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Mvula, W.

Publications and source records attributed to Mvula, W..

2 recordsLinked to original sources

Super-resolution microscopy reveals distinct epigenetic states regulated by estrogen receptor activity

Changes in gene expression regulated by ligand-dependent transcription factors such as estrogen receptor- (ER) involves the recruitment of coactivators including p300 that acetylates histone H3 at lysine 27 (H3K27ac). While H3K27ac marks active enhancers, the detailed chromatin architecture of enhancers remains unclear. Using super-resolution microscopy, we reveal distinct structural states of H3K27ac modified chromatin in response to ER activation. In estradiol (E2)-treated cells, H3K27ac modified chromatin adopts open, elongated structures, while ER inhibition induces compact, spherical H3K27ac modified chromatin conformations. Using MED1, a core subunit of the Mediator complex that bridges transcription factors with RNA polymerase II (Pol II), we demonstrate that larger H3K27ac structures are preferentially associated with active enhancers, whereas more compact structures show reduced MED1 association, consistent with a less active or inactive state. A constitutively active ER mutation linked to endocrine therapy resistance in breast cancer maintains open chromatin states independent of ligand, suggesting sustained transcriptional activity. Our findings provide the first direct visualization of H3K27ac associated chromatin structural dynamics, challenging the assumption that H3K27ac modification alone is sufficient to lead to enhancer activation. By demonstrating that H3K27ac architecture is dynamically regulated by ER, we establish a new paradigm for understanding epigenetic regulation and highlight potential therapeutic targets for endocrine therapy resistant cancers.

cancer biology↗

Nutritional characterisation and seasonal variation of goat forages in Central Malawi

Goat ownership is prevalent across rural Malawi and provides a vital source of income, nutrition, and food security. However, goat performance is poor, and this presents a risk to individuals and communities who depend on them. Whilst mitigating this through supplementation of persevered forages may be possible, this is a challenge due to limitations of resources and the fact that goats typically free-roam during the dry season. Nutrition is fundamental to health and productivity of any livestock enterprise, it is required to be able to deal with stresses, such as disease, and to enable growth and production. The aim of this study was to characterise the nutritional profile of naturally available forages in Malawi, including the seasonal variation in nutrition. Samples of herbaceous forages and browse were collected over a 17-month period, across four villages (30 farms/smallholders) in Central Malawi. Forages underwent nutritional analysis for crude protein, fibre fractions, and ash/organic matter and NDVI obtained from satellite imagery was used as a measure of forage availability. Forage nutrition and availability were most adequate in the wet season, with higher concentrations of crude protein and a greater availability of herbaceous plants. There were significant differences in low-digestibility fibre fractions between locations, likely due to local factors such as soil and hydrology. The fall in crude protein concentrations from the wet season to the dry season represent a seasonal nutrition-gap which may result in risks to goat health and productivity.

zoology↗