Functional validation of EIF2AK4 (GCN2) missense variants associated with pulmonary arterial hypertension

Author:

Emanuelli Giulia1,Zhu JiaYi1,Li Wei23ORCID,Morrell Nicholas W234,Marciniak Stefan J134ORCID

Affiliation:

1. Cambridge Institute for Medical Research (CIMR), University of Cambridge , Keith Peters Building, Biomedical Campus, Hills Rd, Cambridge CB2 0XY , United Kingdom

2. Victor Phillip Dahdaleh Heart and Lung Research Institute, University of Cambridge , Papworth Road, Trumpington, Cambridge CB2 0BB , United Kingdom

3. Department of Medicine, University of Cambridge , Addenbrooke's Hospital (Box 157), Hills Road, Cambridge CB2 2QQ , United Kingdom

4. Royal Papworth Hospital NHS Foundation Trust , Papworth Rd, Trumpington, Cambridge CB2 0AY , United Kingdom

Abstract

Abstract Pulmonary arterial hypertension (PAH) is a disorder with a large genetic component. Biallelic mutations of EIF2AK4, which encodes the kinase GCN2, are causal in two ultra-rare subtypes of PAH, pulmonary veno-occlusive disease and pulmonary capillary haemangiomatosis. EIF2AK4 variants of unknown significance have also been identified in patients with classical PAH, though their relationship to disease remains unclear. To provide patients with diagnostic information and enable family testing, the functional consequences of such rare variants must be determined, but existing computational methods are imperfect. We applied a suite of bioinformatic and experimental approaches to sixteen EIF2AK4 variants that had been identified in patients. By experimentally testing the functional integrity of the integrated stress response (ISR) downstream of GCN2, we determined that existing computational tools have insufficient sensitivity to reliably predict impaired kinase function. We determined experimentally that several EIF2AK4 variants identified in patients with classical PAH had preserved function and are therefore likely to be non-pathogenic. The dysfunctional variants of GCN2 that we identified could be subclassified into three groups: misfolded, kinase-dead, and hypomorphic. Intriguingly, members of the hypomorphic group were amenable to paradoxical activation by a type-1½ GCN2 kinase inhibitor. This experiment approach may aid in the clinical stratification of EIF2AK4 variants and potentially identify hypomorophic alleles receptive to pharmacological activation.

Funder

Medical Research Centre

Engineering and Physical Sciences Research Council

Cambridge Biomedical Research Centre

British Lung Foundation

Asthma and Lung UK

Royal Papworth Hospital

Victor Philip Dahdaleh Foundation

British Heart Foundation

Evelyn Trust

British Heart Foundation Senior Basic Science Research Fellowship

Publisher

Oxford University Press (OUP)

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