Samokhvalov Victor, Ignatov Vladimir, Kondrashova Marie
Department of Biochemistry, Saratov State University, Astrakhanskaya str 83, Saratov 410026, Russia.
Mech Ageing Dev. 2004 Mar;125(3):229-35. doi: 10.1016/j.mad.2003.12.006.
Glycogen and trehalose are well known to participate in many important cell functions, e.g., protection from stress factors, regulation of cell growth and division, spore formation. Since the aging is a complex process involving many aspects of cell metabolism, it was interesting to study the role of glycogen and trehalose in maintenance of viability of aging cells. We have revealed that cell aging is accompanied by an abrupt fall of glycogen and trehalose contents between the second and third weeks of aging. Simultaneously, we observed a decrease in the activity of glycolytic enzymes, phosphofructokinase and hexokinase. At the same time, the viability of aging cells abruptly declined. Although we found neither glycogen nor trehalose in the cells after the third week of aging, they remained viable for some time, apparently due to development of some compensatory metabolic pathways. In spite of this fact, complete death of the cells occurred by the eighth week of experiment, which confirmed irreplaceability of reserve carbohydrates in yeast cell metabolism. Possible reasons of the inability of aging cells to accumulate glycogen and trehalose are discussed in the work.
糖原和海藻糖参与许多重要的细胞功能,如抵御应激因素、调节细胞生长和分裂、孢子形成,这是众所周知的。由于衰老过程复杂,涉及细胞代谢的多个方面,因此研究糖原和海藻糖在维持衰老细胞活力中的作用很有意思。我们发现,细胞衰老伴随着衰老第二周和第三周之间糖原和海藻糖含量的急剧下降。同时,我们观察到糖酵解酶、磷酸果糖激酶和己糖激酶的活性降低。与此同时,衰老细胞的活力急剧下降。尽管在衰老第三周后我们在细胞中既未发现糖原也未发现海藻糖,但它们仍能存活一段时间,这显然是由于一些补偿性代谢途径的发展。尽管如此,到实验第八周时细胞完全死亡,这证实了储备碳水化合物在酵母细胞代谢中的不可替代作用。本文讨论了衰老细胞无法积累糖原和海藻糖的可能原因。