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Crystal Structure of Malaria Parasite Nucleosome Assembly Protein: DISTINCT MODES OF PROTEIN LOCALIZATION AND HISTONE RECOGNITION*S⃞

机译:疟疾寄生虫核小体装配的晶体结构。 蛋白质:蛋白质定位和组蛋白的不同模式 认可*S⃞

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摘要

Nucleosome assembly proteins (NAPs) are histone chaperones that are essential for the transfer and incorporation of histones into nucleosomes. NAPs participate in assembly and disassembly of nucleosomes and in chromatin structure organization. Human malaria parasite Plasmodium falciparum contains two nucleosome assembly proteins termed PfNapL and PfNapS. To gain structural insights into the mechanism of NAPs, we have determined and analyzed the crystal structure of PfNapL at 2.3 Å resolution. PfNapL, an ortholog of eukaryotic NAPs, is dimeric in nature and adopts a characteristic fold seen previously for yeast NAP-1 and Vps75 and for human SET/TAF-1b (β)/INHAT. The PfNapL monomer is comprised of domain I, containing a dimerization α-helix, and a domain II, composed of α-helices and a β-subdomain. Structural comparisons reveal that the “accessory domain,” which is inserted between the domain I and domain II in yeast NAP-1 and other eukaryotic NAPs, is surprisingly absent in PfNapL. Expression of green fluorescent protein-tagged PfNapL confirmed its exclusive localization to the parasite cytoplasm. Attempts to disrupt the PfNapL gene were not successful, indicating its essential role for the malaria parasite. A detailed analysis of PfNapL structure suggests unique histone binding properties. The crucial structural differences observed between parasite and yeast NAPs shed light on possible new modes of histone recognition by nucleosome assembly proteins.
机译:核小体组装蛋白(NAP)是组蛋白伴侣,对于组蛋白转移和掺入核小体至关重要。 NAP参与核小体的组装和拆卸以及染色质结构的组织。人疟疾寄生虫恶性疟原虫含有两种核小体装配蛋白,分别称为PfNapL和PfNapS。为了深入了解NAP的机理,我们确定并分析了2.3Å分辨率的PfNapL的晶体结构。 PfNapL是真核NAP的直系同源物,本质上是二聚体,并采用了以前对于酵母NAP-1和Vps75以及对人SET / TAF-1b(β)/ INHAT可见的特征性折叠。 PfNapL单体由包含二聚化α-螺旋的结构域I和由α-螺旋和β-亚结构域组成的结构域II组成。结构比较表明,PfNapL令人惊讶地不存在插入酵母NAP-1和其他真核NAP中结构域I和结构域II之间的“辅助结构域”。带有绿色荧光蛋白标签的PfNapL的表达证实了其对寄生虫细胞质的唯一定位。破坏PfNapL基因的尝试未成功,表明其对疟原虫的重要作用。对PfNapL结构的详细分析表明独特的组蛋白结合特性。在寄生虫和酵母NAP之间观察到的关键结构差异为核小体组装蛋白识别组蛋白的新模式提供了可能。

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