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疟原虫中的新型离子通道基因。

Novel Ion Channel Genes in Malaria Parasites.

机构信息

Laboratory of Malaria and Vector Research, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Rockville, MD 20852, USA.

出版信息

Genes (Basel). 2024 Feb 26;15(3):296. doi: 10.3390/genes15030296.

Abstract

Ion channels serve many cellular functions including ion homeostasis, volume regulation, signaling, nutrient acquisition, and developmental progression. Although the complex life cycles of malaria parasites necessitate ion and solute flux across membranes, the whole-genome sequencing of the human pathogen revealed remarkably few orthologs of known ion channel genes. Contrasting with this, biochemical studies have implicated the channel-mediated flux of ions and nutritive solutes across several membranes in infected erythrocytes. Here, I review advances in the cellular and molecular biology of ion channels in malaria parasites. These studies have implicated novel parasite genes in the formation of at least two ion channels, with additional ion channels likely present in various membranes and parasite stages. Computational approaches that rely on homology to known channel genes from higher organisms will not be very helpful in identifying the molecular determinants of these activities. Given their unusual properties, novel molecular and structural features, and essential roles in pathogen survival and development, parasite channels should be promising targets for therapy development.

摘要

离子通道在许多细胞功能中发挥作用,包括离子稳态、体积调节、信号转导、营养物质获取和发育进展。尽管疟原虫的复杂生命周期需要跨膜的离子和溶质通量,但人类病原体的全基因组测序显示,已知离子通道基因的直系同源物非常少。与此形成鲜明对比的是,生化研究表明,感染红细胞中离子和营养溶质的通道介导的通量穿过了几个膜。在这里,我回顾了疟疾寄生虫中离子通道的细胞和分子生物学方面的进展。这些研究表明,新型寄生虫基因至少参与了两种离子通道的形成,而其他离子通道可能存在于各种膜和寄生虫阶段中。依赖于高等生物中已知通道基因的同源性的计算方法在识别这些活动的分子决定因素方面不会有很大帮助。鉴于它们的异常特性、新颖的分子和结构特征以及在病原体存活和发育中的重要作用,寄生虫通道应该是有前途的治疗开发靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6657/10970509/4967e683f071/genes-15-00296-g001.jpg

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