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一种基于RNA干扰的平台,用于在动物发育过程中对组蛋白基因表达进行时空控制。

An RNAi-based platform for spatiotemporal control of histone gene expression during animal development.

作者信息

Arroyo Oscar M, Leatham-Jensen Mary P, McKay Daniel J

机构信息

University of North Carolina at Chapel Hill.

出版信息

Res Sq. 2025 Jun 4:rs.3.rs-6795507. doi: 10.21203/rs.3.rs-6795507/v1.

Abstract

BACKGROUND

Mutational analysis of histones provides an important means of studying the function of histone post-translational modifications (PTMs) in epigenetic gene regulation. However, several technical challenges have impeded direct tests of histone residue function in metazoans, including the massive abundance of histone gene products, multiple copies of histone genes in the genome, and the necessity of histones for cell viability.

RESULTS

Here, we describe a new experimental approach in for selective depletion of the replication-dependent histone H3.2. Using short hairpin RNA (shRNA) transgenes, we demonstrate effective depletion of endogenous H3.2 gene expression, which causes defects in cell proliferation and organ development. We further show that a histone replacement transgene, engineered to be insensitive to RNA interference (RNAi) fully rescues shRNA-mediated developmental defects. Last, we demonstrate that this selective depletion platform recapitulates phenotypes caused by histone gene mutation.

CONCLUSIONS

We conclude that shRNA-mediated depletion of endogenous histone H3.2, coupled with histone replacement transgenes engineered to be insensitive to RNAi, is an effective experimental approach for studying the role of histone PTMs in animal development.

摘要

背景

组蛋白的突变分析为研究组蛋白翻译后修饰(PTMs)在表观遗传基因调控中的功能提供了重要手段。然而,一些技术挑战阻碍了在后生动物中对组蛋白残基功能的直接测试,包括组蛋白基因产物的大量存在、基因组中组蛋白基因的多个拷贝以及组蛋白对细胞活力的必要性。

结果

在此,我们描述了一种在 中选择性消耗复制依赖性组蛋白H3.2的新实验方法。使用短发夹RNA(shRNA)转基因,我们证明了内源性H3.2基因表达的有效消耗,这导致细胞增殖和器官发育缺陷。我们进一步表明,一种对RNA干扰(RNAi)不敏感的组蛋白替代转基因能够完全挽救shRNA介导的发育缺陷。最后,我们证明了这种选择性消耗平台概括了由组蛋白基因突变引起的表型。

结论

我们得出结论,shRNA介导的内源性组蛋白H3.2的消耗,加上对RNAi不敏感的组蛋白替代转基因,是研究组蛋白PTMs在动物发育中作用的有效实验方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53f1/12155221/a08113994317/nihpp-rs6795507v1-f0001.jpg

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