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麝香百合精子细胞中雄性配子特异性组蛋白gcH3启动子的转录活性

Transcriptional activity of male gamete-specific histone gcH3 promoter in sperm cells of Lilium longiflorum.

作者信息

Okada Takashi, Bhalla Prem L, Singh Mohan B

机构信息

Plant Molecular Biology and Biotechnology Laboratory, ARC Centre of Excellence for Integrative Legume Research, Institute of Land and Food Resources, The University of Melbourne, Parkville, Victoria 3010, Australia.

出版信息

Plant Cell Physiol. 2005 May;46(5):797-802. doi: 10.1093/pcp/pci075. Epub 2005 Mar 8.

Abstract

Histones are essential for packaging of eukaryotic genomic DNA in nucleosomes, and histone gene expression is normally coupled with DNA synthesis. Some of the flowering plant histone genes show strictly male gamete-specific expression. However, mechanisms underlying their male gamete-specific expression have not been elucidated so far. Here we report the isolation of the male gamete-specific histone gcH3 promoter from Lilium longiflorum and its activity in the male gametic cell of the flowering plant. The OCT motif, which is well conserved in plant histone promoters regulating S phase-specific expression, is not conserved in the gcH3 promoter. Instead sequence motifs identical to GC box 1 and GC box 2, the transcriptional activator and suppressor for mammalian testis-specific histone H1t, are present in the gcH3 promoter, suggesting that plants and animals share the mechanism which governs the specificity of gene expression in male gametic cells. Male gamete-specific activation of the gcH3 promoter has been confirmed by microprojectile bombardment in lily pollen. The sperm cell carrying gold particles showed reporter gene expression, while green fluorescent protein (GFP) was absent in the other sperm cell which had no particles, confirming that the gcH3 promoter is activated in the male gametic cell, and sperm cells have transcriptional and translational machinery that is independent of the vegetative cell of pollen.

摘要

组蛋白对于真核生物基因组DNA在核小体中的包装至关重要,并且组蛋白基因表达通常与DNA合成相关联。一些开花植物的组蛋白基因表现出严格的雄配子特异性表达。然而,其雄配子特异性表达的潜在机制迄今尚未阐明。在此,我们报道了从麝香百合中分离出雄配子特异性组蛋白gcH3启动子及其在开花植物雄配子细胞中的活性。在调节S期特异性表达的植物组蛋白启动子中高度保守的OCT基序,在gcH3启动子中并不保守。相反,与哺乳动物睾丸特异性组蛋白H1t的转录激活因子和抑制因子GC盒1和GC盒2相同的序列基序存在于gcH3启动子中,这表明植物和动物共享控制雄配子细胞中基因表达特异性的机制。通过在百合花粉中进行微粒轰击,已证实了gcH3启动子的雄配子特异性激活。携带金颗粒的精子细胞显示出报告基因表达,而在没有颗粒的另一个精子细胞中则没有绿色荧光蛋白(GFP),这证实了gcH3启动子在雄配子细胞中被激活,并且精子细胞具有独立于花粉营养细胞的转录和翻译机制。

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