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Full-Text Articles in Life Sciences

Nucleic Acid Clamp-Mediated Transcriptional And Translational Modulation Of Oncogenes Via The Stabilization Of G-Quadruplexes, Taisen Hao Jan 2017

Nucleic Acid Clamp-Mediated Transcriptional And Translational Modulation Of Oncogenes Via The Stabilization Of G-Quadruplexes, Taisen Hao

Electronic Theses and Dissertations

G-quadruplexes (G4s) are non-canonical secondary nucleic acid structures that exit in various biologically important regions within a cell, such as the promoters of DNA, 5’-Untranslated regions (UTR) of mRNA and telomeres. These secondary structures tend to cluster around 1 kb from transcriptional start sites across all human chromosomes in addition to at telomeric regions. Extensive efforts from many research groups have been dedicated to targeting G4s in oncogenic promoters, telomeres, and 5’-UTRs with traditional small molecules. However, most small molecules recognizing multiple G4s raising potential issues in terms of utilizing these small molecules clinically. Therefore, we developed a novel nucleic …


Biochemical And Molecular Assessment Of Toxicity Of Primaquine Metabolites On Erythrocytes, Jagrati Jain Jan 2017

Biochemical And Molecular Assessment Of Toxicity Of Primaquine Metabolites On Erythrocytes, Jagrati Jain

Electronic Theses and Dissertations

The 8-aminoquinoline (8AQ) antimalarial drug primaquine (PQ) is the only drug for prevention of malaria relapse. Moreover, PQ also has gametocytocidal activity against Plasmodium falciparum. However, clinical use of PQ has been limited due to its hemolytic toxicity, especially in glucose-6-phosphate dehydrogenase deficient (G6PDd) individuals. Phenolic and quinone metabolites generated via cytochrome P450-dependent pathways appear to be responsible for hemolytic effects of PQ. However, the mechanism for the hemolytic toxicity of PQ is still poorly understood. To explore the mechanism, targets, and pathways for toxicity of PQ, normal and G6PDd human erythrocytes were treated with the potential hemotoxic metabolites of …


Regulation Of The Kras Promoter In Pancreatic Cancer By Proteins And Small Molecules, Harshul Batra Jan 2017

Regulation Of The Kras Promoter In Pancreatic Cancer By Proteins And Small Molecules, Harshul Batra

Electronic Theses and Dissertations

DNA-binding proteins play a pivotal role in cell biology. The major class of DNA-binding proteins are transcription factors (TFs). TFs are central to almost every fundamental cellular process such as cell development, differentiation, cell growth, and gene expression. They account for 10% of the genes in eukaryotes. In mammals, more than 700 TFs are identified to be DNA-binding TFs. They bind to the TF binding sites (TFBSs) in the genome and regulate the expression of their target genes. kRAS is a proto-oncogene with intrinsic GTPase activity, that contributes to cell proliferation, division, and apoptosis. kRAS mutations are observed in >95% …