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疟原虫可变表达位点上的反式作用富含GC的非编码RNA调节基因计数

Trans-acting GC-rich non-coding RNA at var expression site modulates gene counting in malaria parasite.

作者信息

Guizetti Julien, Barcons-Simon Anna, Scherf Artur

机构信息

Unité de Biologie des Interactions Hôte-Parasite, Institut Pasteur, Paris, 75724, France

INSERM U1201, F-75724 Paris, France.

出版信息

Nucleic Acids Res. 2016 Nov 16;44(20):9710-9718. doi: 10.1093/nar/gkw664. Epub 2016 Jul 27.

Abstract

Monoallelic expression of the var multigene family enables immune evasion of the malaria parasite Plasmodium falciparum in its human host. At a given time only a single member of the 60-member var gene family is expressed at a discrete perinuclear region called the 'var expression site'. However, the mechanism of var gene counting remains ill-defined. We hypothesize that activation factors associating specifically with the expression site play a key role in this process. Here, we investigate the role of a GC-rich non-coding RNA (ncRNA) gene family composed of 15 highly homologous members. GC-rich genes are positioned adjacent to var genes in chromosome-central gene clusters but are absent near subtelomeric var genes. Fluorescence in situ hybridization demonstrates that GC-rich ncRNA localizes to the perinuclear expression site of central and subtelomeric var genes in trans. Importantly, overexpression of distinct GC-rich ncRNA members disrupts the gene counting process at the single cell level and results in activation of a specific subset of var genes in distinct clones. We identify the first trans-acting factor targeted to the elusive perinuclear var expression site and open up new avenues to investigate ncRNA function in antigenic variation of malaria and other protozoan pathogens.

摘要

恶性疟原虫var多基因家族的单等位基因表达使其能够在人类宿主中逃避免疫。在特定时间,60个成员的var基因家族中只有一个成员在一个称为“var表达位点”的离散核周区域表达。然而,var基因计数的机制仍不清楚。我们假设与表达位点特异性结合的激活因子在这个过程中起关键作用。在这里,我们研究了一个由15个高度同源成员组成的富含GC的非编码RNA(ncRNA)基因家族的作用。富含GC的基因位于染色体中央基因簇中var基因的相邻位置,但在亚端粒var基因附近不存在。荧光原位杂交表明,富含GC的ncRNA在反式中定位于中央和亚端粒var基因的核周表达位点。重要的是,不同富含GC的ncRNA成员的过表达在单细胞水平上破坏了基因计数过程,并导致不同克隆中特定var基因子集的激活。我们鉴定出第一个靶向难以捉摸的核周var表达位点的反式作用因子,并为研究ncRNA在疟疾和其他原生动物病原体抗原变异中的功能开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/340e/5175341/5e236e41cd97/gkw664fig1.jpg

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