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AT1R blockade in adverse milieus: role of SMRT and corepressor complexes
Tejinder Singh1, Kamesh Ayasolla1, Partab Rai1
1Department of Medicine, Hofstra North Shore-LIJ Medical School and Feinstein Institute for Medical Research, Hempstead, New York;
Abstract:
ANG II type 1 receptor blockade (AT1R-BLK) is used extensively to slow down the progression of proteinuric kidney diseases. We hypothesized that AT1R-BLK provides podocyte protection through regulation of silencing mediator of retinoic acid and thyroid hormone receptor (SMRT) and vitamin D receptor (VDR) expression under adverse milieus such as high glucose and human immunodeficiency virus infection. Both AT1R-BLK and VDR agonists (VDAs) stimulated VDR complex formation that differed not only in their composition but also in their functionality. AT1R-BLK-induced VDR complexes contained predominantly unliganded VDR, SMRT, and phosphorylated histone deacetylase 3, whereas VDA-VDR complexes were constituted by liganded VDR and CREB-binding protein/p300. AT1R-BLK-induced complexes attenuated podocyte acetyl-histone 3 levels as well as cytochrome P-450 family 24A1 expression, thus indicating their deacetylating and repressive properties. On the other hand, VDA-VDR complexes not only increased podocyte acetyl-histone 3 levels but also enhanced cytochrome P-450 family 24A1 expression, thus suggesting their acetylating and gene activation properties. AT1R-BLK- induced podocyte SMRT inhibited expression of the proapoptotic gene BAX through downregulation of Wip1 and phosphorylation of checkpoint kinase 2 in high-glucose milieu. Since SMRT-depleted podocytes lacked AT1R-BLK-mediated protection against DNA damage, it appears that SMRT is necessary for DNA repairs during AT1R-BLK. We conclude that AT1R-BLK provides podocyte protection in adverse milieus predominantly through SMRT expression and partly through unliganded VDR expression in 1,25(OH)2D-deficient states; on the other hand, AT1R-BLK contributes to liganded VDR expression in 1,25(OH)2D-sufficient states.
Insights
ANG II type 1 receptor blockade (AT1R-BLK) protects kidney podocytes by regulating SMRT and VDR expression. This mechanism involves distinct VDR complexes, crucial for DNA repair and mitigating damage in proteinuric kidney diseases.
Area of Science:
- Nephrology
- Molecular Biology
- Endocrinology
Background:
- Proteinuric kidney diseases progress despite treatments.
- ANG II type 1 receptor blockade (AT1R-BLK) is a key therapy.
- Podocyte injury contributes to kidney disease progression.
Purpose of the Study:
- To investigate AT1R-BLK's podocyte protective mechanisms.
- To explore the roles of SMRT and VDR in AT1R-BLK's effects.
- To differentiate VDR complex formation under AT1R-BLK versus VDR agonists.
Main Methods:
- Comparative analysis of VDR complex composition and function.
- Assessment of histone acetylation and gene expression (CYP24A1).
- Investigation of SMRT's role in podocyte protection and DNA repair.
Main Results:
- AT1R-BLK and VDR agonists induce distinct VDR complexes with different functionalities.
- AT1R-BLK complexes exhibit deacetylating and repressive properties, attenuating podocyte damage.
- SMRT is essential for AT1R-BLK-mediated podocyte protection against DNA damage.
Conclusions:
- AT1R-BLK protects podocytes via SMRT and unliganded VDR in low vitamin D states.
- AT1R-BLK influences liganded VDR expression in sufficient vitamin D conditions.
- SMRT is critical for DNA repair and podocyte protection during AT1R-BLK therapy.
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