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恶性疟原虫起源识别复合体亚基1(PfOrc1)在功能上互补酿酒酵母的Δsir3突变体。

Plasmodium falciparum origin recognition complex subunit 1 (PfOrc1) functionally complements Δsir3 mutant of Saccharomyces cerevisiae.

作者信息

Varunan Shalu M, Tripathi Jaishree, Bhattacharyya Sunanda, Suhane Tanvi, Bhattacharyya Mrinal Kanti

机构信息

Department of Biochemistry, School of Life Sciences, University of Hyderabad, Gachibowli, Hyderabad 500046, Andhra Pradesh, India.

出版信息

Mol Biochem Parasitol. 2013 Sep;191(1):28-35. doi: 10.1016/j.molbiopara.2013.08.004. Epub 2013 Sep 7.

Abstract

Telomere position effect efficiently controls silencing of subtelomeric var genes, which are involved in antigenic variation in human malaria parasite Plasmodium falciparum. Although, PfOrc1 has been found to be associated with PfSir2 in the silencing complex, its function in telomere silencing remained uncertain especially due to an apparent lack of BAH domain at its amino-terminal region. Here we report that PfOrc1 possesses a Sir3/Orc1 like silencing activity. Using yeast as a surrogate organism we have shown that PfOrc1 could complement yeast Sir3 activity during telomere silencing in a Sir2 dependent manner. By constructing a series of chimera between PfOrc1 and ScSir3 we have observed that the amino-terminal domain of PfOrc1 harbors silencing activity similar to that present in the amino-terminal domain of ScSir3. We further generated several amino-terminal deletion mutants to dissect out such silencing activity and found that the first seventy amino acids at the amino-terminal domain are dispensable for its activity. Thus our results strongly supports that PfOrc1 may have a role in telomere silencing in this parasite. This finding will help to decipher the mechanism of telomere position effect in P. falciparum.

摘要

端粒位置效应有效地控制着亚端粒var基因的沉默,这些基因与人类疟原虫恶性疟原虫的抗原变异有关。尽管已发现PfOrc1在沉默复合物中与PfSir2相关联,但其在端粒沉默中的功能仍不确定,尤其是由于其氨基末端区域明显缺乏BAH结构域。在此我们报告PfOrc1具有类似Sir3/Orc1的沉默活性。利用酵母作为替代生物体,我们已表明PfOrc1可以以Sir2依赖的方式在端粒沉默期间补充酵母Sir3的活性。通过构建PfOrc1和ScSir3之间的一系列嵌合体,我们观察到PfOrc1的氨基末端结构域具有与ScSir3氨基末端结构域中存在的类似沉默活性。我们进一步生成了几个氨基末端缺失突变体以剖析这种沉默活性,发现氨基末端结构域的前70个氨基酸对其活性是可有可无的。因此,我们的结果有力地支持PfOrc1可能在该寄生虫的端粒沉默中起作用。这一发现将有助于阐明恶性疟原虫中端粒位置效应的机制。

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