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Cyanobacteria Maintain Constant Protein Concentration despite Genome Copy-Number Variation

机译:尽管基因组拷贝数变化,蓝细菌仍保持恒定的蛋白质浓度

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The cyanobacterium Synechococcus elongatus PCC 7942 has multiple copies of its single chromosome, and the copy number varies in individual cells, providing an ideal system to study the effect of genome copy-number variation on cell size and gene expression. Using single-cell fluorescence imaging, we found that protein concentration remained constant across individual cells regardless of genome copy number. Cell volume and the total protein amount from a single gene were both positively, linearly correlated with genome copy number, suggesting that changes in cell volume play an important role in buffering genome copy-number variance. This study provides a quantitative examination of gene expression regulation in cells with variable genome copies and sheds light on the compensation mechanisms for variance in genome copy number.
机译:蓝藻延长线PCC 7942具有单个染色体的多个拷贝,并且拷贝数在单个细胞中有所不同,为研究基因组拷贝数变异对细胞大小和基因表达的影响提供了理想的系统。使用单细胞荧光成像,我们发现蛋白质浓度在各个细胞中保持恒定,而与基因组拷贝数无关。来自单个基因的细胞体积和总蛋白量均与基因组拷贝数呈线性正相关,表明细胞体积的变化在缓冲基因组拷贝数变异中起重要作用。这项研究提供了具有可变基因组拷贝的细胞中基因表达调控的定量检查,并阐明了基因组拷贝数变异的补偿机制。

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