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These findings should facilitate studies into molecular alterations, including profound biochemical changes, changes in global chromatin architecture, and changes in the expression of multiple specific genes that are induced by MYC that result in PIN and subsequent invasive adenocarcinoma.
Our results support the hypothesis that multiple specific genes contribute to the development of cisplatin resistance in squamous cell carcinoma.
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To further understand the molecular basis of formation of these 'intraganglionic hair cells', we analyzed expression of multiple hair cell specific genes.
Our results show that natural yeast strains harbor multiple specific alleles of genes controlling essential functions, that are apparently compatible with survival in the natural environment.
Taking together the two analysis approaches, we identified 301 multiple sclerosis-specific genes.
Furthermore, TaqMan® real-time PCR was performed to validate selected multiple sclerosis-specific genes (Supplementary Table 4).
Comparative analysis of Xcaw12879 and XccA306 identified multiple strain-specific genes that might contribute to the differences in virulence and host range.
Subsequently, the Krüppel zinc finger protein NRSF/REST was found to bind NRSE/RE1 sites and repress non-neuronal expression of multiple neural-specific genes [ 3, 4].
Functions of the multiple sclerosis-specific genes were determined based on several sources: PhosphoSitePlus® (http://www.phosphosite.org), NCBI (http://www.ncbi.nlm.nih.gov/), Panther classification system (http://www.pantherdb.org), and KEGG Kyoto Encyclopaedia of Genes and Genomes (http://www.genome.jp/kegg).jp/kegg
We find that Sall3 is both necessary and sufficient to activate the expression of multiple cone-specific genes, and that Sall3 protein is selectively bound to the promoter regions of these genes.
More than 80% of the identified multiple sclerosis-specific genes were related to T cell-mediated inflammation, microglia activation, oxidative injury, DNA damage and repair, remyelination and regenerative processes.
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