2026年第53卷第4期目录
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封面故事:疟原虫通过重塑宿主红细胞以增强其生存能力和毒力,这一过程依赖于疟原虫输出蛋
白与红细胞膜骨架蛋白的相互作用。骨架结合蛋白1 (skeleton-binding protein 1,SBP1) 是在疟原
虫不同种属中高度保守的关键输出蛋白。该研究在伯氏疟原虫(Plasmodium berghei,Pb) 中,揭
示了PbSBP1可能通过与红细胞骨架蛋白4.1R的相互作用,参与红细胞膜骨架的重塑过程。通过构
建Pbsbp1基因敲除突变体,结合微流控分析与超分辨率随机光学重建显微镜成像发现,PbSBP1缺
失会导致感染红细胞的变形能力显著增强,并诱发红细胞骨架网络超微结构发生改变。表型分析
进一步证实,PbSBP1的缺失会显著减缓疟原虫红内期的生长速度,并削弱其诱导小鼠发生脑型疟
疾的能力。该研究揭示了PbSBP1可能通过与红细胞骨架蛋白4.1R的相互作用参与感染红细胞膜骨
架重塑,阐明了这一机制对维持感染红细胞变形性、疟原虫红内期生长及其致病性的关键作用,
为理解疟疾发病机制和开发新治疗靶点提供了重要理论依据。
(郭欣悦,赵焕琪,钟燕璇,姜如梦,李耀先,潘雷霆,王 倩,史小雨. PbSBP1 影响伯氏疟原虫感染红细
胞的膜骨架结构和变形能力, 本期第1015~1027 页)
Cover Story:Objective The malaria parasites remodel the host erythrocyte structure by exporting parasite proteins that interact with the membrane skeleton proteins of red blood cells (RBCs), facilitating their intracellular survival and pathogenicity. Skeleton-binding protein 1 (SBP1) is a conserved exported protein across Plasmodium species. In Plasmodium falciparum, SBP1 has been reported to interact with erythrocyte membrane skeleton proteins 4.1R and spectrin, while its contribution to erythrocyte remodeling and parasite virulence in Plasmodium berghei (Pb) remains unclear. This study aims to determine whether PbSBP1 associates with the host cytoskeletal protein 4.1R and to investigate its role in the remodeling of host RBCs and the pathogenicity of Plasmodium berghei.Methods In Plasmodium berghei, the relationship between PbSBP1 and the erythrocyte cytoskeletal protein 4.1R was examined using co-immunoprecipitation. A Pbsbp1 gene knockout mutant of Plasmodium berghei (Pbsbp1?) was generated based on the principle of double crossover homologous recombination. The deformability of erythrocytes infected with Pbsbp1? parasites was assessed using microfluidic methods. Microchannels with an array of cylindrical pillars were used to detect modifications in infected RBC deformability. The infected RBCs were squashed between the rows and recovered between the columns and the transit velocity (μm/s) of infected RBCs travelling through the microchannel was recorded. The component of the erythrocyte membrane skeleton junctional complex, tropomodulin (TMOD), was fluorescently labeled, and the cytoskeletal network of infected erythrocytes was imaged using super-resolution stochastic optical reconstruction microscopy (STORM) to analyze ultrastructural changes in the cytoskeleton of wild-type (WT) and Pbsbp1?-infected erythrocytes. Actin-based junctional complexes were displayed as individual clusters by the labeled TMOD in the STORM images, and the cluster densities and distances between adjacent clusters of infected RBCs were calculated. Additionally, rodent malaria models (BALB/c mice) and experimental cerebral malaria models (C57BL/6 mice) were employed to monitor the growth of Pbsbp1? and WT parasites during the intraerythrocytic stage and their capacity to induce cerebral malaria in mice.Results PbSBP1 may participate in the remodeling of infected erythrocytes through direct or indirect interaction with the erythrocyte cytoskeletal protein 4.1R. Microfluidic assays revealed that the deformability of erythrocytes infected with Pbsbp1? parasites was significantly enhanced compared to those infected with WT parasites. STORM imaging further demonstrated that the ultrastructure of the erythrocyte cytoskeleton in Pbsbp1?-infected cells was altered relative to that in WT-infected erythrocytes. The distances between nearest neighbors of clusters had a tendency to increase while the cluster densities were decreased in Pbsbp1?-infected RBCs compared to WT-infected RBCs. Subsequent phenotypic analysis indicated that the growth rate of Pbsbp1? parasites during the intraerythrocytic stage was significantly slower than that of WT parasites, and their ability to induce cerebral malaria in mice was also attenuated. These findings suggest that PbSBP1 is involved in the remodeling of the erythrocyte membrane skeleton, likely through its direct or indirect interaction with protein 4.1R, thereby regulating the deformability of infected erythrocytes and influencing the pathogenicity of the blood-stage parasites.Conclusion This study establishes a role for PbSBP1 in host erythrocyte remodeling and parasite virulence, providing new research strategies for the prevention and treatment of malaria.
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