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Biology subjects

Rana, D. R.

Publications and source records attributed to Rana, D. R..

2 recordsLinked to original sources

Rational Selection of PCR Primer/Probe Design Sites for SARS-CoV-2

Various reports of decreased analytical sensitivities of real-time PCR-based detection of Coronavirus Disease 2019 (COVID-19) have been associated with occurrence of mutations in the target area of primer/probe binding. Knowledge about propensities of different genes to undergo mutation can inform researchers to select optimal genes to target for the qPCR design. We analyzed supplementary data from over 45 thousand SARS-CoV-2 genomes provided by Mercatelli et al to calculate the unique and prevalent mutations in different genes of SARS-CoV-2. We found that non-structural proteins in the ORF1ab region were more conserved compared to structural genes. Further factors which need to be relied upon for proper selection of genes for qPCR design are discussed.

molecular biology↗

Role of Differential Expression of miRNAs miR-125a, miR-200a and miR-199a in Metastatic Property of Ovarian Cancer Cell lines and Relationship between miR-199a and its Predicted Target Protein GSK3β

Ovarian cancer is a gynecological cancer of high mortality rate. Most of the ovarian cancer origin from the surface epithelium of the ovaries. Ovarian cancers gain metastatic and invasive properties from various biochemical events taking place during tumorogenesis. MicroRNAs (miRNA) are non-coding RNAs and they have an important function of inhibiting translation of specific mRNAs in the cytoplasm. Present study uses two ovarian cancer cell lines as model to study the differential expression of miR-125a, miR-200a, and miR-199a, and provides indirect proof for possible relationship between miR-199a and its predicted target gene Glycogen Synthase Kinase 3 {beta} (GSK3{beta}). As expected the expression of these three microRNAs are decreased in metastatic ovarian cancer cell line A2780 compared to epithelial ovarian cancer OVCAR3. Reciprocal expression pattern of miR-199a and its predicted target GSK3{beta} was found in two different cell lines providing information on possible inhibitory role of miR-199a against GSK3{beta}.

molecular biology↗