Aberrant paracrine signalling for bone remodelling underlies the mutant histone-driven giant cell tumour of bone

被引:9
作者
Cottone, Lucia [1 ]
Ligammari, Lorena [1 ]
Lee, Hang-Mao [2 ]
Knowles, Helen J. [3 ]
Henderson, Stephen [4 ]
Bianco, Sara [1 ,5 ]
Davies, Christopher [1 ,6 ]
Strauss, Sandra [7 ]
Amary, Fernanda [6 ]
Leite, Ana Paula [1 ,5 ]
Tirabosco, Roberto [6 ]
Haendler, Kristian [2 ,8 ,9 ,10 ]
Schultze, Joachim L. [2 ,8 ,9 ,11 ]
Herrero, Javier [4 ]
O'Donnell, Paul [12 ]
Grigoriadis, Agamemnon E. [13 ]
Salomoni, Paolo [2 ,5 ]
Flanagan, Adrienne M. [1 ,6 ]
机构
[1] UCL, UCL Canc Inst, Dept Pathol, London WC1E 6BT, England
[2] German Ctr Neurodegenerat Dis DZNE, D-53127 Bonn, Germany
[3] Univ Oxford, Botnar Inst Musculoskeletal Sci, Nuffield Dept Orthopaed Rheumatol & Musculoskelet, Oxford OX3 7LD, England
[4] UCL, UCL Canc Inst, Bill Lyons Informat Ctr BLIC, London WC1 6BT, England
[5] UCL, UCL Canc Inst, Dept Canc Biol, Samantha Dickson Brain Canc Unit, London WC1E 6BT, England
[6] Royal Natl Orthopaed Hosp, Dept Histopathol, Stanmore HA7 4LP, Middx, England
[7] Univ Coll London Hosp Fdn Trust, London Sarcoma Serv, London WC1E 6DD, England
[8] DZNE, Platform Single Cell Genom & Epigen PRECISE, D-53127 Bonn, Germany
[9] Univ Bonn, D-53127 Bonn, Germany
[10] Univ Lubeck, Inst Human Genet, Lubeck, Germany
[11] Univ Bonn, Genom & Immunoregulat Life & Med Sci LIMES Inst, D-53115 Bonn, Germany
[12] Royal Natl Orthopaed Hosp, Dept Radiol, Stanmore HA7 4LP, Middx, England
[13] Kings Coll London, Guys Hosp, Ctr Craniofacial & Regenerat Biol, London SE1 9RT, England
基金
英国医学研究理事会; 奥地利科学基金会;
关键词
PRC2; ACTIVITY; MUTATIONS; H3.3; DIFFERENTIATION; EXPRESSION; SCUBE3; PROGENITORS; PDGFRA; LIGAND; GROWTH;
D O I
10.1038/s41418-022-01031-x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Oncohistones represent compelling evidence for a causative role of epigenetic perturbations in cancer. Giant cell tumours of bone (GCTs) are characterised by a mutated histone H3.3 as the sole genetic driver present in bone-forming osteoprogenitor cells but absent from abnormally large bone-resorbing osteoclasts which represent the hallmark of these neoplasms. While these striking features imply a pathogenic interaction between mesenchymal and myelomonocytic lineages during GCT development, the underlying mechanisms remain unknown. We show that the changes in the transcriptome and epigenome in the mesenchymal cells caused by the H3.3-G34W mutation contribute to increase osteoclast recruitment in part via reduced expression of the TGF beta-like soluble factor, SCUBE3. Transcriptional changes in SCUBE3 are associated with altered histone marks and H3.3(G34W) enrichment at its enhancer regions. In turn, osteoclasts secrete unregulated amounts of SEMA4D which enhances proliferation of mutated osteoprogenitors arresting their maturation. These findings provide a mechanism by which GCTs undergo differentiation in response to denosumab, a drug that depletes the tumour of osteoclasts. In contrast, hTERT alterations, commonly found in malignant GCT, result in the histone-mutated neoplastic cells being independent of osteoclasts for their proliferation, predicting unresponsiveness to denosumab. We provide a mechanism for the initiation of GCT, the basis of which is dysfunctional cross-talk between bone-forming and bone-resorbing cells. The findings highlight the role of tumour/microenvironment bidirectional interactions in tumorigenesis and how this is exploited in the treatment of GCT.
引用
收藏
页码:2459 / 2471
页数:13
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