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异染色质介导的毒力基因表达调控。

Heterochromatin-mediated control of virulence gene expression.

作者信息

Merrick Catherine J, Duraisingh Manoj T

机构信息

Department of Immunology and Infectious Diseases, Harvard School of Public Health, 665 Huntington Ave, Building I, Rm 706, Boston, MA 02115, USA.

出版信息

Mol Microbiol. 2006 Nov;62(3):612-20. doi: 10.1111/j.1365-2958.2006.05397.x.

Abstract

In recent years, the sequencing and annotation of complete genomes, together with the development of genetic and proteomic techniques to study previously intractable eukaryotic microbes, has revealed interesting new themes in the control of virulence gene expression. Families of variantly expressed genes are found adjacent to telomeres in the genomes of both pathogenic and non-pathogenic organisms. This subtelomeric DNA is normally heterochromatic and higher-order chromatin structure has now come to be recognized as an important factor controlling both the evolution and expression dynamics of these multigene families. In eukaryotic cells, higher-order chromatin structure plays a central role in many DNA processes including the control of chromosome integrity and recombination, DNA partitioning during cell division, and transcriptional control. DNA can be packaged in two distinct forms: euchromatin is relatively accessible to DNA binding proteins and generally contains active genes, while heterochromatin is densely packaged, relatively inaccessible and usually transcriptionally silent. These features of chromatin are epigenetically inherited from cell cycle to cell cycle. This review will focus on the epigenetic mechanisms used to control expression of virulence genes in medically important microbial pathogens. Examples of such control have now been reported in several evolutionarily distant species, revealing what may be a common strategy used to regulate many very different families of genes.

摘要

近年来,完整基因组的测序与注释,以及用于研究此前难以处理的真核微生物的遗传和蛋白质组学技术的发展,揭示了毒力基因表达调控中有趣的新主题。在致病和非致病生物体的基因组中,可变表达基因家族位于端粒附近。这种亚端粒DNA通常是异染色质,现在高阶染色质结构已被认为是控制这些多基因家族进化和表达动态的重要因素。在真核细胞中,高阶染色质结构在许多DNA过程中起核心作用,包括染色体完整性和重组的控制、细胞分裂过程中的DNA分配以及转录控制。DNA可以以两种不同的形式包装:常染色质对DNA结合蛋白相对可及,通常包含活性基因,而异染色质则紧密包装,相对不可及且通常转录沉默。染色质的这些特征在细胞周期之间表观遗传地遗传。本综述将聚焦于医学上重要的微生物病原体中用于控制毒力基因表达的表观遗传机制。现在已在几个进化距离较远的物种中报道了这种调控的实例,揭示了可能是用于调控许多非常不同基因家族的共同策略。

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