Hao Huijuan, Lian Yinjie, Ren Chenhui, Yang Sitong, Zhao Min, Bo Tao, Xu Jing, Wang Wei
Key Laboratory of Chemical Biology and Molecular Engineering of Ministry of Education, Institute of Biotechnology, Shanxi University, Taiyuan, 030006 China.
School of Life Science, Shanxi University, Taiyuan, 030006 China.
Mar Life Sci Technol. 2024 Mar 26;6(2):183-197. doi: 10.1007/s42995-024-00219-z. eCollection 2024 May.
Histone modification and nucleosome assembly play important roles in chromatin-related processes. Histone chaperones form different complexes and coordinate histone transportation and assembly. Various histone chaperone complexes have been identified in different organisms. The ciliate protozoa (ciliates) have various chromatin structures and different nuclear morphology. However, histone chaperone components and functions of different subunits remain unclear in ciliates. contains a transcriptionally active macronucleus (MAC) and a transcriptionally inactive micronucleus (MIC) which exhibit multiple replication and various chromatin remodeling progresses during vegetative growth and sexual developmental stages. Here, we found histone chaperone RebL1 not only localized evenly in the transcriptionally active MAC but also dynamically changed in the MIC during vegetative growth and sexual developmental stages. knockdown inhibited cellular proliferation. The macronuclear morphology became bigger in growing mutants. The abnormal macronuclear structure also occurred in the starvation stage. Furthermore, micronuclear meiosis was disturbed during sexual development, leading to a failure to generate new gametic nuclei. RebL1 potentially interacted with various factors involved in histone-modifying complexes and chromatin remodeling complexes in different developmental stages. knockdown affected expression levels of the genes involved in chromatin organization and transcription. Taken together, RebL1 plays a vital role in maintaining macronuclear structure stability and gametogenesis in .
The online version contains supplementary material available at 10.1007/s42995-024-00219-z.
组蛋白修饰和核小体组装在与染色质相关的过程中发挥重要作用。组蛋白伴侣形成不同的复合物并协调组蛋白的运输和组装。在不同生物体中已鉴定出各种组蛋白伴侣复合物。纤毛虫原生动物(纤毛虫)具有各种染色质结构和不同的核形态。然而,纤毛虫中组蛋白伴侣成分和不同亚基的功能仍不清楚。含有一个转录活跃的大核(MAC)和一个转录不活跃的小核(MIC),它们在营养生长和有性发育阶段表现出多次复制和各种染色质重塑过程。在这里,我们发现组蛋白伴侣RebL1不仅在转录活跃的MAC中均匀定位,而且在营养生长和有性发育阶段的MIC中动态变化。RebL1敲低抑制细胞增殖。生长突变体中的大核形态变大。在饥饿阶段也出现了异常的大核结构。此外,在有性发育过程中微核减数分裂受到干扰,导致无法产生新的配子核。RebL1可能在不同发育阶段与参与组蛋白修饰复合物和染色质重塑复合物的各种因子相互作用。RebL1敲低影响了参与染色质组织和转录的基因的表达水平。综上所述,RebL1在维持大核结构稳定性和的配子发生中起着至关重要的作用。
在线版本包含可在10.1007/s42995-024-00219-z获取的补充材料。