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CYB5R3 in type II alveolar epithelial cells protects against lung fibrosis by suppressing TGF-β1 signaling
Marta Bueno, Jazmin Calyeca, Timur Khaliullin, Megan P. Miller, Diana Alvarez, Lorena Rosas, Judith Brands, Christian Baker, Amro Nasser, Stephanie Shulkowski, August Mathien, Nneoma Uzoukwu, John Sembrat, Brenton G. Mays, Kaitlin Fiedler, Scott A. Hahn, Sonia R. Salvatore, Francisco J. Schopfer, Mauricio Rojas, Peter Sandner, Adam C. Straub, Ana L. Mora
Marta Bueno, Jazmin Calyeca, Timur Khaliullin, Megan P. Miller, Diana Alvarez, Lorena Rosas, Judith Brands, Christian Baker, Amro Nasser, Stephanie Shulkowski, August Mathien, Nneoma Uzoukwu, John Sembrat, Brenton G. Mays, Kaitlin Fiedler, Scott A. Hahn, Sonia R. Salvatore, Francisco J. Schopfer, Mauricio Rojas, Peter Sandner, Adam C. Straub, Ana L. Mora
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Research Article Pulmonology

CYB5R3 in type II alveolar epithelial cells protects against lung fibrosis by suppressing TGF-β1 signaling

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Abstract

Type II alveolar epithelial cell (AECII) redox imbalance contributes to the pathogenesis of idiopathic pulmonary fibrosis (IPF), a deadly disease with limited treatment options. Here, we show that expression of membrane-bound cytochrome B5 reductase 3 (CYB5R3), an enzyme critical for maintaining cellular redox homeostasis and soluble guanylate cyclase (sGC) heme iron redox state, is diminished in IPF AECIIs. Deficiency of CYB5R3 in AECIIs led to sustained activation of the pro-fibrotic factor TGF-β1 and increased susceptibility to lung fibrosis. We further show that CYB5R3 is a critical regulator of ERK1/2 phosphorylation and the sGC/cGMP/protein kinase G axis that modulates activation of the TGF-β1 signaling pathway. We demonstrate that sGC agonists (BAY 41-8543 and BAY 54-6544) are effective in reducing the pulmonary fibrotic outcomes of in vivo deficiency of CYB5R3 in AECIIs. Taken together, these results show that CYB5R3 in AECIIs is required to maintain resilience after lung injury and fibrosis and that therapeutic manipulation of the sGC redox state could provide a basis for treating fibrotic conditions in the lung and beyond.

Authors

Marta Bueno, Jazmin Calyeca, Timur Khaliullin, Megan P. Miller, Diana Alvarez, Lorena Rosas, Judith Brands, Christian Baker, Amro Nasser, Stephanie Shulkowski, August Mathien, Nneoma Uzoukwu, John Sembrat, Brenton G. Mays, Kaitlin Fiedler, Scott A. Hahn, Sonia R. Salvatore, Francisco J. Schopfer, Mauricio Rojas, Peter Sandner, Adam C. Straub, Ana L. Mora

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Figure 1

Decreased levels of NAD+ in fibrotic lung with reduced expression of CYB5R3 in AECIIs.

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Decreased levels of NAD+ in fibrotic lung with reduced expression of CYB...
(A) Levels of normalized NAD+ and NAD+/NADH ratio are reduced in IPF lungs compared with age-matched donors. (Min to max with median, n = 5/group.) (B) Compilation of mean CYB5R3 expression in AECII and fibroblast clusters from 3 single-cell RNA-Seq studies comparing donor and IPF lungs. (Violin plots with median and quartiles, n = 45 donor/56 IPF.) See Supplemental Figure 1 and ref. 61 for details on data compilation. (C) Representative immunofluorescence using anti–HTII-280 (AECII marker, green) and anti-CYB5R3 (red) antibodies, showing reduction in CYB5R3 expression in hyperplastic AECIIs from honeycombs in IPF lung compared with age-matched donors (n = 3/group). Scale bars: 50 μm. Representative cells (asterisks) are shown in detail in the insets at ×6.5 original magnification. (D) Quantification of CYB5R3 staining (as relative pixel intensity) of individual AECIIs (HTII-280+) per condition. (Violin plots with median and quartiles; n = 3/group.) See Supplemental Table 1 for demographics of panels A, C, and D. Statistical analysis was performed using 1-way ANOVA with multiple-comparison test (A) and unpaired, 2-tailed Student’s t test (B and D); *P < 0.05, ****P < 0.0001.

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