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Experimental Analysis of Apoptotic Thymocyte Engulfment by Macrophages
Published on: May 24, 2019
BIGH3 protein and macrophages in retinal endothelial cell apoptosis
Albert A Mondragon1, Brandi S Betts-Obregon, Robert J Moritz
1Department of Biology, The University of Texas at San Antonio, One UTSA Circle BSB 1.03.36, San Antonio, TX, 78249, USA.
Abstract:
Diabetes is a pandemic disease with a higher occurrence in minority populations. The molecular mechanism to initiate diabetes-associated retinal angiogenesis remains largely unknown. We propose an inflammatory pathway of diabetic retinopathy in which macrophages in the diabetic eye provide TGFβ to retinal endothelial cells (REC) in the retinal microvasculature. In response to TGFβ, REC synthesize and secrete a pro-apoptotic BIGH3 (TGFβ-Induced Gene Human Clone 3) protein, which acts in an autocrine loop to induce REC apoptosis. Rhesus monkey retinal endothelial cells (RhREC) were treated with dMCM (cell media of macrophages treated with high glucose and LDL) and assayed for apoptosis (TUNEL), BIGH3 mRNA (qPCR), and protein (Western blots) expressions. Cells were also treated with ΤGFβ1 and 2 for BIGH3 mRNA and protein expression. Inhibition assays were carried out using antibodies for TGFβ1 and for BIGH3 to block apoptosis and mRNA expression. BIGH3 in cultured RhREC cells were identified by immunohistochemistry (IHC). Distribution of BIGH3 and macrophages in the diabetic mouse retina was examined with IHC. RhRECs treated with dMCM or TGFβ showed a significant increase in apoptosis and BIGH3 protein expression. Recombinant BIGH3 added to RhREC culture medium led to a dose-dependent increase in apoptosis. Antibodies (Ab) directed against BIGH3 and TGFβ, as well as TGFβ receptor blocker resulted in a significant reduction in apoptosis induced by either dMCM, TGFβ or BIGH3. IHC showed that cultured RhREC constitutively expressed BIGH3. Macrophage and BIGH3 protein were co-localized to the inner retina of the diabetic mouse eye. Our results support a novel inflammatory pathway for diabetic retinopathy. This pathway is initiated by TGFβ released from macrophages, which promotes synthesis and release of BIGH3 protein by REC and REC apoptosis.
Insights
Diabetic retinopathy involves inflammation where macrophages release TGFβ, prompting retinal cells to produce BIGH3, leading to cell death. Blocking this pathway reduces apoptosis, revealing a novel mechanism.
Area of Science:
- Ophthalmology
- Endocrinology
- Immunology
Background:
- Diabetic retinopathy is a leading cause of blindness, particularly in minority populations.
- The molecular mechanisms driving diabetic retinopathy, especially retinal angiogenesis, are not fully understood.
- Inflammation is implicated in the pathogenesis of diabetic retinopathy.
Purpose of the Study:
- To elucidate the molecular pathway initiating diabetic retinopathy.
- To investigate the role of macrophages, TGFβ, and BIGH3 in retinal endothelial cell (REC) apoptosis.
- To explore a novel inflammatory pathway in diabetic retinopathy.
Main Methods:
- Utilized Rhesus monkey retinal endothelial cells (RhRECs) treated with macrophage-conditioned media (dMCM) or TGFβ.
- Assessed apoptosis using TUNEL assays, BIGH3 mRNA via qPCR, and protein levels via Western blots.
- Employed immunohistochemistry (IHC) to identify BIGH3 and macrophages in cultured cells and diabetic mouse retinas.
- Conducted inhibition assays using antibodies against TGFβ and BIGH3, and a TGFβ receptor blocker.
Main Results:
- dMCM and TGFβ significantly increased RhREC apoptosis and BIGH3 expression.
- Recombinant BIGH3 induced a dose-dependent increase in RhREC apoptosis.
- Inhibition of TGFβ, BIGH3, or TGFβ receptor signaling significantly reduced apoptosis.
- Macrophage-derived TGFβ and BIGH3 were co-localized in the inner retina of diabetic mouse models.
Conclusions:
- A novel inflammatory pathway for diabetic retinopathy is proposed, initiated by macrophage-derived TGFβ.
- TGFβ stimulates retinal endothelial cells to synthesize and release BIGH3, inducing autocrine apoptosis.
- Targeting the TGFβ-BIGH3 axis presents a potential therapeutic strategy for diabetic retinopathy.
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