Gene panel sequencing improves the diagnostic work-up of patients with idiopathic erythrocytosis and identifies new mutations

Publication date

2016-11

Authors

Camps, Carme
Petousi, Nayia
Bento, Celeste
Cario, Holger
Copley, Richard R
McMullin, Mary Frances
van Wijk, RichardISNI 0000000396677704
Ratcliffe, Peter J
Robbins, Peter A
Taylor, Jenny C

Editors

Advisors

Supervisors

Document Type

Article

Collections

Open Access logo

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unspecified

Abstract

Erythrocytosis is a rare disorder characterized by increased red cell mass and elevated hemoglobin concentration and hematocrit. Several genetic variants have been identified as causes for erythrocytosis in genes belonging to different pathways including oxygen sensing, erythropoiesis and oxygen transport. However, despite clinical investigation and screening for these mutations, the cause of disease cannot be found in a considerable number of patients, who are classified as having idiopathic erythrocytosis. In this study, we developed a targeted next-generation sequencing panel encompassing the exonic regions of 21 genes from relevant pathways (~79 Kb) and sequenced 125 patients with idiopathic erythrocytosis. The panel effectively screened 97% of coding regions of these genes, with an average coverage of 450×. It identified 51 different rare variants, all leading to alterations of protein sequence, with 57 out of 125 cases (45.6%) having at least one of these variants. Ten of these were known erythrocytosis-causing variants, which had been missed following existing diagnostic algorithms. Twenty-two were novel variants in erythrocytosis-associated genes (EGLN1, EPAS1, VHL, BPGM, JAK2, SH2B3) and in novel genes included in the panel (e.g. EPO, EGLN2, HIF3A, OS9), some with a high likelihood of functionality, for which future segregation, functional and replication studies will be useful to provide further evidence for causality. The rest were classified as polymorphisms. Overall, these results demonstrate the benefits of using a gene panel rather than existing methods in which focused genetic screening is performed depending on biochemical measurements: the gene panel improves diagnostic accuracy and provides the opportunity for discovery of novel variants.

Keywords

Genetic Variation, Humans, Molecular Diagnostic Techniques/methods, Mutation, Polycythemia/diagnosis, Sequence Analysis, DNA, Journal Article, Research Support, Non-U.S. Gov't

Citation

Camps, C, Petousi, N, Bento, C, Cario, H, Copley, R R, McMullin, M F, van Wijk, R, Ratcliffe, P J, Robbins, P A, Taylor, J C & WGS500 Consortium 2016, 'Gene panel sequencing improves the diagnostic work-up of patients with idiopathic erythrocytosis and identifies new mutations', Haematologica, vol. 101, no. 11, pp. 1306-1318. https://doi.org/10.3324/haematol.2016.144063