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Endogenous CCN family member WISP1 inhibits trauma-induced heterotopic ossification
Ginny Ching-Yun Hsu, Simone Marini, Stefano Negri, Yiyun Wang, Jiajia Xu, Chase Pagani, Charles Hwang, David Stepien, Carolyn A. Meyers, Sarah Miller, Edward McCarthy, Karen M. Lyons, Benjamin Levi, Aaron W. James
Ginny Ching-Yun Hsu, Simone Marini, Stefano Negri, Yiyun Wang, Jiajia Xu, Chase Pagani, Charles Hwang, David Stepien, Carolyn A. Meyers, Sarah Miller, Edward McCarthy, Karen M. Lyons, Benjamin Levi, Aaron W. James
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Research Article Bone biology Stem cells

Endogenous CCN family member WISP1 inhibits trauma-induced heterotopic ossification

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Abstract

Heterotopic ossification (HO) is defined as abnormal differentiation of local stromal cells of mesenchymal origin, resulting in pathologic cartilage and bone matrix deposition. Cyr61, CTGF, Nov (CCN) family members are matricellular proteins that have diverse regulatory functions on cell proliferation and differentiation, including the regulation of chondrogenesis. However, little is known regarding CCN family member expression or function in HO. Here, a combination of bulk and single-cell RNA sequencing defined the dynamic temporospatial pattern of CCN family member induction within a mouse model of trauma-induced HO. Among CCN family proteins, Wisp1 (also known as Ccn4) was most upregulated during the evolution of HO, and Wisp1 expression corresponded with chondrogenic gene profile. Immunohistochemistry confirmed WISP1 expression across traumatic and genetic HO mouse models as well as in human HO samples. Transgenic Wisp1LacZ/LacZ knockin animals showed an increase in endochondral ossification in HO after trauma. Finally, the transcriptome of Wisp1-null tenocytes revealed enrichment in signaling pathways, such as the STAT3 and PCP signaling pathways, that may explain increased HO in the context of Wisp1 deficiency. In sum, CCN family members, and in particular Wisp1, are spatiotemporally associated with and negatively regulate trauma-induced HO formation.

Authors

Ginny Ching-Yun Hsu, Simone Marini, Stefano Negri, Yiyun Wang, Jiajia Xu, Chase Pagani, Charles Hwang, David Stepien, Carolyn A. Meyers, Sarah Miller, Edward McCarthy, Karen M. Lyons, Benjamin Levi, Aaron W. James

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Figure 2

Single-cell RNA sequencing identifies Wisp1 enrichment in Sox9-expressing mesenchymal cells during posttraumatic heterotopic ossification.

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Single-cell RNA sequencing identifies Wisp1 enrichment in Sox9-expressin...
Single-cell RNA sequencing of the heterotopic ossification (HO) induction site was examined at 0, 3, 7, and 21 days after injury. (A) t-SNE plots of pooled cells from all 4 time points after HO induction, identifying 9 cell clusters. Characteristic markers used to define each cluster are listed in Supplemental Table 1. (B and C) Wisp1 expression within 9 cell clusters pooled across all time points, shown by (B) t-SNE plots or (C) violin plots. (D and E) Wisp1 expression across time points of HO induction (days 0, 3, 7, and 21), shown by (D) t-SNE plots or (E) violin plots within the mesenchymal cell cluster only. (F and G) SRY-box transcription factor 9 expression within all 9 cells clusters pooled across all time points, shown by (F) t-SNE plots or (G) violin plots. (H and I) Sox9 expression across time points of HO induction (days 0, 3, 7, and 21), shown by (H) t-SNE plots or (I) violin plots within the mesenchymal cell cluster only. Data represent injury sites from n = 3–4 animals per time point.

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