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全基因组分析恶性疟原虫染色体相互作用的特点是与抗原变异相关的核架构和重排。

Genome-wide profiling of chromosome interactions in Plasmodium falciparum characterizes nuclear architecture and reconfigurations associated with antigenic variation.

机构信息

Weatherall Institute of Molecular Medicine, Headington, Oxford, OX3 9DS, UK; National Institute of Allergy and Infectious Disease, NIH, Rockville, MD, 20892, USA.

出版信息

Mol Microbiol. 2013 Nov;90(3):519-37. doi: 10.1111/mmi.12381. Epub 2013 Sep 30.

Abstract

Spatial relationships within the eukaryotic nucleus are essential for proper nuclear function. In Plasmodium falciparum, the repositioning of chromosomes has been implicated in the regulation of the expression of genes responsible for antigenic variation, and the formation of a single, peri-nuclear nucleolus results in the clustering of rDNA. Nevertheless, the precise spatial relationships between chromosomes remain poorly understood, because, until recently, techniques with sufficient resolution have been lacking. Here we have used chromosome conformation capture and second-generation sequencing to study changes in chromosome folding and spatial positioning that occur during switches in var gene expression. We have generated maps of chromosomal spatial affinities within the P. falciparum nucleus at 25 Kb resolution, revealing a structured nucleolus, an absence of chromosome territories, and confirming previously identified clustering of heterochromatin foci. We show that switches in var gene expression do not appear to involve interaction with a distant enhancer, but do result in local changes at the active locus. These maps reveal the folding properties of malaria chromosomes, validate known physical associations, and characterize the global landscape of spatial interactions. Collectively, our data provide critical information for a better understanding of gene expression regulation and antigenic variation in malaria parasites.

摘要

真核细胞核内的空间关系对于正常的核功能至关重要。在恶性疟原虫中,染色体的重定位与负责抗原变异的基因表达的调控有关,而单个核周核仁的形成导致 rDNA 的聚类。然而,由于直到最近还缺乏具有足够分辨率的技术,因此染色体之间的确切空间关系仍了解甚少。在这里,我们使用染色质构象捕获和第二代测序来研究在 var 基因表达切换过程中发生的染色体折叠和空间定位变化。我们以 25kb 的分辨率生成了恶性疟原虫核内染色体空间亲和力图谱,揭示了结构有序的核仁、不存在染色体区域以及确认了先前鉴定的异染色质焦点聚类。我们表明,var 基因表达的切换似乎不涉及与远距离增强子的相互作用,但确实导致活跃基因座的局部变化。这些图谱揭示了疟疾染色体的折叠特性,验证了已知的物理关联,并描绘了空间相互作用的全局景观。总的来说,我们的数据为更好地理解疟疾寄生虫中的基因表达调控和抗原变异提供了关键信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d37f/4282312/8a9c8fad4be3/mmi0090-0519-f1.jpg

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