bioRxiv Science⌕ Search

Biology subjects

Marshall, C. L.

Publications and source records attributed to Marshall, C. L..

2 recordsLinked to original sources

LL-37 and Citrullinated-LL-37 elicited Transcriptome and Cytokine Profiles in Human Bronchial Epithelial Cells: Citrullination dampens the inflammatory biosignature

The human host defence peptide LL-37 mediates pleiotropic immunomodulatory functions that can be both pro- and anti-inflammatory. Under inflammatory conditions in the lungs, LL-37 is susceptible to the post-translational modification (PTM) citrullination. The impact of this PTM on LL-37's immunomodulatory functions is not fully understood. Therefore, we characterized the transcriptome and cytokine profile in response to LL-37 and citrullinated-LL-37 (citLL-37), in human bronchial epithelial cells (HBEC). Cells were stimulated with either LL-37 or citLL-37 (0.5 M), or a scrambled peptide (sLL-37). RNA after 4 hours (h) was analyzed with NanoString nCounter Host Response Panel, and 96 cytokines were examined (after 24 h) in tissue culture supernatants (Luminex platform). Genes and cytokines with a Log2 fold-change [&ge;]0.5 with p<0.05 compared to unstimulated cells were considered differentially expressed (DE). These studies revealed overlapping and distinct biosignatures. There were 118 DE genes with LL-37 and 71 with citLL-37, of which magnitude of change was significantly different for 32 genes. 16 out of 17 DE genes altered by both peptides were directly related to inflammation, and these were significantly less (by ~45%) with citLL-37 compared to LL-37. Similarly, inflammatory cytokines enhanced in response to LL-37 were significantly less (by 37-94%) with citLL-37. Overall, our findings indicate that citrullination of LL-37 does not abrogate cellular response in HBEC, instead dampens the inflammatory biosignature induced by LL-37.

immunology↗

X-Tracker: Automated Analysis of Xenopus Tadpole Visual Avoidance Behavior

Xenopus laevis tadpoles exhibit an avoidance behavior when they encounter a moving visual stimulus. A visual avoidance event occurs when a moving object approaches the eye of a free-swimming animal at an approximately 90-degree angle and the animal turns in response to the encounter. Analysis of this behavior requires tracking both the free-swimming animal and the moving visual stimulus both prior to and after the encounter. Previous automated tracking soft-ware does not discriminate the moving animal from the moving stimulus, requiring time-consuming manual analysis. Here we present X-Tracker, an automated behavior tracking code that can detect and discriminate moving visual stimuli and free-swimming animals and score encounters and avoidance events. X-Tracker is as accurate as human analysis without the human time commitment. We also present software improvements to our previous visual stimulus presentation and image capture that optimize videos for automated analysis, and hardware improvements that increase the number of animal-stimulus encounters. X-Tracker is a high throughput, unbiased, and significant time-saving analysis system that will greatly facilitate visual avoidance behavior analysis of Xenopus laevis tadpoles, and potentially other free-swimming organisms. The tool is available at https://github.com/ClineLab/Tadpole-Behavior-Automation.

animal behavior and cognition↗