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Choy, C. S.

Publications and source records attributed to Choy, C. S..

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Genomic alterations in persistently infecting oncolytic Newcastle disease virus reveal mechanisms of viral persistence in bladder cancer cells

AbstractsNewcastle disease virus (NDV) is a promising oncolytic agent with a non-segmented, negative-sense single-stranded RNA (ssRNA) genome of approximately 15 kb. While NDV selectively replicates in and lyses a wide range of human cancer cells, a subset of these cells develop persistent infections, potentially compromising the therapeutic efficacy of NDV-based treatments. To investigate the molecular basis of persistent infection, we performed transcriptome profiling of TCCSUP bladder cancer cells persistently infected with the NDV AF2240 strain. Deep sequencing using Illumina HiSeq 2000 was conducted in triplicate, and the resulting viral and host reads were separated and analyzed. Using Integrative Genomic Viewer (IGV) software, we identified several nucleotide variants linked to persistence. Specifically, nucleotide alterations included a deletion at 359A[->]C and a substitution at 1653C[->]T within the nucleoprotein (NP) gene, as well as an insertion at 3338C[->]T in the matrix protein (M) gene. Additionally, a GGG base insertion was detected at position 2290 in the phosphoprotein (P) gene. Crucially, we observed truncations in the hemagglutinin-neuraminidase (HN) gene (nt 8263-8390) and the large polymerase (L) gene (nt 6203-6342). These mutations and truncations suggest significant disruptions in viral replication, assembly, and host cell attachment, potentially facilitating viral persistence in bladder cancer cells. Understanding these genomic alterations provides valuable insights into the mechanisms driving viral persistence and could inform strategies to optimize the oncolytic efficacy of NDV in cancer therapy.

genomics↗

Evaluation of EN2 Gene as a Potential Biomarker for Bladder Cancer

BackgroundAmong the most prevalent cancers in the urinary tract is bladder cancer, a caner with a high rate of recurrence and metastasis as compared to other malignancies. To date, there have been many genes reported as potential bladder cancer biomarkers among which is the EN2 gene, a member of the homeobox family containing transcriptional factors. Several studies suggested the overexpression of EN2 to be involved with the development of a number of tumors such as bladder cancer. However, the process of involvement of EN2 in the bladder tumorigenesis remains elusive. MethodsRT-qPCR was carried out to determine the gene expression of 17 cell lines. The short-term silencing of EN2 expression was then implemented in high-expressing cell lines using siRNAs. Using the scratch assay, the outcome of modulating the in vitro EN2 expression on the bladder cancer migration was determined. Correlation between the IC50 values with the EN2 expression was analyzed by correlating the viability of cells following the Newcastle Disease Virus infection with the fold change. Immunohistochemistry was then performed to determine the expression of the EN2 protein in the bladder cancer tissues. ResultsIn the current study, EN2 was differentially expressed in bladder cancer in vitro and upon modulating the expression of EN2, we found a reduction in the migratory effect of bladder cancer in vitro. In addition, following 24 hours post infection, a moderate correlation between EN2 gene expression and NDV-mediated oncolysis was observed. No expression of EN2 in bladder cancer tissues suggesting the need for further studies to investigate the expression of EN2 protein in bladder cancer. ConclusionEN2 may be a potential prognostic or diagnostic bladder cancer biomarker, however, further investigations are required to evaluate the EN2 gene as a potential bladder cancer biomarker.

cancer biology↗