Heterogeneous Nuclear Ribonucleoprotein F Mediates Insulin Inhibition of Bcl2-Modifying Factor Expression and Tubulopathy in Diabetic Kidney.
Anindya GhoshShuiling ZhaoChao-Sheng LoHasna MaachiIsabelle ChenierMuhammad Abdul LateefShaaban AbdoJanos G FilepJulie R IngelfingerShao-Ling ZhangJohn S D ChanPublished in: Scientific reports (2019)
We investigated the molecular mechanism(s) by which insulin prevents Bcl2-modifying factor (Bmf)-induced renal proximal tubular cell (RPTC) apoptosis and loss in diabetic mice. Transgenic mice (Tg) mice specifically overexpressing human BMF in RPTCs and non-Tg littermates were studied at 10 to 20 weeks of age. Non-diabetic littermates, diabetic Akita mice +/- insulin implant, Akita Tg mice specifically overexpressing heterogeneous nuclear ribonucleoprotein F (hnRNP F) in their RPTCs and immortalized rat renal proximal tubular cells (IRPTCs) were also studied. BMF-Tg mice exhibited higher systolic blood pressure, urinary albumin/creatinine ratio, RPTC apoptosis and urinary RPTCs than non-Tg mice. Insulin treatment in Akita mice and Akita mice overexpressing hnRNP F suppressed Bmf expression and RPTC apoptosis. In hyperinsulinemic-euglycemic wild type mice, renal Bmf expression was down-regulated with up-regulation of hnRNP F. In vitro, insulin inhibited high glucose-stimulation of Bmf expression, predominantly via p44/42 mitogen-activated protein kinase (MAPK) signaling. Transfection of p44/42 MAPK or hnRNP F small interfering RNA (siRNA) prevented insulin inhibition of Bmf expression. HnRNP F inhibited Bmf transcription via hnRNP F-responsive element in the Bmf promoter. Our results demonstrate that hnRNP F suppression of Bmf transcription is an important mechanism by which insulin protects RPTCs from apoptosis in diabetes.
Keyphrases
- type diabetes
- wild type
- high fat diet induced
- poor prognosis
- high glucose
- oxidative stress
- blood pressure
- glycemic control
- endothelial cells
- cell cycle arrest
- endoplasmic reticulum stress
- cell death
- heart failure
- cardiovascular disease
- induced apoptosis
- insulin resistance
- transcription factor
- stem cells
- signaling pathway
- mesenchymal stem cells
- adipose tissue
- gene expression
- long non coding rna
- high resolution
- metabolic syndrome
- bone marrow
- uric acid
- skeletal muscle
- gestational age