Department of Biomedical Engineering, Ulsan National Institute of Science & Technology, Ulsan 44919, Republic of Korea.
Center for Soft and Living Matter, Institute for Basic Science, Ulsan 44919, Republic of Korea.
Phys Rev E. 2021 Oct;104(4-1):044401. doi: 10.1103/PhysRevE.104.044401.
Zygosity of diploid genome (i.e., degree to which two parental alleles of a gene have varied genetic sequences) adds another dimension to stochastic gene expression. The allelic imbalance in chromatin accessibility or divergence in regulatory sequences leads to fitness effects but the quantitative aspects thereof are largely left unexplored. We investigate diploid gene expression systems with homozygous (the same) and heterozygous (varied) combination of alleles in cis-regulatory sequences, not in structural gene loci, and characterize the zygosity-associated stochastic fluctuations in protein abundance. An emerging feat of heterozygosity is its counterintuitive capacity for genetic noise control. Especially when the noise is dominantly contributed to by the fluctuations in duty cycle ("reliability") rather than in process speed ("productivity") of gene expression machinery, its interallelic discrepancy acts to reduce the gene expression noise. These findings offer a novel insight into the rich repertoire of balancing selection enriched in the regulatory elements of immune response genes.
二倍体基因组的同型合子性(即基因的两个亲本等位基因具有不同遗传序列的程度)为随机基因表达增加了另一个维度。染色质可及性或调控序列的变异性中的等位基因失衡导致适合度效应,但这些方面的定量方面在很大程度上尚未得到探索。我们研究了顺式调控序列中具有纯合(相同)和杂合(不同)等位基因组合的二倍体基因表达系统,而不是在结构基因座中,并且表征了与同型合子性相关的蛋白质丰度的随机波动。杂合性的一个新出现的特征是其对遗传噪声控制的反直觉能力。特别是当噪声主要由基因表达机制的占空比(“可靠性”)而不是过程速度(“生产力”)波动引起时,其等位基因间差异可降低基因表达噪声。这些发现为富含免疫反应基因调控元件的平衡选择的丰富组合提供了新的见解。