Whole blood transcriptome profiling identifies gene expression subnetworks and a key gene characteristic of the rare type of osteomyelitis

Chronic non-bacterial osteomyelitis (CNO) is a rare and severe inflammatory bone disorder that can occur in the jaw. It is often associated with systemic conditions including autoimmune deficiency. Medical management of patients and establishment of a correct diagnosis are difficult as the etiology...

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Veröffentlicht in:Biochemistry and biophysics reports 2022-12, Vol.32, p.101328-101328, Article 101328
Hauptverfasser: Yahara, Hiroko, Yanamoto, Souichi, Takahashi, Miho, Hamada, Yuji, Sakamoto, Haruo, Asaka, Takuya, Kitagawa, Yoshimasa, Moridera, Kuniyasu, Noguchi, Kazuma, Sugiyama, Masaya, Maruoka, Yutaka, Yahara, Koji
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Sprache:eng
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Zusammenfassung:Chronic non-bacterial osteomyelitis (CNO) is a rare and severe inflammatory bone disorder that can occur in the jaw. It is often associated with systemic conditions including autoimmune deficiency. Medical management of patients and establishment of a correct diagnosis are difficult as the etiology of the disease remains unknown. Therefore, little is known about the disease characteristics at the gene expression level. Here, we explored aspects of CNO based on whole blood RNA sequencing (>6 Gb per sample) of 11 patients and 9 healthy controls in Japan and on a recently developed method that is applicable to small datasets, can estimate a directed gene network, and extract a subnetwork of genes underlying patient characteristics. We identified nine subnetworks, comprising 26 differentially regulated edges and 36 genes, with the gene encoding glycophorin C (GYPC) presenting the highest discrimination ability. The expression of the gene was mostly lower in patients with CNO than in the healthy controls, suggesting an abnormal status of red cells in patients with CNO. This study enhances our understanding of CNO at the transcriptome level and further provides a framework for whole blood RNA sequencing and analysis of data obtained for a better diagnosis of the disease. •We explored new aspects of chronic non-bacterial osteomyelitis (CNO) via whole-blood RNA-seq and gene network analysis.•Nine subnetworks of genes were identified.•A GYPC-encoding gene had the highest discrimination ability in these subnetworks.•The expression level of the gene suggested an abnormal status of red cells in the patients.
ISSN:2405-5808
2405-5808
DOI:10.1016/j.bbrep.2022.101328