynthesis, is an important metabolic regulator in such different organisms as yeasts or plants. Its inhibition of hexokinase plays a key role in the control of the glycolytic flux in Saccharomyces cerevisiae but other, likely important, sites of action are still unknown. We present examples of the phenotypes produced by mutations in the two steps of the trehalose biosynthetic pathway in different yeasts and fungi, and whenever possible examine the molecular explanations advanced to interpret them.
在过去几年里,海藻糖在酵母中所起作用的观点发生了变化。长期以来,海藻糖被视为一种储备碳水化合物,当它在获得耐热性方面的功能得到证实时,它又有了新的重要性。最近,海藻糖生物合成途径涉及的细胞过程范围很广,从糖酵解的控制到某些真菌病原体的孢子形成和感染性。现在有足够的实验证据可以得出结论,海藻糖 -6- 磷酸(海藻糖生物合成的一种中间产物)在酵母或植物等不同生物体中是一种重要的代谢调节物。它对己糖激酶的抑制在酿酒酵母糖酵解通量的控制中起着关键作用,但其他可能重要的作用位点仍然未知。我们展示了不同酵母和真菌中海藻糖生物合成途径两个步骤中的突变所产生的表型示例,并尽可能研究为解释这些表型而提出的分子解释。