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Decreased Expression of Cilia Genes in Pancreatic Islets as a Risk Factor for Type 2 Diabetes in Mice and Humans.

Cell Rep. 2019-03; 
KluthOliver,StadionMandy,GottmannPascal,AgaHeja,JähnertMarkus,ScherneckStephan,VogelHeike,KrusUlrika,SeeligAnett,LingCharlotte,GerdesJantje,SchürmannAnn
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Plasmid DNA Preparation For the rescue experiment, KIF3A expression was silenced using the Kif3a-shRNA-specific adenovirus and subsequently rescued with a plasmid encoding an optimized KIF3A sequence (GenScript, Piscataway, USA, see also Figure 6F). Get A Quote

摘要

An insufficient adaptive beta-cell compensation is a hallmark of type 2 diabetes (T2D). Primary cilia function as versatile sensory antennae regulating various cellular processes, but their role on compensatory beta-cell replication has not been examined. Here, we identify a significant enrichment of downregulated, cilia-annotated genes in pancreatic islets of diabetes-prone NZO mice as compared with diabetes-resistant B6-ob/ob mice. Among 327 differentially expressed mouse cilia genes, 81 human orthologs are also affected in islets of diabetic donors. Islets of nondiabetic mice and humans show a substantial overlap of upregulated cilia genes that are linked to cell-cycle progression. The shRNA-mediated... More

关键词

New Zealand Obese mouse,beta-cell proliferation,cilia genes,human pancreatic islets,islet transcriptomics,pathway enrichment analysis,primary cilia,type 2 diab