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DNA methylation from bacteria & mircobiome using nanopore technology discovered

 E-Mail IMAGE: Gang Fang, PhD, Associate Professor, Genetics and Genomic Sciences, Icahn School of Medicine at Mount Sinai view more  Credit: Mount Sinai Health System Journal Name: Nature Methods Title of the Article: Discovering multiple types of DNA methylation from individual bacteria and microbiome using nanopore sequencing Corresponding Author: Gang Fang, PhD Bottom Line: Bacterial DNA methylation occurs at diverse sequence contexts and plays important functional roles in cellular defense and gene regulation. An increasing number of studies have reported that bacterial DNA methylation has important roles affecting clinically relevant phenotypes such as virulence, host colonization, sporulation, biofilm formation, among others.

Mount Sinai researchers find novel therapeutic target for specific cancer treatment

 E-Mail IMAGE: Zhenyu Yue, PhD, Professor of Neurology and Neuroscience, Director of Basic and Translational Research of Movement Disorders, Icahn School of Medicine at Mount Sinai and senior author of the paper. view more  Credit: Mount Sinai Health System Mount Sinai Researchers Find Removal of AKAP11 Protein by Autophagy as a key to Fuel Mitochondrial Metabolism and Tumor Cell Growth through activating protein kinase A (PKA) (Patent pending) Corresponding Author: Zhenyu Yue, PhD, Professor of Neurology, Aidekman Family Professorship, Director of Basic and Translational Research in Movement Disorders, Friedman Brain Institute, Icahn School of Medicine at Mount Sinai. Bottom Line: We uncovered a mechanism that tumor cells exploit selective autophagy for metabolic reprogramming that benefits tumor cell growth and offers resistance to glucose deprivation. Our study suggests that AKAP220-mediated autophagy as a novel therapeutic target for specific cancer treatment

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