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通过……中的膜接触位点进行的细胞器间通讯

Interorganellar Communication Through Membrane Contact Sites in .

作者信息

Huet Diego, Moreno Silvia N J

机构信息

Center for Tropical and Emerging Global Diseases, University of Georgia, Athens, GA, USA.

Pharmaceutical and Biomedical Sciences, University of Georgia, Athens, GA, USA.

出版信息

Contact (Thousand Oaks). 2023 Aug 6;6:25152564231189064. doi: 10.1177/25152564231189064. eCollection 2023 Jan-Dec.

Abstract

Apicomplexan parasites are a group of protists that cause disease in humans and include pathogens like ., the causative agent of malaria, and , the etiological agent of toxoplasmosis and one of the most ubiquitous human parasites in the world. Membrane contact sites (MCSs) are widespread structures within eukaryotic cells but their characterization in apicomplexan parasites is only in its very beginnings. Basic biological features of the parasitic cycle support numerous organellar interactions, including the transfer of Ca and metabolites between different compartments. In , Ca signals precede a series of interrelated molecular processes occurring in a coordinated manner that culminate in the stimulation of key steps of the parasite life cycle. Calcium transfer from the endoplasmic reticulum to other organelles via MCSs would explain the precision, speed, and efficiency that is needed during the lytic cycle of . In this short review, we discuss the implications of these structures in cellular signaling, with an emphasis on their potential role in Ca signaling.

摘要

顶复门寄生虫是一类可导致人类疾病的原生生物,包括如疟原虫(疟疾的病原体)和弓形虫(弓形虫病的病原体,也是世界上最普遍的人类寄生虫之一)等病原体。膜接触位点(MCSs)是真核细胞内广泛存在的结构,但在顶复门寄生虫中的特征研究才刚刚起步。疟原虫寄生周期的基本生物学特性支持众多细胞器间的相互作用,包括不同区室间钙和代谢物的转移。在疟原虫中,钙信号先于一系列以协调方式发生的相互关联的分子过程,这些过程最终促成寄生虫生命周期关键步骤的刺激。通过膜接触位点从内质网到其他细胞器的钙转移可以解释疟原虫裂解周期所需的精确性、速度和效率。在这篇简短的综述中,我们讨论了这些结构在细胞信号传导中的意义,重点是它们在钙信号传导中的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6b6/10408353/086499e51af4/10.1177_25152564231189064-fig1.jpg

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