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Stat通过抑制芽殖被囊动物成体干细胞中的KDM5来刺激组蛋白H3K4甲基化。

Stat stimulates histone H3K4 methylation via KDM5 inhibition in adult stem cells of budding tunicates.

作者信息

Kimura-Nagano Yuri, Kishimoto Kanoko, Sekida Satoko, Kawamura Kaz

机构信息

Laboratory of Cellular and Molecular Biotechnology, Faculty of Science, Kochi University, Kochi, Japan.

Science Program, Graduate School of Integrated Arts and Sciences, Kochi University, Kochi, Japan.

出版信息

Dev Dyn. 2025 Jun;254(6):538-550. doi: 10.1002/dvdy.754. Epub 2024 Oct 22.

Abstract

BACKGROUND

The branchial epithelium is one of the main tissues in which histone H3K4 trimethylation (H3K4me3) occurs in the budding tunicate, Polyandrocarpa misakiensis. It contains proliferating and undifferentiated cell aggregates at the bottom of each pharyngeal cleft, providing the nest for the adult stem cell niche. We examined the sustainable mechanism enabling epigenetic histone methylation in adult stem cells.

RESULTS

Histone H3K4 demethylase (PmisKdm5) was not co-expressed in vivo with the transcription factor, signal transduction and activator of transcription (PmisStat) in the same cells. PmisStat mRNA, when electroporated into zooids, suppressed the gene expression of PmisKdm5 and facilitated the trimethylation of H3K4. A STAT5 inhibitor blocked the nuclear localization of PmisStat. It stimulated PmisKdm5 gene expression irrespective of PmisStat mRNA. The KDM5 inhibitor, CPI-455, stimulated H3K4me3 similarly to PmisStat mRNA. PmisStat mRNA and CPI-455 both induced the gene expression of PmisAp2 and PmisSp8, which were recently identified as budding/regeneration-related genes. When zooid tissues were treated with both CPI-455 and the STAT5 inhibitor, CPI-455 overwhelmed the effects of the STAT inhibitor on PmisAp2 and PmisSp8.

CONCLUSION

PmisStat is involved in epigenetic histone methylation at H3K4 through the inhibition of PmisKdm5. H3K4me3 affects downstream gene expression more directly and strongly than PmisStat.

摘要

背景

鳃上皮是出芽被囊动物三崎聚雄鳃海鞘中发生组蛋白H3K4三甲基化(H3K4me3)的主要组织之一。它在每个咽裂底部含有增殖和未分化的细胞聚集体,为成体干细胞生态位提供了巢。我们研究了成体干细胞中表观遗传组蛋白甲基化的可持续机制。

结果

组蛋白H3K4去甲基化酶(PmisKdm5)在体内与转录因子、信号转导和转录激活因子(PmisStat)不在同一细胞中共表达。将PmisStat mRNA电穿孔导入游动孢子时,可抑制PmisKdm5的基因表达并促进H3K4的三甲基化。一种STAT5抑制剂阻断了PmisStat的核定位。它刺激PmisKdm5基因表达,而与PmisStat mRNA无关。KDM5抑制剂CPI-455与PmisStat mRNA类似地刺激H3K4me3。PmisStat mRNA和CPI-455均诱导了最近被鉴定为出芽/再生相关基因的PmisAp2和PmisSp8的基因表达。当用CPI-455和STAT5抑制剂处理游动孢子组织时,CPI-455抵消了STAT抑制剂对PmisAp2和PmisSp8的影响。

结论

PmisStat通过抑制PmisKdm5参与H3K4处的表观遗传组蛋白甲基化。H3K4me3比PmisStat更直接、更强烈地影响下游基因表达。

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