Literature DB >> 29661558

Genetic assessment and folate receptor autoantibodies in infantile-onset cerebral folate deficiency (CFD) syndrome.

V Th Ramaekers1, K Segers2, J M Sequeira3, M Koenig4, L Van Maldergem5, V Bours2, U Kornak6, E V Quadros3.   

Abstract

INTRODUCTION: Cerebral folate deficiency (CFD) syndromes are defined as neuro-psychiatric conditions with low CSF folate and attributed to different causes such as autoantibodies against the folate receptor-alpha (FR) protein that can block folate transport across the choroid plexus, FOLR1 gene mutations or mitochondrial disorders. High-dose folinic acid treatment restores many neurologic deficits. STUDY AIMS AND METHODS: Among 36 patients from 33 families the infantile-onset CFD syndrome was diagnosed based on typical clinical features and low CSF folate. All parents were healthy. Three families had 2 affected siblings, while parents from 4 families were first cousins. We analysed serum FR autoantibodies and the FOLR1 and FOLR2 genes. Among three consanguineous families homozygosity mapping attempted to identify a monogenetic cause. Whole exome sequencing (WES) was performed in the fourth consanguineous family, where two siblings also suffered from polyneuropathy as an atypical finding.
RESULTS: Boys (72%) outnumbered girls (28%). Most patients (89%) had serum FR autoantibodies fluctuating over 5-6 weeks. Two children had a genetic FOLR1 variant without pathological significance. Homozygosity mapping failed to detect a single autosomal recessive gene. WES revealed an autosomal recessive polynucleotide kinase 3´phosphatase (PNKP) gene abnormality in the siblings with polyneuropathy. DISCUSSION: Infantile-onset CFD was characterized by serum FR autoantibodies as its predominant pathology whereas pathogenic FOLR1 gene mutations were absent. Homozygosity mapping excluded autosomal recessive inheritance of any single responsible gene. WES in one consanguineous family identified a PNKP gene abnormality that explained the polyneuropathy and also its contribution to the infantile CFD syndrome because the PNKP gene plays a dual role in both neurodevelopment and immune-regulatory function. Further research for candidate genes predisposing to FRα-autoimmunity is suggested to include X-chromosomal and non-coding DNA regions.
Copyright © 2018 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Autoimmunity; Differential diagnosis; Folate receptor; Genetics; Infantile CFD syndrome

Mesh:

Substances:

Year:  2018        PMID: 29661558     DOI: 10.1016/j.ymgme.2018.03.001

Source DB:  PubMed          Journal:  Mol Genet Metab        ISSN: 1096-7192            Impact factor:   4.797


  8 in total

1.  Folate Related Pathway Gene Analysis Reveals a Novel Metabolic Variant Associated with Alzheimer's Disease with a Change in Metabolic Profile.

Authors:  Jaleel Miyan; Charlotte Buttercase; Emma Beswick; Salma Miyan; Ghazaleh Moshkdanian; Naila Naz
Journal:  Metabolites       Date:  2022-05-24

2.  Oxidative Stress, Folate Receptor Autoimmunity, and CSF Findings in Severe Infantile Autism.

Authors:  Vincent T Ramaekers; Jeffrey M Sequeira; Beat Thöny; Edward V Quadros
Journal:  Autism Res Treat       Date:  2020-11-18

3.  Serum Folate Status Is Primarily Associated With Neurodevelopment in Children With Autism Spectrum Disorders Aged Three and Under-A Multi-Center Study in China.

Authors:  Qiu Li; Ting Yang; Li Chen; Ying Dai; Li-Jie Wu; Fei-Yong Jia; Yan Hao; Ling Li; Jie Zhang; Xiao-Yan Ke; Ming-Ji Yi; Qi Hong; Jin-Jin Chen; Shuan-Feng Fang; Yi-Chao Wang; Qi Wang; Chun-Hua Jin; Zhi-Fang Dong; Jie Chen; Ting-Yu Li
Journal:  Front Nutr       Date:  2021-05-13

4.  The Key Role of Purine Metabolism in the Folate-Dependent Phenotype of Autism Spectrum Disorders: An In Silico Analysis.

Authors:  Jan Geryk; Daniel Krsička; Markéta Vlčková; Markéta Havlovicová; Milan Macek; Radka Kremlíková Pourová
Journal:  Metabolites       Date:  2020-05-06

5.  Whole exome sequencing revealed a novel homozygous variant in the DGKE catalytic domain: a case report of familial hemolytic uremic syndrome.

Authors:  Soraya Gholizad-Kolveiri; Nakysa Hooman; Rasoul Alizadeh; Rozita Hoseini; Hasan Otukesh; Saeed Talebi; Mansoureh Akouchekian
Journal:  BMC Med Genet       Date:  2020-08-24       Impact factor: 2.023

6.  CIC de novo loss of function variants contribute to cerebral folate deficiency by downregulating FOLR1 expression.

Authors:  Xuanye Cao; Annika Wolf; Sung-Eun Kim; Robert M Cabrera; Bogdan J Wlodarczyk; Huiping Zhu; Margaret Parker; Ying Lin; John W Steele; Xiao Han; Vincent Th Ramaekers; Robert Steinfeld; Richard H Finnell; Yunping Lei
Journal:  J Med Genet       Date:  2020-08-20       Impact factor: 6.318

Review 7.  Cerebral Folate Deficiency Syndrome: Early Diagnosis, Intervention and Treatment Strategies.

Authors:  Vincent Th Ramaekers; Edward V Quadros
Journal:  Nutrients       Date:  2022-07-28       Impact factor: 6.706

8.  Folic acid depletion as well as oversupplementation helps in the progression of hepatocarcinogenesis in HepG2 cells.

Authors:  Renuka Sharma; Taqveema Ali; Jyotdeep Kaur
Journal:  Sci Rep       Date:  2022-10-05       Impact factor: 4.996

  8 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.