Gorham-Stout case report: a multi-omic analysis reveals recurrent fusions as new potential drivers of the disease

Author:

Yébenes Mayordomo Marcos,Al Shboul Sofian,Gómez-Herranz Maria,Azfer Asim,Meynert Alison,Salter Donald,Hayward Larry,Oniscu Anca,Patton James T.,Hupp Ted,Arends Mark J.,Alfaro Javier AntonioORCID

Abstract

Abstract Background Gorham-Stout disease is a rare condition characterized by vascular proliferation and the massive destruction of bone tissue. With less than 400 cases in the literature of Gorham-Stout syndrome, we performed a unique study combining whole-genome sequencing and RNA-Seq to probe the genomic features and differentially expressed pathways of a presented case, revealing new possible drivers and biomarkers of the disease. Case presentation We present a case report of a white 45-year-old female patient with marked bone loss of the left humerus associated with vascular proliferation, diagnosed with Gorham-Stout disease. The analysis of whole-genome sequencing showed a dominance of large structural DNA rearrangements. Particularly, rearrangements in chromosomes seven, twelve, and twenty could contribute to the development of the disease, especially a gene fusion involving ATG101 that could affect macroautophagy. The study of RNA-sequencing data from the patient uncovered the PI3K/AKT/mTOR pathway as the most affected signaling cascade in the Gorham-Stout lesional tissue. Furthermore, M2 macrophage infiltration was detected using immunohistochemical staining and confirmed by deconvolution of the RNA-seq expression data. Conclusions The way that DNA and RNA aberrations lead to Gorham-Stout disease is poorly understood due to the limited number of studies focusing on this rare disease. Our study provides the first glimpse into this facet of the disease, exposing new possible therapeutic targets and facilitating the clinicopathological diagnosis of Gorham-Stout disease.

Funder

Fundacja na rzecz Nauki Polskiej

Publisher

Springer Science and Business Media LLC

Subject

Genetics (clinical),Genetics

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. EML4::ALK fusions in complex lymphatic malformations;Pediatric Blood & Cancer;2023-06-28

2. The molecular mechanism of Gorham syndrome: an update;Frontiers in Immunology;2023-05-05

3. Update August 2022;Lymphatic Research and Biology;2022-08-01

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