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The metabolism of macromolecules during the differentiation of myxamoebae of the cellular slime mould Dictyostelium discoideum containing different amounts of glycogen

机译:含有不同糖原量的细胞粘液霉菌盘基网柄菌的粘菌分化过程中大分子的代谢

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摘要

1. Methods of obtaining myxamoebae of Dictyostelium discoideum strain Ax-2 (ATCC 24397) with glycogen contents in the range 0.05–5mg of glycogen/108 cells are described. The changes in cellular glycogen, protein and RNA content during the differentiation of such myxamoebae were determined. 2. Myxamoebal glycogen is not conserved during differentiation and gluconeogenesis may occur even in cells that contain a large amount of glycogen initially. 3. There is a marked net loss of cellular protein and RNA during differentiation and associated with this there are also marked decreases in the sizes of the intracellular pools of amino acids, acid-soluble proteins and pentose-containing materials. 4. During the early stages of development some protein and pentose(s) are excreted, but this cannot account for the decreased cellular content of protein and RNA. 5. There is a linear rate of production of NH3 during development, and oxidation appears to be the fate of the major portion of the degraded protein and RNA. 6. However, provision of an alternative metabolizable energy source (glycogen) has little effect on the rate or extent of protein or RNA breakdown or on the changes in the sizes of the intracellular pools of amino acids, acid-soluble proteins and pentose-containing materials. 7. It is concluded that during development there is a requirement for the destruction of specific RNA and protein molecules for reasons other than the provision of oxidizable substrates. 8. The kinetic model of Wright et al. (1968) is discussed in relation to these changes in macromolecular content.
机译:1.描述了获得糖原含量在糖原/ 10 8 细胞范围为0.05-5mg的盘基网柄菌Ax-2(ATCC 24397)的黏膜阿米巴的方法。确定了在这种粘虫的分化过程中细胞糖原,蛋白质和RNA含量的变化。 2.分化过程中粘膜糖原糖原不保守,甚至在最初含有大量糖原的细胞中也可能发生糖异生。 3.在分化过程中,细胞蛋白质和RNA的净损失显​​着,与此相关的是,氨基酸,酸溶性蛋白质和含戊糖的物质的细胞内库的大小也显着减少。 4.在发育的早期阶段,一些蛋白质和戊糖被排出,但这不能解释蛋白质和RNA的细胞含量降低。 5.在发育过程中,NH3的产生速率呈线性变化,氧化似乎是降解的蛋白质和RNA的主要部分。 6.然而,提供替代的可代谢能源(糖原)对蛋白质或RNA分解的速率或程度或氨基酸,酸溶性蛋白质和含戊糖的细胞内库大小变化几乎没有影响材料。 7.结论是,在开发过程中,除提供可氧化底物外,还需要破坏特定的RNA和蛋白质分子。 8.赖特等人的动力学模型。 (1968)讨论了有关大分子含量的这些变化。

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