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首页> 外文期刊>MBio >Phosphorylation of Rhoptry Protein RhopH3 Is Critical for Host Cell Invasion by the Malaria Parasite
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Phosphorylation of Rhoptry Protein RhopH3 Is Critical for Host Cell Invasion by the Malaria Parasite

机译:鼻腔腐蚀蛋白鼻除的磷酸化对于疟疾寄生虫的宿主细胞侵袭至关重要

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摘要

Merozoites formed after asexual division of the malaria parasite invade the host red blood cells (RBCs), which is critical for initiating malaria infection. The process of invasion involves specialized organelles like micronemes and rhoptries that discharge key proteins involved in interaction with host RBC receptors. RhopH complex comprises at least three proteins, which include RhopH3. RhopH3 is critical for the process of red blood cell (RBC) invasion as well as intraerythrocytic development of human malaria parasite Plasmodium falciparum . It is phosphorylated at serine 804 (S804) in the parasite; however, it is unclear if phosphorylation regulates its function. To address this, a CRISPR-CAS9-based approach was used to mutate S804 to alanine (A) in P. falciparum . Using this phosphomutant (R3_S804A) of RhopH3, we demonstrate that the phosphorylation of S804 is critical for host RBC invasion by the parasite but not for its intraerythrocytic development. Importantly, the phosphorylation of RhopH3 regulates its localization to the rhoptries and discharge from the parasite, which is critical for RBC invasion. We also identified P. falciparum CDPK1 (PfCDPK1) as a possible candidate kinase for RhopH3-S804 phosphorylation and found that it regulates RhopH3 secretion from the parasite. These findings provide novel insights into the role of phosphorylation in rhoptry release and invasion, which is poorly understood.
机译:Merozoites在疟疾寄生虫的既血划分后形成宿主红细胞(RBC),这对于启动疟疾感染至关重要。侵袭过程涉及专门的细胞器,如微量肿瘤和毒液,其排出与宿主RBC受体相互作用的关键蛋白质。 rhoph络合物包含至少三种蛋白质,包括rhoph3。 rhoph3对于红细胞(RBC)侵袭以及人类疟疾寄生虫疟原虫的肝癌发育至关重要。它在寄生虫中的丝氨酸804(S804)磷酸化;但是,如果磷酸化调节其功能,则目前尚不清楚。为了解决这一点,基于CASP-9的方法用于将S804突变成丙屈普拉姆的丙氨酸(A)。使用鼻除的这种磷酸磷粉(R3_S804a),我们证明S804的磷酸化对于寄生虫的宿主侵袭是至关重要的,但不适用于其嗜肝癌。重要的是,rhoph3的磷酸化调节其对毒液的定位并从寄生虫排出,这对于RBC侵袭至关重要。我们还将P. falciparum cdpk1(pfcdpk1)鉴定为rhoph3-s804磷酸化可能的候选激酶,发现它调节寄生虫的rhoph3分泌。这些发现提供了对磷酸化在鼻腔释放和侵袭中的作用的新见解,这是较差的。

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