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Collagen VII maintains proteostasis in dermal fibroblasts by scaffolding TANGO1 cargo
Qingqing Cao1, Grace Tartaglia1, Michael Alexander1
1Department of Dermatology and Cutaneous Biology, Thomas Jefferson University, Philadelphia, PA.
Abstract:
Lack of type VII collagen (C7) disrupts cellular proteostasis yet the mechanism remains undescribed. By studying the relationship between C7 and the extracellular matrix (ECM)-associated proteins thrombospondin-1 (TSP1), type XII collagen (C12) and tissue transglutaminase (TGM2) in primary human dermal fibroblasts from multiple donors with or without the genetic disease recessive dystrophic epidermolysis bullosa (RDEB) (n=31), we demonstrate that secretion of each of these proteins is increased in the presence of C7. In dermal fibroblasts isolated from patients with RDEB, where C7 is absent or defective, association with the COPII outer coat protein SEC31 and ultimately secretion of each of these ECM-associated proteins is reduced and intracellular levels are increased. In RDEB fibroblasts, overall collagen secretion (as determined by the levels of hydroxyproline in the media) is unchanged while traffic from the ER to Golgi of TSP1, C12 and TGM2 occurs in a type I collagen (C1) dependent manner. In normal fibroblasts association of TSP1, C12 and TGM2 with the ER exit site transmembrane protein Transport ANd Golgi Organization-1 (TANGO1) as determined by proximity ligation assays, requires C7. In the absence of wild-type C7, or when ECM-associated proteins are overexpressed, C1 proximity and intracellular levels increase resulting in elevated cellular stress responses and elevated TGFβ signaling. Collectively, these data demonstrate a role for C7 in loading COPII vesicle cargo and provides a mechanism for disrupted proteostasis, elevated cellular stress and increased TGFβ signaling in patients with RDEB. Furthermore, our data point to a threshold of cargo loading that can be exceeded with increased protein levels leading to pathological outcomes in otherwise normal cells.
Insights
Type VII collagen (C7) is crucial for secreting extracellular matrix proteins, and its absence in recessive dystrophic epidermolysis bullosa (RDEB) disrupts cellular proteostasis and increases stress.
Area of Science:
- Cell Biology
- Biochemistry
- Dermatology
Background:
- Type VII collagen (C7) deficiency disrupts cellular proteostasis, but the underlying mechanisms are unclear.
- Extracellular matrix (ECM) proteins like thrombospondin-1 (TSP1), type XII collagen (C12), and tissue transglutaminase (TGM2) are implicated in cellular health.
Purpose of the Study:
- To investigate the role of C7 in the secretion of TSP1, C12, and TGM2.
- To elucidate the mechanism by which C7 absence leads to disrupted proteostasis in recessive dystrophic epidermolysis bullosa (RDEB).
Main Methods:
- Studied primary human dermal fibroblasts from RDEB patients and healthy donors (n=31).
- Assessed protein secretion, intracellular levels, and interactions with COPII coat protein SEC31 and ER exit site protein TANGO1.
- Measured hydroxyproline levels for overall collagen secretion and TGFβ signaling pathway activation.
Main Results:
- C7 presence increased secretion of TSP1, C12, and TGM2.
- In RDEB fibroblasts (lacking C7), secretion of these proteins was reduced, with increased intracellular levels.
- C7 is required for the association of TSP1, C12, and TGM2 with TANGO1, impacting COPII vesicle loading.
- Absence of C7 or overexpression of ECM proteins led to increased cellular stress and TGFβ signaling.
Conclusions:
- C7 plays a critical role in loading ECM-associated proteins into COPII vesicles for secretion.
- This mechanism explains disrupted proteostasis, cellular stress, and elevated TGFβ signaling in RDEB.
- Exceeding cargo loading thresholds can cause pathological outcomes even in normal cells.
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