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恶性疟原虫环子孢子蛋白(CSP)基因各结构域不同的进化机制。

Distinct evolutionary regimes across domains of the Plasmodium falciparum CSP gene.

作者信息

Al-Kaisy Rusul, Bhatt Samir, Duchêne David A

机构信息

Section Center for Evolutionary Hologenomics, Globe Institute, University of Copenhagen, Øster Farimagsgade 5 A, Copenhagen, 1353, Denmark.

Section of Epidemiology, Department of Public Health, University of Copenhagen, Copenhagen, 1353, Denmark.

出版信息

Sci Rep. 2025 Apr 18;15(1):13507. doi: 10.1038/s41598-025-98456-4.

Abstract

Malaria disease caused by parasites of genus Plasmodium places an enormous disease burden across tropical regions of the world. The circumsporozoite protein (CSP) of Plasmodium has several key functions in binding and accessing host cells, with functions subdivided across multiple protein regions. While its key roles during infection make the gene a primary target for malaria vaccine development, the evolutionary dynamics that could affect the forecasting of useful strains remain poorly understood. We tested whether the gene undergoes multiple DNA substitution processes and whether these are divided across gene regions using a phylogenetic mixture model, and a global sample of CSP sequences specific to P. falciparum. These analyses reveal evolutionary processes unique to the central repeat region and the C-terminus. The central repeat region is dominated by synonymous substitutions (putatively neutral) and heavy C-T substitution bias, while the C-terminus undergoes mostly non-synonymous changes. These evolutionary processes are not strongly geographically restricted, and lineages from Africa and Asia where the parasite is most abundant appear to drive evolution across all CSP gene regions. We propose that insights about DNA substitution processes can help forecast the variants of importance to vaccine development, aided by state-of-the-art evolutionary modelling.

摘要

由疟原虫属寄生虫引起的疟疾在世界热带地区造成了巨大的疾病负担。疟原虫的环子孢子蛋白(CSP)在结合和进入宿主细胞方面具有多种关键功能,其功能分布在多个蛋白质区域。虽然其在感染过程中的关键作用使该基因成为疟疾疫苗开发的主要靶点,但影响有用菌株预测的进化动态仍知之甚少。我们使用系统发育混合模型和恶性疟原虫特有的CSP序列全球样本,测试了该基因是否经历多个DNA替换过程以及这些过程是否在基因区域之间划分。这些分析揭示了中央重复区域和C末端特有的进化过程。中央重复区域以同义替换(假定为中性)和强烈的C-T替换偏向为主,而C末端主要经历非同义变化。这些进化过程在地理上没有受到强烈限制,寄生虫最为丰富的非洲和亚洲的谱系似乎推动了所有CSP基因区域的进化。我们提出,借助最先进的进化建模,对DNA替换过程的深入了解有助于预测对疫苗开发重要的变体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a919/12008178/c729ffc5196e/41598_2025_98456_Fig1_HTML.jpg

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