Department of Parasitology, Mycology and Environmental Microbiology (PMV), Swedish Institute for Infectious Disease Control (SMI), Karolinska Institutet, Stockholm, Sweden.
PLoS One. 2007 May 30;2(5):e477. doi: 10.1371/journal.pone.0000477.
Plasmodium falciparum malaria is brought about by the asexual stages of the parasite residing in human red blood cells (RBC). Contact between the erythrocyte surface and the merozoite is the first step for successful invasion and proliferation of the parasite. A number of different pathways utilised by the parasite to adhere and invade the host RBC have been characterized, but the complete biology of this process remains elusive. We here report the identification of an open reading frame (ORF) representing a hitherto unknown second exon of the Pf332 gene that encodes a cysteine-rich polypeptide with a high degree of similarity to the Duffy-binding-like (DBL) domain of the erythrocyte-binding-ligand (EBL) family. The sequence of this DBL-domain is conserved and expressed in all parasite clones/strains investigated. In addition, the expression level of Pf332 correlates with proliferation efficiency of the parasites in vitro. Antibodies raised against the DBL-domain are able to reduce the invasion efficiency of different parasite clones/strains. Analysis of the DBL-domain revealed its ability to bind to uninfected human RBC, and moreover demonstrated association with the iRBC surface. Thus, Pf332 is a molecule with a potential role to support merozoite invasion. Due to the high level of conservation in sequence, the novel DBL-domain of Pf332 is of possible importance for development of novel anti-malaria drugs and vaccines.
恶性疟原虫疟疾是由寄生虫的无性阶段驻留在人类红细胞(RBC)中引起的。红细胞表面与裂殖子的接触是寄生虫成功入侵和增殖的第一步。寄生虫已经确定了利用许多不同途径来黏附和入侵宿主 RBC,但该过程的完整生物学仍然难以捉摸。我们在这里报告了一个开放阅读框(ORF)的鉴定,该 ORF 代表 Pf332 基因的一个以前未知的第二外显子,该基因编码一种富含半胱氨酸的多肽,与红细胞结合配体(EBL)家族的 Duffy 结合样(DBL)结构域具有高度相似性。该 DBL 结构域的序列在所有研究的寄生虫克隆/株中都是保守的和表达的。此外,Pf332 的表达水平与寄生虫在体外的增殖效率相关。针对 DBL 结构域的抗体能够降低不同寄生虫克隆/株的入侵效率。对 DBL 结构域的分析表明其能够结合未感染的人类 RBC,并且还证明与 iRBC 表面相关联。因此,Pf332 是一种可能有助于裂殖体入侵的分子。由于序列高度保守,Pf332 的新型 DBL 结构域可能对开发新型抗疟药物和疫苗具有重要意义。