Multimodal single cell sequencing implicates chromatin accessibility and genetic background in diabetic kidney disease progression

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作者
Parker C. Wilson
Yoshiharu Muto
Haojia Wu
Anil Karihaloo
Sushrut S. Waikar
Benjamin D. Humphreys
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[1] Washington University in St. Louis,Division of Anatomic and Molecular Pathology, Department of Pathology and Immunology
[2] Washington University in St. Louis,Division of Nephrology, Department of Medicine
[3] Novo Nordisk Research Center Seattle Inc,Section of Nephrology, Department of Medicine
[4] Boston University School of Medicine,Department of Developmental Biology
[5] Boston Medical Center,undefined
[6] Washington University in St. Louis,undefined
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The proximal tubule is a key regulator of kidney function and glucose metabolism. Diabetic kidney disease leads to proximal tubule injury and changes in chromatin accessibility that modify the activity of transcription factors involved in glucose metabolism and inflammation. Here we use single nucleus RNA and ATAC sequencing to show that diabetic kidney disease leads to reduced accessibility of glucocorticoid receptor binding sites and an injury-associated expression signature in the proximal tubule. We hypothesize that chromatin accessibility is regulated by genetic background and closely-intertwined with metabolic memory, which pre-programs the proximal tubule to respond differently to external stimuli. Glucocorticoid excess has long been known to increase risk for type 2 diabetes, which raises the possibility that glucocorticoid receptor inhibition may mitigate the adverse metabolic effects of diabetic kidney disease.
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