4.5 Article

Gpr126/Adgrg6 deletion in cartilage models idiopathic scoliosis and pectus excavatum in mice

期刊

HUMAN MOLECULAR GENETICS
卷 24, 期 15, 页码 4365-4373

出版社

OXFORD UNIV PRESS
DOI: 10.1093/hmg/ddv170

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资金

  1. National Institutes of Health [F32 AR060674, R01 AR060456, R01 DK065789, NIH NS079445, F32AR063001]
  2. Washington University Musculoskeletal Research Center (NIH) [P30 AR057235]
  3. Scoliosis Research Society
  4. NATIONAL INSTITUTE OF ARTHRITIS AND MUSCULOSKELETAL AND SKIN DISEASES [F32AR060674, R01AR060456, P30AR057235, F32AR063001] Funding Source: NIH RePORTER
  5. NATIONAL INSTITUTE OF DIABETES AND DIGESTIVE AND KIDNEY DISEASES [R01DK065789] Funding Source: NIH RePORTER
  6. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [R01GM077770] Funding Source: NIH RePORTER
  7. NATIONAL INSTITUTE OF NEUROLOGICAL DISORDERS AND STROKE [R01NS079445] Funding Source: NIH RePORTER

向作者/读者索取更多资源

Adolescent idiopathic scoliosis (AIS) and pectus excavatum (PE) are common pediatric musculoskeletal disorders. Little is known about the tissue of origin for either condition, or about their genetic bases. Common variants near GPR126/ADGRG6 (encoding the adhesion G protein-coupled receptor 126/adhesion G protein-coupled receptor G6, hereafter referred to as GPR126) were recently shown to be associated with AIS in humans. Here, we provide genetic evidence that loss of Gpr126 in osteochondroprogenitor cells alters cartilage biology and spinal column development. Microtomographic and x-ray studies revealed several hallmarks of AIS, including postnatal onset of scoliosis without malformations of vertebral units. The mutants also displayed a dorsal-ward deflection of the sternum akin to human PE. At the cellular level, these defects were accompanied by failure of midline fusion within the developing annulus fibrosis of the intervertebral discs and increased apoptosis of chondrocytes in the ribs and vertebrae. Molecularly, we found that loss of Gpr126 upregulated the expression of Gal3st4, a gene implicated in human PE, encoding Galactose-3-O-sulfotransferase 4. Together, these data uncover Gpr126 as a genetic cause for the pathogenesis of AIS and PE in a mouse model.

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