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McCarty, K. L.

Publications and source records attributed to McCarty, K. L..

2 recordsLinked to original sources

Live-cell imaging and ultrastructure expansion microscopy reveal the dynamic intracellular life cycle of Encephalitozoon intestinalis

Microsporidia are divergent fungal pathogens that infect a wide range of hosts. Microsporidia have evolved highly reduced genomes, resulting in the loss of many metabolic pathways. Encephalitozoon intestinalis is a human-infecting microsporidian species with the smallest known eukaryotic genome (2.3 Mbp). As an obligate intracellular parasite, E. intestinalis is dependent on its host for replication. Our current understanding of E. intestinalis cell biology remains limited. This is largely due to genetic intractability, which has made live-cell imaging challenging, and its small size (~2 m), which is within the diffraction limit of conventional microscopy. Here we develop a live-cell imaging technique, "silhouette microscopy", that does not rely on genetic manipulation of microsporidia, and enables us to study the live cell dynamics of E. intestinalis replication in host cells, from entry to exit. We report the timing of cell division, kinetics of the parasite life cycle, and dynamics of the parasitophorous vacuole within which E. intestinalis resides. The parasitophorous vacuole undergoes frequent fission and fusion, and ultimately ruptures to facilitate parasite release from the host cell. To gain a higher resolution understanding into the cell biology of E. intestinalis development, we performed ultrastructure expansion microscopy (U-ExM) on infected cells. U-ExM reveals the organization of the E. intestinalis cytoskeleton and development of the specialized invasion organelle, the polar tube. The combination of live-cell imaging and U-ExM provide a platform to study the E. intestinalis life cycle, and sheds light on the dynamics and cell biology of E. intestinalis in host cells.

microbiology↗

scRNA-seq reveals transcriptional dynamics of Encephalitozoon intestinalis parasites in human macrophages

Microsporidia are single-celled intracellular parasites that cause opportunistic diseases in humans. Encephalitozoon intestinalis is a prevalent human-infecting species that invades the small intestine. Dissemination to other organ systems is also observed, and is potentially facilitated by macrophages. The macrophage response to infection and the developmental trajectory of the parasite are not well studied. Here we use single cell RNA sequencing to investigate transcriptional changes in both the host and parasite during infection. While a small population of infected macrophages mount a response, most remain transcriptionally unchanged, suggesting that the majority of parasites may avoid host detection. The parasite transcriptome reveals large transcriptional changes throughout the life cycle, providing a blueprint for parasite development. The stealthy microsporidian lifestyle likely allows these parasites to harness macrophages for replication and dissemination. Together, our data provide insights into the host response in primary human macrophages and the E. intestinalis developmental program.

microbiology↗