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Spontaneous atopic dermatitis due to immune dysregulation in mice lacking Adamts2 and 14
1Laboratory of Connective Tissues Biology, GIGA-R, University of Liege, 4000 Sart Tilman, Belgium.
Abstract:
Since its first description, ADAMTS14 has been considered as an aminoprocollagen peptidase based on its high similarity with ADAMTS3 and ADAMTS2. As its importance for procollagen processing was never experimentally demonstrated in vivo, we generated Adamts14-deficient mice. They are healthy, fertile and display normal aminoprocollagen processing. They were further crossed with Adamts2-deficient mice to evaluate potential functional redundancies between these two highly related enzymes. Initial characterizations made on young Adamts2-Adamts14-deficient animals showed the same phenotype as that of Adamts2-deficient mice, with no further reduction of procollagen processing and no significant aggravation of the structural alterations of collagen fibrils. However, when evaluated at older age, Adamts2-Adamts14-deficient mice surprisingly displayed epidermal lesions, appearing in 2 month-old males and later in some females, and then worsening rapidly. Immunohistological evaluations of skin sections around the lesions revealed thickening of the epidermis, hypercellularity in the dermis and extensive infiltration by immune cells. Additional investigations, performed on young mice before the formation of the initial lesions, revealed that the primary cause of the phenotype was not related to alterations of the epidermal barrier but was rather the result of an abnormal activation and differentiation of T lymphocytes towards a Th1 profile. However, the primary molecular defect probably does not reside in the immune system itself since irradiated Adamts2-Adamts14-deficient mice grafted with WT immune cells still developed lesions. While originally created to better characterize the common and specific functions of ADAMTS2 and ADAMTS14 in extracellular matrix and connective tissues homeostasis, the Adamts2-Adamts14-deficient mice revealed an unexpected but significant role of ADAMTS in the regulation of immune system, possibly through a cross-talk involving mesenchymal cells and the TGFβ pathways.
Insights
Mice lacking ADAMTS14 and ADAMTS2 enzymes developed unexpected skin lesions due to abnormal T lymphocyte activation, revealing a novel role for ADAMTS in immune regulation.
Area of Science:
- Biochemistry
- Immunology
- Genetics
Background:
- ADAMTS14 was presumed to be an aminoprocollagen peptidase due to structural similarities with ADAMTS2 and ADAMTS3.
- Its in vivo function in procollagen processing remained experimentally unverified.
Purpose of the Study:
- To investigate the in vivo role of ADAMTS14 in procollagen processing.
- To explore potential functional redundancy between ADAMTS2 and ADAMTS14.
- To identify the underlying cause of unexpected phenotypes in double-deficient mice.
Main Methods:
- Generation and characterization of Adamts14-deficient mice.
- Crossbreeding Adamts14-deficient mice with Adamts2-deficient mice.
- Phenotypic analysis, immunohistology, and immunological assays in mice.
- Chimeric mouse models using irradiated recipients and wild-type immune cells.
Main Results:
- Adamts14-deficient mice exhibited normal procollagen processing and overall health.
- Double Adamts2-Adamts14-deficient mice showed no exacerbated collagen defects but developed severe epidermal lesions at older ages.
- Lesions were linked to abnormal T lymphocyte activation and differentiation (Th1 profile), not epidermal barrier defects.
- Immune cell transplantation experiments indicated the defect is intrinsic to non-immune cells.
Conclusions:
- ADAMTS14 is not essential for aminoprocollagen processing in vivo.
- ADAMTS2 and ADAMTS14 play a role in regulating the immune system, particularly T lymphocyte differentiation.
- This regulation may involve mesenchymal cells and TGFβ pathways, suggesting a cross-talk between extracellular matrix and immunity.
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