Department of Mathematics, UCLA, Los Angeles, California.
Department of Mathematics, UCLA, Los Angeles, California.
Biophys J. 2024 Apr 16;123(8):968-978. doi: 10.1016/j.bpj.2024.03.009. Epub 2024 Mar 8.
Bursty transcription allows nuclei to concentrate the work of transcribing mRNA into short, intermittent intervals, potentially reducing transcriptional interference. However, bursts of mRNA production can increase noise in protein abundances. Here, we formulate models for gene expression in syncytia, or multinucleate cells, showing that protein abundance noise may be mitigated locally via spatial averaging of diffuse proteins. Our modeling shows a universal reduction in protein noise, which increases with the average number of nuclei per cell and persists even when the number of nuclei is itself a random variable. Experimental data comparing distributions of a cyclin mRNA that is conserved between brewer's yeast and a closely related filamentous fungus Ashbya gossypii confirm that syncytism is permissive of greater levels of transcriptional noise. Our findings suggest that division of transcriptional labor between nuclei allows syncytia to sidestep tradeoffs between efficiency and precision of gene expression.
突发转录使细胞核能够将 mRNA 的转录工作集中在短的、间歇性的时间间隔内,从而潜在地减少转录干扰。然而,mRNA 产生的突发可能会增加蛋白质丰度的噪声。在这里,我们为合胞体(即多核细胞)中的基因表达建立了模型,表明通过扩散蛋白质的空间平均,局部上可以减轻蛋白质丰度噪声。我们的模型表明,蛋白质噪声普遍降低,这种降低随着每个细胞中细胞核的平均数量的增加而增加,即使细胞核的数量本身是一个随机变量时也是如此。比较酿酒酵母和密切相关的丝状真菌棉铃象甲之间保守的细胞周期蛋白 mRNA 分布的实验数据证实,合胞体允许更高水平的转录噪声。我们的研究结果表明,细胞核之间转录工作的分工使合胞体能够避免在基因表达的效率和精度之间进行权衡。