Somatic activating mutations in MAP2K1 cause melorheostosis
NATURE COMMUNICATIONS
Authors: Kang, Heeseog; Jha, Smita; Deng, Zuoming; Fratzl-Zelman, Nadja; Cabral, Wayne A.; Ivovic, Aleksandra; Meylan, Francoise; Hanson, Eric P.; Lange, Eileen; Katz, James; Roschger, Paul; Klaushofer, Klaus; Cowen, Edward W.; Siegel, Richard M.; Marini, Joan C.; Bhattacharyya, Timothy
Abstract
Melorheostosis is a sporadic disease of uncertain etiology characterized by asymmetric bone overgrowth and functional impairment. Using whole exome sequencing, we identify somatic mosaic MAP2K1 mutations in affected, but not unaffected, bone of eight unrelated patients with melorheostosis. The activating mutations (Q56P, K57E and K57N) cluster tightly in the MEK1 negative regulatory domain. Affected bone displays a mosaic pattern of increased p-ERK1/2 in osteoblast immunohistochemistry. Osteoblasts cultured from affected bone comprise two populations with distinct p-ERK1/2 levels by flow cytometry, enhanced ERK1/2 activation, and increased cell proliferation. However, these MAP2K1 mutations inhibit BMP2-mediated osteoblast mineralization and differentiation in vitro, underlying the markedly increased osteoid detected in affected bone histology. Mosaicism is also detected in the skin overlying bone lesions in four of five patients tested. Our data show that the MAP2K1 oncogene is important in human bone formation and implicate MEK1 inhibition as a potential treatment avenue for melorheostosis.
Diverse Cutaneous Presentations of Langerhans Cell Histiocytosis in Children: A Retrospective Cohort Study
PEDIATRIC BLOOD & CANCER
Authors: Morren, Marie-Anne; Vanden Broecke, Katrien; Vangeebergen, Leen; Sillevis-Smitt, Johannes Henk; Van Den Berghe, Peter; Hauben, Esther; Jacobs, Sandra; Van Gool, Stefaan W.
Abstract
BackgroundLangerhans cell histiocytosis (LCH) is a rare disease, frequently affecting young children. ProcedureWe performed a retrospective study in patients younger than 16 years old manifesting with skin symptoms, and documented their different cutaneous lesions and systemic symptoms. We compared subgroups of children with single-system, skin-only, and multisystem disease and sought signs predictive for multisystem disease. In a small sample of patients, BRAF mutations were analyzed in archived biopsies. ResultsA wide spectrum of cutaneous presentations varying from crusted nodules and papules, blisters, vascular tumor-like lesions, scaling orange to red macules (frequently in seborrheic regions) to purpuric macules, and papules was documented in our cohort of 32 children. Otitis externa was a common manifestation and mucosal lesions were seen in three patients. A novel manifestation was a red-blue nodule that appeared in a patient after a vaccination. None of the cutaneous lesions was predictive for the classification or final outcome as a single-system or multisystem disease. However, later onset and a more protracted course of skin lesions were more frequent findings in multisystem LCH. Mucosal lesions and otitis externa were almost exclusively seen in patients with multisystem disease, a finding that warrants further investigation. Both wild-type (WT) and mutated BRAF were found not only in multisystem LCH, but also in skin-only LCH. Two cases with rapidly resolving congenital lesions had WT BRAF. ConclusionsLate onset and a protracted course of skin lesions are associated with MS-LCH, whereas WT BRAF is found in rapidly resolving skin lesions.