Data

Supplemental tables from: Antifibrogenic activities of CYP11A1-derived vitamin D3-hydroxyderivatives are dependent on RORγ

The University of Western Australia
Janjetovic, Zorica ; Postlethwaite, Arnold Postlethwaite ; Kang, Hong Soon ; Kim, Tae Kang ; Tuckey, Robert ; Crossman, David ; Jetten, Anton ; Alominski, Andrzej
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.5061/dryad.41ns1rnbp&rft.title=Supplemental tables from: Antifibrogenic activities of CYP11A1-derived vitamin D3-hydroxyderivatives are dependent on RORγ&rft.identifier=10.5061/dryad.41ns1rnbp&rft.publisher=DRYAD&rft.description=Previous studies showed that non-calcemic 20(OH)D3, a product of CYP11A1 action on vitamin D3, has antifibrotic activity in human dermal fibroblasts and in a bleomycin mouse model of scleroderma. In this study we tested the role of RORγ, which is expressed in skin, in the action of CYP11A1-derived secosteroids using murine fibroblasts isolated from the skin of wild type (RORg+/+), knock out (RORg-/-) and heterozygote (RORg+/-) mice. CYP11A1-derived 20(OH)D3, 20,23(OH)2D3, 1,20(OH)2D3, and 1,20,23(OH)3D3 inhibited proliferation of RORγ+/+ fibroblasts in a dose-dependent manner with a similar potency to 1,25(OH)2D3. Surprisingly, this effect was reversed in RORγ+/- and RORγ-/- fibroblasts with the most pronounced stimulatory effect seen in RORγ-/- fibroblasts. All of the analogs tested inhibited TGF-β1-induced collagen synthesis in RORγ+/+ fibroblasts and the expression of other fibrosis-related genes. This effect was curtailed or reversed in RORγ-/- fibroblasts. These results show that the antiproliferative and antifibrotic activities of the vitamin D hydroxy-derivatives are dependent on a functional RORγ. The dramatic changes in the transcriptomes of fibroblasts of RORg-/- versus wild type mice following treatment with 20(OH)D3 or 1,20(OH)2D3 provide a molecular basis to explain, at least in part, the observed phenotypic differences&rft.creator=Janjetovic, Zorica &rft.creator=Postlethwaite, Arnold Postlethwaite &rft.creator=Kang, Hong Soon &rft.creator=Kim, Tae Kang &rft.creator=Tuckey, Robert &rft.creator=Crossman, David &rft.creator=Jetten, Anton &rft.creator=Alominski, Andrzej &rft.date=2020&rft.relation=http://research-repository.uwa.edu.au/en/publications/a8746882-618f-44bf-a651-899e13cf207c&rft.type=dataset&rft.language=English Access the data

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Previous studies showed that non-calcemic 20(OH)D3, a product of CYP11A1 action on vitamin D3, has antifibrotic activity in human dermal fibroblasts and in a bleomycin mouse model of scleroderma. In this study we tested the role of RORγ, which is expressed in skin, in the action of CYP11A1-derived secosteroids using murine fibroblasts isolated from the skin of wild type (RORg+/+), knock out (RORg-/-) and heterozygote (RORg+/-) mice. CYP11A1-derived 20(OH)D3, 20,23(OH)2D3, 1,20(OH)2D3, and 1,20,23(OH)3D3 inhibited proliferation of RORγ+/+ fibroblasts in a dose-dependent manner with a similar potency to 1,25(OH)2D3. Surprisingly, this effect was reversed in RORγ+/- and RORγ-/- fibroblasts with the most pronounced stimulatory effect seen in RORγ-/- fibroblasts. All of the analogs tested inhibited TGF-β1-induced collagen synthesis in RORγ+/+ fibroblasts and the expression of other fibrosis-related genes. This effect was curtailed or reversed in RORγ-/- fibroblasts. These results show that the antiproliferative and antifibrotic activities of the vitamin D hydroxy-derivatives are dependent on a functional RORγ. The dramatic changes in the transcriptomes of fibroblasts of RORg-/- versus wild type mice following treatment with 20(OH)D3 or 1,20(OH)2D3 provide a molecular basis to explain, at least in part, the observed phenotypic differences

Notes

External Organisations
University of Alabama at Birmingham; University of Tennessee Health Science Center; National Institute on Aging
Associated Persons
Zorica Janjetovic (Creator); Arnold Postlethwaite Postlethwaite (Creator); Hong Soon Kang (Creator); Tae Kang Kim (Creator); David Crossman (Creator); Anton Jetten (Creator); Andrzej Alominski (Creator)

Issued: 2020-08-18

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Identifiers
ACN 633 798 857