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Histone HIST1H1C/H1.2 regulates autophagy in the development of diabetic retinopathy
Wenjun Wang1, Qing Wang1, Danyang Wan1
1a Hubei Key Laboratory of Cell Homeostasis , College of Life Sciences, Wuhan University , Wuhan , Hubei , China.
Abstract:
Autophagy plays critical and complex roles in many human diseases, including diabetes and its complications. However, the role of autophagy in the development of diabetic retinopathy remains uncertain. Core histone modifications have been reported involved in the development of diabetic retinopathy, but little is known about the histone variants. Here, we observed increased autophagy and histone HIST1H1C/H1.2, an important variant of the linker histone H1, in the retinas of type 1 diabetic rodents. Overexpression of histone HIST1H1C upregulates SIRT1 and HDAC1 to maintain the deacetylation status of H4K16, leads to upregulation of ATG proteins, then promotes autophagy in cultured retinal cell line. Histone HIST1H1C overexpression also promotes inflammation and cell toxicity in vitro. Knockdown of histone HIST1H1C reduces both the basal and stresses (including high glucose)-induced autophagy, and inhibits high glucose induced inflammation and cell toxicity. Importantly, AAV-mediated histone HIST1H1C overexpression in the retinas leads to increased autophagy, inflammation, glial activation and neuron loss, similar to the pathological changes identified in the early stage of diabetic retinopathy. Furthermore, knockdown of histone Hist1h1c by siRNA in the retinas of diabetic mice significantly attenuated the diabetes-induced autophagy, inflammation, glial activation and neuron loss. These results indicate that histone HIST1H1C may offer a novel therapeutic target for preventing diabetic retinopathy.
Insights
Histone HIST1H1C promotes autophagy and inflammation in diabetic retinopathy. Reducing HIST1H1C levels in diabetic mice eyes lessens disease pathology, suggesting it as a potential therapeutic target.
Area of Science:
- Ophthalmology
- Molecular Biology
- Genetics
Background:
- Autophagy's role in diabetic retinopathy (DR) is unclear.
- Histone modifications are implicated in DR, but histone variants are understudied.
Purpose of the Study:
- Investigate the role of histone HIST1H1C in diabetic retinopathy.
- Determine if HIST1H1C is a potential therapeutic target for DR.
Main Methods:
- Observed autophagy and HIST1H1C levels in type 1 diabetic rodent retinas.
- Utilized cell culture models to study HIST1H1C's effects on autophagy, inflammation, and cell toxicity.
- Employed AAV-mediated gene delivery and siRNA in vivo to manipulate HIST1H1C levels in diabetic mice retinas.
Main Results:
- Increased autophagy and HIST1H1C observed in diabetic rodent retinas.
- HIST1H1C overexpression promoted autophagy, inflammation, and cell toxicity in vitro.
- HIST1H1C knockdown reduced autophagy and attenuated diabetes-induced pathology in vivo.
- AAV-mediated HIST1H1C overexpression mimicked DR-like changes in retinas.
Conclusions:
- Histone HIST1H1C promotes autophagy and inflammation, contributing to diabetic retinopathy.
- Targeting HIST1H1C may offer a novel therapeutic strategy for preventing diabetic retinopathy.