Department of Biological Science, College of Natural Sciences and Mathematics, California State University Fullerton, Fullerton, California, USA.
Laboratorio de Ultraestrutura Celular Hertha Meyer, Instituto de Biofísica Carlos Chagas Filho, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
J Eukaryot Microbiol. 2022 Nov;69(6):e12939. doi: 10.1111/jeu.12939. Epub 2022 Aug 16.
Osmoregulation is a conserved cellular process required for the survival of all organisms. In protists, the need for robust compensatory mechanisms that can maintain cell volume and tonicity within physiological range is even more relevant, as their life cycles are often completed in different environments. Trypanosoma cruzi, the protozoan pathogen responsible for Chagas disease, is transmitted by an insect vector to multiple types of mammalian hosts. The contractile vacuole complex (CVC) is an organelle that senses and compensates osmotic changes in the parasites, ensuring their survival upon ionic and osmotic challenges. Recent work shows that the contractile vacuole is also a key component of the secretory and endocytic pathways, regulating the selective targeting of surface proteins during differentiation. Here we summarize our current knowledge of the mechanisms involved in the osmoregulatory processes that take place in the vacuole, and we explore the new and exciting functions of this organelle in cell trafficking and signaling.
渗透调节是所有生物生存所必需的保守细胞过程。在原生动物中,需要有强大的补偿机制来维持细胞体积和渗透压在生理范围内,因为它们的生命周期通常在不同的环境中完成。引起恰加斯病的原生动物病原体克氏锥虫通过昆虫媒介传播给多种类型的哺乳动物宿主。收缩泡复合细胞器(CVC)是一种细胞器,可感应和补偿寄生虫中的渗透变化,确保它们在离子和渗透挑战下存活。最近的工作表明,收缩泡也是分泌和内吞途径的关键组成部分,可调节分化过程中表面蛋白的选择性靶向。在这里,我们总结了目前对发生在液泡中的渗透调节过程中涉及的机制的认识,并探讨了该细胞器在细胞运输和信号转导中的新的令人兴奋的功能。