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Biology subjects

Watson, E. M.

Publications and source records attributed to Watson, E. M..

3 recordsLinked to original sources

High sensitivity imaging of intracellular Cl- reveals the spatiotemporal evolution of GABAergic chloride fluxes in vitro and in vivo

Fast GABAergic inhibition in the brain is mediated by chloride currents whose driving force depends on intracellular Chloride concentration ([Cl-]i). Resolving the spatiotemporal dynamics of [Cl-]i in neurons requires a sensor combining high Cl- affinity, pH independence, and photostability - properties no existing tool achieves simultaneously. Here we introduce iClima (improved Chloride Imaging), a ratiometric genetically encoded sensor with high Cl- affinity (Kd=3.5 mM at pH 7.2), pH-insensitive under physiological conditions, and markedly improved photostability compared to existing sensors. These properties enable dynamic Cl- imaging without simultaneous pH correction. We demonstrate that iClima resolves GABAA-driven Cl- transients in cultured neurons, detects discrete Cl- hotspots along dendrites, and captures sensory-evoked Cl- transients in vivo. Finally, exploiting the spectral compatibility of iClima with GCaMP6f, we measure in interleaved trials Cl- and Ca2+ transients in the same neurons in vivo, revealing a divergence between the somatic inhibitory drive and the neuronal excitation state as reported by Ca2+ dynamics.

neuroscience↗

Expression and role of the RNA-binding protein, ZFP36L1, in mouse T follicular helper cell differentiation and function

T follicular helper (Tfh) cells are critical for germinal centers (GC), the specialised microenvironment where long-lived humoral immunity is generated in response to vaccination or infection. Within the GC, B cells engage with Tfh cells and elicit their help in the form of cytokines and cell-surface co-stimulator molecules. Tfh helper activity must be rapidly available in response to B cell engagement, yet the mechanisms controlling this helper activity remain poorly characterized. Post-transcriptional regulation of mRNA decay and translation offer one way to rapidly and temporally tune Tfh cell activity. ZFP36L1, a member of the ZFP family of RNA-binding proteins, is a candidate modulator of Tfh cell helper activity as it controls cytokine production and responses in other T cell lineages, modulating their differentiation and function. We sought to determine if ZFP36L1 is also important for Tfh cell biology. In this study, we show expression of ZFP36L1 by Tfh cells. We selectively delete ZFP36L1 from Tfh cells and analyze the effect this has on the GCs. Surprisingly, we find the GC response and affinity maturation is resilient to deletion of ZFP36L1 from Tfh cells.

immunology↗

The contribution of sex chromosome conflict to disrupted spermatogenesis in hybrid house mice

Incompatibilities on the sex chromosomes are important in the evolution of hybrid male sterility, but the evolutionary forces underlying this phenomenon are unclear. House mice (Mus musculus) lineages have provided powerful models for understanding the genetic basis of hybrid male sterility. X chromosome-autosome interactions cause strong incompatibilities in Mus musculus F1 hybrids, but variation in sterility phenotypes suggests a more complex genetic basis. Additionally, XY chromosome conflict has resulted in rapid expansions of ampliconic genes with dosage-dependent expression that is essential to spermatogenesis. Here we evaluated the contribution of XY lineage mismatch to male fertility and stage-specific gene expression in hybrid mice. We performed backcrosses between two house mouse subspecies to generate reciprocal Y-introgression strains and used these strains to test the effects of XY mismatch in hybrids. Our transcriptome analyses of sorted spermatid cells revealed widespread overexpression of the X chromosome in sterile F1 hybrids independent of Y chromosome subspecies origin. Thus, postmeiotic overexpression of the X chromosome in sterile F1 mouse hybrids is likely a downstream consequence of disrupted meiotic X-inactivation rather than XY gene copy number imbalance. Y-chromosome introgression did result in subfertility phenotypes and disrupted expression of several autosomal genes in mice with an otherwise nonhybrid genomic background, suggesting that Y-linked incompatibilities contribute to reproductive barriers, but likely not as a direct consequence of XY conflict. Collectively, these findings suggest that rapid sex chromosome gene family evolution driven by genomic conflict has not resulted in strong male reproductive barriers between these subspecies of house mice.

evolutionary biology↗