Fungal Biology Group and Department of Plant Biology, University of Georgia, Athens, Georgia, United States of America.
PLoS One. 2018 Aug 16;13(8):e0201828. doi: 10.1371/journal.pone.0201828. eCollection 2018.
Histone H1 is an evolutionarily conserved linker histone protein that functions in arranging and stabilizing chromatin structure and is frequently fused to a fluorescent protein to track nuclei in live cells. In time-lapse analyses, we observed stochastic exchange of photoactivated Dendra2-histone H1 protein between nuclei within the same cellular compartment. We also observed exchange of histones between genetically distinct nuclei in a heterokaryon derived from fusion of strains carrying histone H1-RFP or H1-GFP. Subsequent analysis of the resulting uninucleate conidia containing both RFP- and GFP-labeled histone H1 proteins showed only parental genotypes, ruling out genetic recombination and diploidization. These data together suggest that the linker histone H1 protein can diffuse between non-daughter nuclei in the filamentous fungus Aspergillus nidulans.
组蛋白 H1 是一种进化上保守的连接组蛋白,它在排列和稳定染色质结构中发挥作用,并且经常与荧光蛋白融合以跟踪活细胞中的核。在延时分析中,我们观察到在同一细胞区室中,被光激活的 Dendra2-组蛋白 H1 蛋白在核之间的随机交换。我们还观察到在来自携带组蛋白 H1-RFP 或 H1-GFP 的菌株融合的异核体中,遗传上不同的核之间的组蛋白交换。随后对含有 RFP 和 GFP 标记的组蛋白 H1 蛋白的未减数分生孢子进行的分析表明,只有亲本基因型,排除了遗传重组和二倍体化。这些数据共同表明,连接组蛋白 H1 蛋白可以在丝状真菌 Aspergillus nidulans 的非子核之间扩散。