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Polymerized Z-α-1 antitrypsin leads to lung injury in a murine model of emphysema
Maria Magallón Serrano, Nazli Khodayari, William Bowers, Edward P. Manning, Xinran Liu, Jungnam Lee, Tammy O. Flagg, Regina Oshins, Aidan Griffin, Sahil Patel, Jorge E. Lascano, Divay Chandra, Susan M. Majka, Irina Petrache, Mark L. Brantly, Karina A. Serban
Maria Magallón Serrano, Nazli Khodayari, William Bowers, Edward P. Manning, Xinran Liu, Jungnam Lee, Tammy O. Flagg, Regina Oshins, Aidan Griffin, Sahil Patel, Jorge E. Lascano, Divay Chandra, Susan M. Majka, Irina Petrache, Mark L. Brantly, Karina A. Serban
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Research Article Cell biology Genetics Pulmonology

Polymerized Z-α-1 antitrypsin leads to lung injury in a murine model of emphysema

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Abstract

In α-1 antitrypsin (AAT) deficiency (AATD), emphysema is classically linked to protease-antiprotease imbalance caused by decreased antiprotease AAT due levels and function. This decrease is secondary to the impaired release of Z-AAT polymers from hepatocytes carrying Pi*Z, E342K mutation in SERPENA1 gene. Whether the accumulation of Z-AAT polymers in distal lungs contributes directly to emphysema pathogenesis has remained unexplored due to the lack of suitable model systems. We characterized lung injury and airspace enlargement in a Z-AAT–overexpressing murine model. We generated Z-AAT Serpina1Null mice overexpressing human (E342K) SERPENA1 in Serpina1Null mice and analyzed pulmonary phenotypes in young and aged animals, complemented by translational studies using primary cells, bronchoalveolar lavage fluid (BALf), and lung tissue from individuals who have never smoked and individuals with AATD. Young Z-AAT Serpina1Null mice accumulated Z-AAT polymers in hepatocytes, plasma, and BALf, exhibited spontaneous neutrophilic lung inflammation, increased alveolo-capillary permeability, and premature airspace enlargement, which was worse in older Z-AAT Serpina1Null mice. Moreover, Z-AAT polymers accumulated in alveolar type-2 epithelial (AT2) cells and lung macrophages, associated with endoplasmic reticulum (ER) stress, mitochondria dysfunction, and incomplete autophago-lysosomal fusion, which we recapitulated in lung samples from individuals with AATD. These findings support the pathogenic role of Z-AAT polymer accumulation in distal lung epithelium as a driver of epithelial, endothelial, and macrophage dysfunction linked to AATD emphysema.

Authors

Maria Magallón Serrano, Nazli Khodayari, William Bowers, Edward P. Manning, Xinran Liu, Jungnam Lee, Tammy O. Flagg, Regina Oshins, Aidan Griffin, Sahil Patel, Jorge E. Lascano, Divay Chandra, Susan M. Majka, Irina Petrache, Mark L. Brantly, Karina A. Serban

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Figure 4

Z-AAT polymers accumulation in lung compartments of Z-AAT Serpina1Null mice.

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Z-AAT polymers accumulation in lung compartments of Z-AAT Serpina1Null m...
(A and B) Human Z-AAT polymers detected by ELISA using 2C1 antibody against Z-AAT polymers in BAL fluid of 4-, 7- and greater than 12-month-old Z-AAT Serpina1Null versus Serpina1Null and WT mice (A) and of healthy, never smokers (empty circles), Pi*Z AATD (black circles), and exsmoker Pi*Z AATD (larger black circles) individuals (B); Z-AAT polymer levels were normalized to epithelial lining fluid (ELF) volume imputed from BALf/plasma urea ratio and BAL volume. (C) Representative immunoblot of Z-AAT polymers (75–250 kDa, 2C1 antibody) of primary murine AT2 (EpCam+MHCII+) cell lysates isolated from Z-AAT Serpina1Null, Serpina1Null and WT mice that were greater than 12-month-old; polymerized AAT (heated M-AAT) served as positive control. (D–F) Primary murine AT2-derived organoids. Representative whole-well brightfield images (top) of Day 21 organoids derived from primary murine AT2 (EpCam+MHCII+) cells of greater than 12-month-old Z-AAT Serpina1Null, Serpina1Null, WT/Z-AAT, and WT mice cocultured with primary murine fibroblast in Matrigel (D and E). Organoid quantification (n = 4 wells from n = 3 mice / genotype) by CFE (F). Representative whole-mount immunofluorescent images of D21 organoids stained with anti-SPC (green), anti-RAGE (red, D and E, bottom), or polymerized Z-AAT (2C1, red, G and H) derived from AT2 of greater than 12-month-old Z-AAT Serpina1Null, Serpina1Null, WT/Z-AAT, and WT mice; scale bar: 100 μm (D and E, bottom; G and H) and 20 μm (D, top). (I) Representative immunofluorescence images of Cytospin slides from the BAL fluid of greater than 12-month-old Z-AAT Serpina1Null versus Serpina1Null and WT mice stained with 2C1 (red) and DAPI (blue), scale bar:100μm. Data are presented as mean ± SD, 1-way ANOVA, followed by Tukey’s multiple comparisons, or Mann-Whitney test. *P < 0.05 versus age-matched WT mice or healthy (H) individuals, ^ indicates versus age-matched Serpina1Null and Z-AAT Serpina1Null mice.

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