Publications by authors named "Vinson Fan"

During human development, a temporary organ is formed, the placenta, which invades the uterine wall to support nutrient, oxygen, and waste exchange between the mother and fetus until birth. Most of the human placenta is formed by a syncytial villous structure lined by syncytialized trophoblasts, a specialized cell type that forms via cell-cell fusion of underlying progenitor cells. Genetic and functional studies have characterized the membrane protein fusogens Syncytin-1 and Syncytin-2, both of which are necessary and sufficient for human trophoblast cell-cell fusion.

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Recombinant adeno-associated viral vectors (rAAV) are a powerful tool for gene delivery but have a limited DNA carrying capacity. Efforts to expand this genetic payload have focused on engineering the vector components, such as dual trans-splicing vectors which double the delivery size by exploiting the natural concatenation of rAAV genomes in host nuclei. We hypothesized that inefficient dual vector transduction could be improved by modulating host factors which affect concatenation.

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Clinical and surveillance testing for the SARS-CoV-2 virus relies overwhelmingly on RT-qPCR-based diagnostics, yet several popular assays require 2-3 separate reactions or rely on detection of a single viral target, which adds significant time, cost, and risk of false-negative results. Furthermore, multiplexed RT-qPCR tests that detect at least two SARS-CoV-2 genes in a single reaction are typically not affordable for large scale clinical surveillance or adaptable to multiple PCR machines and plate layouts. We developed a RT-qPCR assay using the Luna Probe Universal One-Step RT-qPCR master mix with publicly available primers and probes to detect SARS-CoV-2 N gene, E gene, and human RNase P (LuNER) to address these shortcomings and meet the testing demands of a university campus and the local community.

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Article Synopsis
  • Wastewater surveillance of SARS-CoV-2 RNA can enhance COVID-19 response by correlating viral loads in wastewater with clinical case data, but challenges remain in accurately interpreting the data due to various external factors.
  • *The study analyzed SARS-CoV-2 concentrations in wastewater from multiple locations and found a strong detection rate linked to local COVID-19 case counts, particularly when rates exceeded 2.4 cases per 100,000 people.
  • *Normalization using crAssphage showed less variability and maintained a significant correlation with clinical data, but ultimately no method improved overall interpretation; the timing of wastewater sampling was crucial for aligning trends with clinical reporting.*
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Article Synopsis
  • * The newly developed kit-free method called "4S" uses simple and inexpensive materials (sodium chloride, ethanol, and silica) and can recover six times more SARS-CoV-2 RNA than traditional methods.
  • * The 4S method also successfully captures other viral controls and maintains RNA stability during storage, allowing for efficient processing of samples and contributing to more effective monitoring of COVID-19 prevalence.
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Wnt/β-catenin signaling requires inhibition of a multiprotein destruction complex that targets β-catenin for proteasomal degradation. SOX9 is a potent antagonist of the Wnt pathway and has been proposed to act through direct binding to β-catenin or the β-catenin destruction complex. Here, we demonstrate that SOX9 promotes turnover of β-catenin in mammalian cell culture, but this occurs independently of the destruction complex and the proteasome.

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Article Synopsis
  • - Wastewater-based epidemiology is used to track COVID-19 by measuring SARS-CoV-2 RNA in wastewater, but current extraction methods need improvement to be faster and more cost-effective.
  • - The new "4S" method uses simple and inexpensive ingredients (sodium chloride, ethanol, silica) to extract six times more SARS-CoV-2 RNA compared to older methods, while also detecting other viruses for control.
  • - The 4S method is quick (about 3 hours), helps prevent RNA degradation, and aligns with COVID-19 infection data from clinical tests, making it a valuable tool in monitoring the pandemic efficiently and affordably.
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Many targets of the Wnt/β-catenin signaling pathway are regulated by TCF transcription factors, which play important roles in animal development, stem cell biology, and oncogenesis. TCFs can regulate Wnt targets through a "transcriptional switch," repressing gene expression in unstimulated cells and promoting transcription upon Wnt signaling. However, it is not clear whether this switch mechanism is a general feature of Wnt gene regulation or limited to a subset of Wnt targets.

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