McMullan Patrick, Maye Peter, Root Sierra H, Yang Qingfen, Edie Sarah, Rowe David, Kalajzic Ivo, Germain-Lee Emily L
Department of Pediatrics, University of Connecticut School of Medicine, Farmington, CT.
Department of Reconstructive Sciences, Center for Regenerative Medicine and Skeletal Development, University of Connecticut School of Dental Medicine, Farmington, CT.
bioRxiv. 2024 Jun 21:2024.06.18.599506. doi: 10.1101/2024.06.18.599506.
Heterotopic ossifications (HOs) are the pathologic process by which bone inappropriately forms outside of the skeletal system. Despite HOs being a persistent clinical problem in the general population, there are no definitive strategies for their prevention and treatment due to a limited understanding of the cellular and molecular mechanisms contributing to lesion development. One disease in which the development of heterotopic subcutaneous ossifications (SCOs) leads to morbidity is Albright hereditary osteodystrophy (AHO). AHO is caused by heterozygous inactivation of , the gene that encodes the α-stimulatory subunit (Gα) of G proteins. Previously, we had shown using our laboratory's AHO mouse model that SCOs develop around hair follicles (HFs). Here we show that SCO formation occurs due to inappropriate expansion and differentiation of HF-resident stem cells into osteoblasts. We also show in AHO patients and mice that ( expression is upregulated in regions of SCO formation and that elimination of in male AHO mice exacerbates SCO development. These studies provide key insights into the cellular and molecular mechanisms contributing to SCO development and have implications for potential therapeutic modalities not only for AHO patients but also for patients suffering from HOs with other etiologies.
异位骨化(HOs)是指骨骼系统外不适当部位形成骨组织的病理过程。尽管HOs在普通人群中一直是个临床问题,但由于对导致病变发展的细胞和分子机制了解有限,目前尚无明确的预防和治疗策略。异位皮下骨化(SCOs)的发展会导致发病的一种疾病是奥尔布赖特遗传性骨营养不良(AHO)。AHO是由编码G蛋白α刺激亚基(Gα)的基因杂合失活引起的。此前,我们利用实验室的AHO小鼠模型表明,SCOs在毛囊(HFs)周围形成。在此我们表明,SCO的形成是由于HF驻留干细胞不适当的扩增并分化为成骨细胞所致。我们还在AHO患者和小鼠中发现,在SCO形成区域的表达上调,并且在雄性AHO小鼠中消除会加剧SCO的发展。这些研究为SCO发展的细胞和分子机制提供了关键见解,不仅对AHO患者,而且对患有其他病因HOs的患者的潜在治疗方式都有启示。