Militello Kevin T, Patel Vishal, Chessler Anne-Danielle, Fisher Julia K, Kasper Jacob M, Gunasekera Anusha, Wirth Dyann F
Harvard School of Public Health, Department of Immunology and Infectious Diseases, 665 Huntington Avenue, Building I, Room 705, Boston, MA 02115, USA.
RNA. 2005 Apr;11(4):365-70. doi: 10.1261/rna.7940705. Epub 2005 Feb 9.
The recent identification of antisense RNA in the transcriptomes of many eukaryotes has generated enormous interest. The presence of antisense RNA in Plasmodium falciparum, the causative agent of severe malaria, remains controversial. Elucidation of the mechanism of antisense RNA in P. falciparum synthesis is critical in order to demonstrate the origin and function of these transcripts. Therefore, a systematic analysis of antisense and sense RNA synthesis was performed using direct labeling experiments. Nuclear run on experiments with single-stranded DNA probes demonstrated that antisense RNA is synthesized in the nucleus at several genomic loci. Antisense RNA synthesis is sensitive to the potent RNA polymerase II inhibitor alpha-amanitin. Antisense and sense transcription was also detected in nuclei isolated from synchronized parasites, suggesting concurrent synthesis. In summary, our experiments directly demonstrate that antisense RNA synthesis is a common transcriptional phenomenon in P. falciparum, and is catalyzed by RNA polymerase II.
近期在许多真核生物转录组中发现反义RNA引发了极大关注。恶性疟原虫(严重疟疾的病原体)中反义RNA的存在仍存在争议。阐明恶性疟原虫中反义RNA的合成机制对于证明这些转录本的起源和功能至关重要。因此,我们通过直接标记实验对反义RNA和正义RNA的合成进行了系统分析。使用单链DNA探针进行的核运行实验表明,反义RNA在细胞核中的多个基因组位点合成。反义RNA的合成对强效RNA聚合酶II抑制剂α-鹅膏蕈碱敏感。在从同步化寄生虫中分离出的细胞核中也检测到了反义转录和正义转录,这表明两者是同时合成的。总之,我们的实验直接证明反义RNA的合成是恶性疟原虫中一种常见的转录现象,且由RNA聚合酶II催化。