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The cellular geometry of growth drives the amino acid economy of Caenorhabditis elegans

机译:生长的细胞几何形状驱动秀丽隐杆线虫的氨基酸经济

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摘要

The nematode Caenorhabditis elegans grows largely by increases in cell size. As a consequence of this, the surface: volume ratio of its cells must decline in the course of postembryonic growth. Here we use transcriptomic and metabolomic data to show that this change in geometry can explain a variety of phenomena during growth, including: (i) changes in the relative expression levels of cytoplasmic and membrane proteins; (ii) changes in the relative usage of the twenty amino acids in expressed proteins, as estimated by changes in the transcriptome; and (iii) changes in metabolite pools of free amino acids. We expect these relations to be universal in single cells and in whole multicellular organisms that grow largely by increases in cell size, but not those that grow by cell proliferation.
机译:线虫秀丽隐杆线虫主要通过细胞大小的增加而生长。结果,在胚后生长的过程中,其细胞的表面体积比必须下降。在这里,我们使用转录组学和代谢组学数据来证明这种几何变化可以解释生长过程中的多种现象,包括:(i)细胞质和膜蛋白相对表达水平的变化; (ii)通过转录组的变化估计,表达的蛋白质中二十个氨基酸的相对使用量发生了变化; (iii)游离氨基酸代谢产物库的变化。我们期望这些关系在单细胞和整个多细胞生物中普遍存在,这些生物主要通过细胞大小的增加而生长,而不是那些通过细胞增殖而生长的生物。

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