SMPD4 regulates mitotic nuclear envelope dynamics and its loss causes microcephaly and diabetes

Author:

Smits Daphne J1ORCID,Schot Rachel1,Krusy Nathalie2,Wiegmann Katja3,Utermöhlen Olaf3,Mulder Monique T4,den Hoedt Sandra4,Yoon Grace5,Deshwar Ashish R5ORCID,Kresge Christina6,Pletcher Beth6,van Mook Maura1,Ferreira Marta Serio1,Poot Raymond A7,Slotman Johan A8,Kremers Gert-Jan8,Ahmad Abeer9,Albash Buthaina10,Bastaki Laila10,Marafi Dana101112,Dekker Jordy1,van Ham Tjakko J1ORCID,Nguyen Laurent2,Mancini Grazia M S1ORCID

Affiliation:

1. Department of Clinical Genetics, ErasmusMC University Medical Center Rotterdam , Rotterdam 3015GD , The Netherlands

2. GIGA-Stem Cells/Neurosciences, University of Liège, CHU Sart Tilman , B-4000 Liège , Belgium

3. Institute for Medical Microbiology, Immunology, and Hygiene, University Hospital Cologne, Center for Molecular Medicine Cologne, University of Cologne , Colgne 50935 , Germany

4. Department of Internal Medicine, ErasmusMC University Medical Center Rotterdam , Rotterdam , The Netherlands

5. Division of Clinical and Metabolic Genetics, Department of Paediatrics, University of Toronto, The Hospital for Sick Children , Toronto , Canada

6. Department of Genetics, Rutgers New Jersey Medical School , Newark, NJ , USA

7. Department of Cell Biology, ErasmusMC University Medical Center Rotterdam , Rotterdam , The Netherlands

8. Department of Pathology, Optical Imaging Center, ErasmusMC University Medical Center Rotterdam , Rotterdam , The Netherlands

9. Pediatric Endocrinology Unit, Department of Pediatrics, Adan Hospital , Hadiya 52700 , Kuwait

10. Department of Pediatrics, Kuwait Medical Genetics Centre, Ministry of Health , Sulaibikhat 80901 , Kuwait

11. Section of Child Neurology, Department of Pediatrics, Adan Hospital , Hadiya 52700 , Kuwait

12. Department of Pediatrics, Faculty of Medicine, Kuwait University , Safat 13110 , Kuwait

Abstract

AbstractBiallelic loss-of-function variants in SMPD4 cause a rare and severe neurodevelopmental disorder with progressive congenital microcephaly and early death. SMPD4 encodes a sphingomyelinase that hydrolyses sphingomyelin into ceramide at neutral pH and can thereby affect membrane lipid homeostasis. SMPD4 localizes to the membranes of the endoplasmic reticulum and nuclear envelope and interacts with nuclear pore complexes (NPC).We refine the clinical phenotype of loss-of-function SMPD4 variants by describing five individuals from three unrelated families with longitudinal data due to prolonged survival. All individuals surviving beyond infancy developed insulin-dependent diabetes, besides presenting with a severe neurodevelopmental disorder and microcephaly, making diabetes one of the most frequent age-dependent non-cerebral abnormalities. We studied the function of SMPD4 at the cellular and organ levels. Knock-down of SMPD4 in human neural stem cells causes reduced proliferation rates and prolonged mitosis. Moreover, SMPD4 depletion results in abnormal nuclear envelope breakdown and reassembly during mitosis and decreased post-mitotic NPC insertion. Fibroblasts from affected individuals show deficient SMPD4-specific neutral sphingomyelinase activity, without changing (sub)cellular lipidome fractions, which suggests a local function of SMPD4 on the nuclear envelope. In embryonic mouse brain, knockdown of Smpd4 impairs cortical progenitor proliferation and induces premature differentiation by altering the balance between neurogenic and proliferative progenitor cell divisions.We hypothesize that, in individuals with SMPD4-related disease, nuclear envelope bending, which is needed to insert NPCs in the nuclear envelope, is impaired in the absence of SMPD4 and interferes with cerebral corticogenesis and survival of pancreatic beta cells.

Funder

ZonMW

Publisher

Oxford University Press (OUP)

Subject

Neurology (clinical)

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