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Role of the mitochondrial protein cyclophilin D in skin wound healing and collagen secretion
Ritu Bansal, Monica Torres, Matthew Hunt, Nuoqi Wang, Margarita Chatzopoulou, Mansi Manchanda, Evan P. Taddeo, Cynthia Shu, Orian S. Shirihai, Etty Bachar-Wikstrom, Jakob D. Wikstrom
Ritu Bansal, Monica Torres, Matthew Hunt, Nuoqi Wang, Margarita Chatzopoulou, Mansi Manchanda, Evan P. Taddeo, Cynthia Shu, Orian S. Shirihai, Etty Bachar-Wikstrom, Jakob D. Wikstrom
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Research Article Dermatology

Role of the mitochondrial protein cyclophilin D in skin wound healing and collagen secretion

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Abstract

Central for wound healing is the formation of granulation tissue, which largely consists of collagen and whose importance stretches past wound healing, including being implicated in both fibrosis and skin aging. Cyclophilin D (CyD) is a mitochondrial protein that regulates the permeability transition pore, known for its role in apoptosis and ischemia-reperfusion. To date, the role of CyD in human wound healing and collagen generation has been largely unexplored. Here, we show that CyD was upregulated in normal wounds and venous ulcers, likely adaptive as CyD inhibition impaired reepithelialization, granulation tissue formation, and wound closure in both human and pig models. Overexpression of CyD increased keratinocyte migration and fibroblast proliferation, while its inhibition reduced migration. Independent of wound healing, CyD inhibition in fibroblasts reduced collagen secretion and caused endoplasmic reticulum collagen accumulation, while its overexpression increased collagen secretion. This was confirmed in a Ppif-KO mouse model, which showed a reduction in skin collagen. Overall, this study revealed previously unreported roles of CyD in skin, with implications for wound healing and beyond.

Authors

Ritu Bansal, Monica Torres, Matthew Hunt, Nuoqi Wang, Margarita Chatzopoulou, Mansi Manchanda, Evan P. Taddeo, Cynthia Shu, Orian S. Shirihai, Etty Bachar-Wikstrom, Jakob D. Wikstrom

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Figure 5

Cyclophilin D promotes keratinocyte migration and affects expression of extracellular matrix genes.

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Cyclophilin D promotes keratinocyte migration and affects expression of ...
(A and B) qPCR (mean ± SEM) and immunoblot verification of gapmer-mediated CyD KD compared with negative gapmer in keratinocytes. (C and D) Scratch cell migration assay in keratinocytes with gapmer-mediated PPIF KD in the presence of mitomycin C. n = 3; 2-tailed, unpaired t test. (E and F) qPCR (mean ± SEM) and immunoblot verification of vector-mediated PPIF OE compared with pCMV in keratinocytes. Two-tailed, unpaired t test. (G–H) Scratch cell migration assay in keratinocytes with PPIF OE in the presence of mitomycin C. One-way ANOVA. (I) Heatmap illustration of microarray analysis for differentially expressed genes after PPIF KD (fold change < 1.2 or > 1.2, with P < 0.05). Data were hierarchically clustered. Blue, lower; red, higher. n = 3 biological replicates. (J) GSEA heatmap and enrichment score showing a change in extracellular matrix–maintaining genes. (K and L) Molecular pathways identified by Enrichr software to understand the most important mechanism affecting the keratinocyte migration. (M–R) Immunoblot and quantification (mean ± SEM) of phosphorylated SMAD2 in vehicle and NIM811-treated (M and N), negative and PPIF gapmer (O and P), and pCMV and PPIF OE keratinocytes (Q and R). Two-tailed, unpaired t test. (S) Scratch cell migration assay in keratinocytes with NIM811 and SB-431542 treatment in the presence of mitomycin C. ****P < 0.0001; **P < 0.01; *P < 0.05.

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