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果蝇组蛋白甲基转移酶 SET1 协调多个信号通路,调节雄性生殖干细胞的维持和分化。

The Drosophila histone methyltransferase SET1 coordinates multiple signaling pathways in regulating male germline stem cell maintenance and differentiation.

机构信息

Department of Biology, The Johns Hopkins University, Baltimore, MD 21218, USA.

Laboratory of Epigenome Biology, Systems Biology Center, National Heart, Lung and Blood Institute, NIH, Bethesda, MD 20814, USA.

出版信息

Development. 2024 Aug 1;151(15). doi: 10.1242/dev.202729. Epub 2024 Aug 9.

Abstract

Many tissue-specific adult stem cell lineages maintain a balance between proliferation and differentiation. Here, we study how the H3K4me3 methyltransferase Set1 regulates early-stage male germ cells in Drosophila. Early-stage germline-specific knockdown of Set1 results in temporally progressive defects, arising as germ cell loss and developing into overpopulated early-stage germ cells. These germline defects also impact the niche architecture and cyst stem cell lineage non-cell-autonomously. Additionally, wild-type Set1, but not the catalytically inactive Set1, rescues the Set1 knockdown phenotypes, highlighting the functional importance of the methyltransferase activity of Set1. Further, RNA-sequencing experiments reveal key signaling pathway components, such as the JAK-STAT pathway gene Stat92E and the BMP pathway gene Mad, which are upregulated upon Set1 knockdown. Genetic interaction assays support the functional relationships between Set1 and JAK-STAT or BMP pathways, as both Stat92E and Mad mutations suppress the Set1 knockdown phenotypes. These findings enhance our understanding of the balance between proliferation and differentiation in an adult stem cell lineage. The phenotype of germ cell loss followed by over-proliferation when inhibiting a histone methyltransferase also raises concerns about using their inhibitors in cancer therapy.

摘要

许多组织特异性成体干细胞谱系在增殖和分化之间保持平衡。在这里,我们研究了 H3K4me3 甲基转移酶 Set1 如何在果蝇中调节早期雄性生殖细胞。早期生殖细胞特异性 Set1 敲低导致时间上渐进的缺陷,表现为生殖细胞丢失,并发展为过度增殖的早期生殖细胞。这些生殖细胞缺陷也会对小生境结构和细胞非自主的类囊干细胞谱系产生影响。此外,野生型 Set1,但不是催化失活的 Set1,可以挽救 Set1 敲低表型,突出了 Set1 的甲基转移酶活性的功能重要性。此外,RNA 测序实验揭示了关键的信号通路成分,如 JAK-STAT 通路基因 Stat92E 和 BMP 通路基因 Mad,它们在 Set1 敲低后上调。遗传相互作用实验支持 Set1 和 JAK-STAT 或 BMP 通路之间的功能关系,因为 Stat92E 和 Mad 突变都可以抑制 Set1 敲低表型。这些发现增强了我们对成体干细胞谱系中增殖和分化之间平衡的理解。抑制组蛋白甲基转移酶时生殖细胞丢失随后过度增殖的表型也引起了人们对在癌症治疗中使用它们的抑制剂的担忧。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f69/11369688/8488c1f798bf/develop-151-202729-g1.jpg

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