Department of Medical Parasitology and Infection Biology, Swiss Tropical and Public Health Institute, 4051, Basel, Switzerland.
University of Basel, 4003, Basel, Switzerland.
Sci Rep. 2019 Nov 13;9(1):16720. doi: 10.1038/s41598-019-53325-9.
Previous studies in model eukaryotes have demonstrated that phosphorylation of heterochromatin protein 1 (HP1) is important for dynamically regulating its various functions. However, in the malaria parasite Plasmodium falciparum both the function of HP1 phosphorylation and the identity of the protein kinases targeting HP1 are still elusive. In order to functionally analyze phosphorylation of P. falciparum HP1 (PfHP1), we first mapped PfHP1 phosphorylation sites by liquid chromatography tandem mass spectrometry (LC-MS/MS) analysis of native PfHP1, which identified motifs from which potential kinases could be predicted; in particular, several phosphorylated residues were embedded in motifs rich in acidic residues, reminiscent of targets for P. falciparum casein kinase 2 (PfCK2). Secondly, we tested recombinant PfCK2 and a number of additional protein kinases for their ability to phosphorylate PfHP1 in in vitro kinase assays. These experiments validated our prediction that PfHP1 acts as a substrate for PfCK2. Furthermore, LC-MS/MS analysis showed that PfCK2 phosphorylates three clustered serine residues in an acidic motif within the central hinge region of PfHP1. To study the role of PfHP1 phosphorylation in live parasites we used CRISPR/Cas9-mediated genome editing to generate a number of conditional PfHP1 phosphomutants based on the DiCre/LoxP system. Our studies revealed that neither PfCK2-dependent phosphorylation of PfHP1, nor phosphorylation of the hinge domain in general, affect PfHP1's ability to localize to heterochromatin, and that PfHP1 phosphorylation in this region is dispensable for the proliferation of P. falciparum blood stage parasites.
先前在模式真核生物中的研究表明,异染色质蛋白 1 (HP1) 的磷酸化对于动态调节其各种功能非常重要。然而,在疟原虫 Plasmodium falciparum 中,HP1 磷酸化的功能和靶向 HP1 的蛋白激酶的身份仍然难以捉摸。为了对 PfHP1 的磷酸化进行功能分析,我们首先通过对天然 PfHP1 的液相色谱串联质谱 (LC-MS/MS) 分析来绘制 PfHP1 的磷酸化位点,这确定了可以预测潜在激酶的基序;特别是,几个磷酸化残基嵌入富含酸性残基的基序中,让人联想到疟原虫酪蛋白激酶 2 (PfCK2) 的靶标。其次,我们在体外激酶测定中测试了重组 PfCK2 和一些其他蛋白激酶,以测试它们磷酸化 PfHP1 的能力。这些实验验证了我们的预测,即 PfHP1 是 PfCK2 的底物。此外,LC-MS/MS 分析表明,PfCK2 磷酸化 PfHP1 中心铰链区域酸性基序中的三个聚集丝氨酸残基。为了研究 PfHP1 磷酸化在活寄生虫中的作用,我们使用 CRISPR/Cas9 介导的基因组编辑,基于 DiCre/LoxP 系统生成了一些条件性 PfHP1 磷酸突变体。我们的研究表明,PfCK2 依赖性 PfHP1 磷酸化,以及铰链域的磷酸化一般,都不会影响 PfHP1 定位于异染色质的能力,并且该区域的 PfHP1 磷酸化对于疟原虫裂殖体寄生虫的增殖是可有可无的。