Homozygous GRN mutations: new phenotypes and new insights into pathological and molecular mechanisms

Author:

Huin Vincent1ORCID,Barbier Mathieu1ORCID,Bottani Armand2ORCID,Lobrinus Johannes Alexander3,Clot Fabienne4,Lamari Foudil5ORCID,Chat Laureen4,Rucheton Benoît5ORCID,Fluchère Frédérique6,Auvin Stéphane7ORCID,Myers Peter8,Gelot Antoinette9ORCID,Camuzat Agnès1,Caillaud Catherine10ORCID,Jornéa Ludmila1,Forlani Sylvie1,Saracino Dario1ORCID,Duyckaerts Charles11ORCID,Brice Alexis112ORCID,Durr Alexandra112ORCID,Le Ber Isabelle113ORCID

Affiliation:

1. Sorbonne Université, Institut du Cerveau et de la Moelle épinière (ICM), AP-HP, INSERM, CNRS, University Hospital Pitié-Salpêtrière, Paris, France

2. Department of Genetic Medicine, University Hospital of Geneva, Geneva, Switzerland

3. Neuropathology Unit, University Hospital of Geneva, Geneva, Switzerland

4. Department of Molecular and Cellular Neurogenetics, AP-HP, Pitié-Salpêtrière – Charles Foix University Hospitals, Paris, France

5. AP-HP, Metabolic Biochemistry Unit, Department of Biochemistry of Neurometabolic Diseases, Pitié-Salpêtrière University Hospital, Paris, France

6. AP-HM, Department of Neurology and Movement Disorders, La Timone, Clinical Neuroscience Unit, Aix-Marseille University, France

7. AP-HP Department of Pediatric Neurology, Robert Debré University Hospital, F, Paris, France

8. Medical Office, Geneva, Switzerland

9. Neuropathology, Department of Pathology, Trusseau Hospital, AP-HP, Paris, France and INMED INSERM U901 Luminy Campus, Aix-Marseille University, France

10. Biochemical, Metabolomical and Proteonomical Department, Necker-Enfants Malades University Hospital, AP-HP, F-75015 Paris, France

11. Department of Neuropathology ‘Escourolle’, AP-HP, Pitié-Salpêtrière University Hospital, Paris, France

12. AP-HP, National Reference Center for Rare Diseases ‘Neurogenetics’, Pitié-Salpêtrière University Hospital, Paris, France

13. AP-HP, National Reference center ‘rare and young dementias’, IM2A, Pitié-Salpêtrière University Hospital, Paris, France

Abstract

Abstract Homozygous mutations in the progranulin gene (GRN) are associated with neuronal ceroid lipofuscinosis 11 (CLN11), a rare lysosomal-storage disorder characterized by cerebellar ataxia, seizures, retinitis pigmentosa, and cognitive disorders, usually beginning between 13 and 25 years of age. This is a rare condition, previously reported in only four families. In contrast, heterozygous GRN mutations are a major cause of frontotemporal dementia associated with neuronal cytoplasmic TDP-43 inclusions. We identified homozygous GRN mutations in six new patients. The phenotypic spectrum is much broader than previously reported, with two remarkably distinct presentations, depending on the age of onset. A childhood/juvenile form is characterized by classical CLN11 symptoms at an early age at onset. Unexpectedly, other homozygous patients presented a distinct delayed phenotype of frontotemporal dementia and parkinsonism after 50 years; none had epilepsy or cerebellar ataxia. Another major finding of this study is that all GRN mutations may not have the same impact on progranulin protein synthesis. A hypomorphic effect of some mutations is supported by the presence of residual levels of plasma progranulin and low levels of normal transcript detected in one case with a homozygous splice-site mutation and late onset frontotemporal dementia. This is a new critical finding that must be considered in therapeutic trials based on replacement strategies. The first neuropathological study in a homozygous carrier provides new insights into the pathological mechanisms of the disease. Hallmarks of neuronal ceroid lipofuscinosis were present. The absence of TDP-43 cytoplasmic inclusions markedly differs from observations of heterozygous mutations, suggesting a pathological shift between lysosomal and TDP-43 pathologies depending on the mono or bi-allelic status. An intriguing observation was the loss of normal TDP-43 staining in the nucleus of some neurons, which could be the first stage of the TDP-43 pathological process preceding the formation of typical cytoplasmic inclusions. Finally, this study has important implications for genetic counselling and molecular diagnosis. Semi-dominant inheritance of GRN mutations implies that specific genetic counselling should be delivered to children and parents of CLN11 patients, as they are heterozygous carriers with a high risk of developing dementia. More broadly, this study illustrates the fact that genetic variants can lead to different phenotypes according to their mono- or bi-allelic state, which is a challenge for genetic diagnosis.

Funder

VERUM

Translational Research Infrastructure for Biotherapies in Neurosciences

Programme Hospitalier de Recherche Clinique

PHRC

Publisher

Oxford University Press (OUP)

Subject

Clinical Neurology

Reference52 articles.

1. Accelerated lipofuscinosis and ubiquitination in granulin knockout mice suggest a role for progranulin in successful aging;Ahmed;Am J Pathol,2010

2. Progranulin peripheral levels as a screening tool for the identification of subjects with progranulin mutations in a Portuguese cohort;Almeida;Neurodegener Dis,2014

3. Portuguese family with the co-occurrence of frontotemporal lobar degeneration and neuronal ceroid lipofuscinosis phenotypes due to progranulin gene mutation;Almeida;Neurobiol Aging,2016

4. Human pathology in NCL;Anderson;Biochim Biophys Acta (BBA),2013

5. Kufs disease, the major adult form of neuronal ceroid lipofuscinosis, caused by mutations in CLN6;Arsov;Am J Hum Genet,2011

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