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组蛋白替换基因 His4r 参与热应激诱导的染色质重排。

The histone replacement gene His4r is involved in heat stress induced chromatin rearrangement.

机构信息

Department of Biochemistry and Molecular Biology, Faculty of Science and Informatics, University of Szeged, Közép fasor 52, 6726, Szeged, Hungary.

Doctoral School in Biology, Faculty of Science and Informatics, University of Szeged, 6726, Szeged, Hungary.

出版信息

Sci Rep. 2021 Mar 1;11(1):4878. doi: 10.1038/s41598-021-84413-4.

Abstract

His4r is the only known variant of histone H4 in Drosophila. It is encoded by the His4r single-copy gene that is located outside of the histone gene cluster and expressed in a different pattern than H4, although the encoded polypeptides are identical. We generated a null mutant (His4r) which is homozygous viable and fertile without any apparent morphological defects. Heterozygous His4r is a mild suppressor of position-effect variegation, suggesting that His4r has a role in the formation or maintenance of condensed chromatin. Under standard conditions loss of His4r has a modest effect on gene expression. Upon heat-stress the induction of the Heat shock protein (HSP) genes Hsp27 and Hsp68 is stronger in His4r mutants with concordantly increased survival rate. Analysis of chromatin accessibility after heat shock at a Hsp27 regulatory region showed less condensed chromatin in the absence of His4r while there was no difference at the gene body. Interestingly, preconditioning before heat shock led to increased chromatin accessibility, HSP gene transcription and survival rate in control flies while it did not cause notable changes in His4r. Thus, our results suggest that His4r might play a role in fine tuning chromatin structure at inducible gene promoters upon environmental stress conditions.

摘要

His4r 是果蝇中组蛋白 H4 的唯一已知变体。它由 His4r 单拷贝基因编码,该基因位于组蛋白基因簇之外,其表达模式与 H4 不同,尽管编码的多肽是相同的。我们生成了一个 null 突变体(His4r),它是纯合可育且有活力的,没有明显的形态缺陷。杂合 His4r 是位置效应斑驳的轻度抑制子,表明 His4r 在浓缩染色质的形成或维持中具有作用。在标准条件下,缺失 His4r 对基因表达的影响不大。在热应激下,Hsp27 和 Hsp68 的热休克蛋白 (HSP) 基因的诱导在 His4r 突变体中更强,同时生存率也相应提高。在 Hsp27 调控区的热休克后对染色质可及性进行分析表明,在缺乏 His4r 的情况下,染色质的凝聚程度较低,而在基因本体中则没有差异。有趣的是,热休克前的预处理导致对照果蝇中的染色质可及性、HSP 基因转录和生存率增加,而在 His4r 中则没有引起明显变化。因此,我们的结果表明,His4r 可能在环境应激条件下,在诱导型基因启动子处精细调节染色质结构中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/284e/7921661/ed55fcb726d5/41598_2021_84413_Fig1_HTML.jpg

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