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MRC2-mediated collagen internalization is reduced in fibrotic lung fibroblasts and increased upon phenotypic dedifferentiation
Natalie M. Walker, Sean M. Fortier, Jennifer Speth, Steven K. Huang, Sergey Gutor, Timothy S. Blackwell, Marc Peters-Golden
Natalie M. Walker, Sean M. Fortier, Jennifer Speth, Steven K. Huang, Sergey Gutor, Timothy S. Blackwell, Marc Peters-Golden
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Research Article Cell biology Pulmonology

MRC2-mediated collagen internalization is reduced in fibrotic lung fibroblasts and increased upon phenotypic dedifferentiation

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Abstract

Idiopathic pulmonary fibrosis (IPF) is characterized by parenchymal scarring reflecting an imbalance between collagen deposition by myofibroblasts (MFs) and its turnover. Although collagen clearance is essential for fibrosis resolution, this process and its potential for therapeutic modulation in IPF are poorly understood. Here we evaluated internalization of degraded collagen and the role of its requisite endocytic receptor mannose receptor C-type 2 (MRC2), in lung tissue and MFs from patients with IPF and bleomycin-injured mice. Fibrotic human and murine lung tissue exhibited an accumulation of degraded collagen, highlighting a failure of its clearance. MFs from fibrotic lung demonstrated a reduced capacity to internalize extracellular degraded collagen, with a concomitant reduction in MRC2 expression and endolysosomal activity. Both diminished collagen uptake and MRC2 expression recovered to baseline levels during spontaneous resolution of bleomycin fibrosis. In vitro treatment of IPF or TGF-β–elicited MFs with a variety of mechanistically distinct agents known to effect phenotypic dedifferentiation restored defective collagen internalization. Although enhanced uptake was MRC2 dependent, it involved increased endolysosomal activity rather than increased MRC2 expression. These results implicate defective MRC2-dependent collagen internalization and endolysosomal function in MFs as important factors contributing to fibrosis that may be therapeutically targeted to promote resolution.

Authors

Natalie M. Walker, Sean M. Fortier, Jennifer Speth, Steven K. Huang, Sergey Gutor, Timothy S. Blackwell, Marc Peters-Golden

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Figure 5

IPF MFs exhibit reduced endosomal vesicles and lysosomal activity.

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IPF MFs exhibit reduced endosomal vesicles and lysosomal activity.
(A) R...
(A) Representative confocal images (left) and CellProfiler quantification (right) of total EEA1+ vesicles in normal fibroblasts and IPF MFs incubated with fluorescent gelatin. Scale bars: 10 μm. EEA1+ puncta colocalization with gelatin (B) and MRC2+ (C) puncta on confocal images of normal fibroblasts and IPF MFs utilizing CellProfiler. EEA1+ puncta mean area (D) and (E) mean diameter measurements from CellProfiler analysis of confocal images of normal and IPF cells. (F) Lysosomal pH measured with LysoSensor Yellow/Blue DND-160 in normal fibroblasts and IPF MFs. (G) pH-independent lysosomal activity was measured at baseline in normal fibroblasts and IPF MFs after 1-hour treatment with substrate. Each data point in A–G is derived from an independent patient cell line. Significance of results in A–G was determined by 2-tailed t test. *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001.

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